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Hi all, Grow area updates: Nothing major far as area is concerned added Some yoyo’s to the net so it can be raised and lowered easily now. I also noticed I had been following ghp feeding schedule for a recirculating system when mine is drain to waste. Didn’t have in adverse effects on the plants at all actually think they loved it tbh. But I’ll notice the ppm difference on these future updates. I was using way more nutrients then what was needed. Now I get to save money lol. Blue dream auto: Def has the faint smell of flowering cannabis now. The branching power from the mixing blue dream and already branchy plant with the ruderalis is def perfect for a scrog set up when you trying to maximize the your yield off one plant. I had to visit the tent 3 times this week to re tuck her down. Did the last tuck Thursday so what you are seeing from the pics today is three days of growth. Crazy!!!! She sitting at about 900 ppm And that’s with cutting the the grow solution some. Master kush photo: She popped through the net mid this week and hit her first tuck under today. With how well she reacted to the femm job. I went ahead and topped on the new growth on each branch. Her branch structure is way more sturdy then autos for sure. Leaves are bigger as well. One is the size of my palm lol I have big hands so that’s awesome. She sitting at about 800 ppm and getting less bloom solution. I’d also like to add I appreciate everyone’s advice far as set up and temp control. It was above 100°F the last couple days. And tent never got over 85 and as soon as the hotter part of the day was over we where back in the 70’s. Ima smoke one for y’all! 🤘🏾 Until next time #StayKited
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Just this one girl is ready. Not too hard of a grow. Some powdery mildew towards the end but not too bad. The amount of trichomes is amazing. It was to the point I thought it was PM on some of the fan leaves. The smell was great. A definite grape smell and some fruity fuel as well. They can take a bit of a beating. I had a huge ph issue for weeks and they kept going along. I can't imagine if it was a flawless grow. These buds seem very dense. It was deceivingly heavy when i chopped her down. Will update with weight and the rest of the harvest. If you haven't you should grow this!
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@GrowSmith
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So since last feed was at 3/4 I thought to give her the full dose. Found the temperature was dropping below 10 on a night so I bought a fan heater to go under the plant and circulate greenhouse. After the first day of 28/27 degree heat some of the fan leaves started to change colour and dry up which I got advice on and found this is normal when coming to the end of your cycle also found I had spider mites Found some of them and removed also sprayed plant down and flushed
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aug 11. Megacrop ~2 litre feed number 27. 1.59gr/litre. ph 6.16 aug 13. Megacrop ~2 litre feed number 28. 1.59gr/litre. ph 6.16 aug 15. Megacrop ~2 litre feed number 29. 1.59gr/litre. ph 6.16 I'm doing very little defoliation at this point
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@Kinghaze
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-Week 5 of veg They react verry well on the topping. Next watering I will increase the nutrition a little bit. The smaller plants are caching up with the others. They are looking healthy and green, (on the photo they appear a little lighter bc of the light) Can't wait for flower time.
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exagerei na rega até o meio da semana, deixei 4 dias sem rega e recuperaram, umas pelo estresse começaram mostrar défice de fósforo, fiz uma cobertura com torta de mamona, farinha de ossos, esterco de aves, humus de minhoca e calcário. Qual foto colocariam de capa dessa semana?
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@Dabking
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3 leaf mutation on one plant. Every leaf both fan or sugar is only 3 leaf. Pretty neat and the flowers are looking really good The other plant is looking amazing as well.
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Day 1 week 2 Day 2 week 2 Day 3 week 2
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Cut her leaves today..fresh living soil..looks good at all..
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@Takeaims
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I don't know why she ain't flowering going to ask a few growers what's up
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Laughing Buddha is a long growing plant but will reward well, true to form, smells incredible, very sticky, neurtured from seed, low humidity - worked very well.
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Hi :) it’s 10th week in my happy grow :) girls looks lovely, Smell is awesome I think terminator does it’s job :)generally I’m so proud of my girls, of course it was not without mistakes but it is my second indoor experience so still learning from mistakes :) this way we will come to perfection :) new project from fastbuds is on the way! check what’s coming! :) happy Sunday for everyone, peace! Day 66 update resulting decision of defoliation. I treated them well but in my opinion they can catch a big breath now :)
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Today I am closing 6th week of blooming and starting 7th week Day 83 I'm watering with 5 liters and I removed Bud Factor X and added Overdrive👌 Following HombreCZ advice, I reduced all nutrients for 50% except Vitamax. Děkuju😇
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Info: Unfortunately, I had to find out that my account is used for fake pages in social media. I am only active here on growdiaries. I am not on facebook instagram twitter etc All accounts except this one are fake. Flowering day 22 since time change to 12/12 h Hey guys :-) The stretch is in full swing and it continues to develop beautifully :-). The GBL fertilizer does exactly the job it should 👍. Organic more PK will be added in the coming days. It was poured 3 times this week (for nutrients, see table above). The lowest shoots have been removed so that the energy reaches the upper area completely :-). Otherwise, as always, the lady was checked for her health and the tent was cleaned. I wish you all a lot of fun with the update this week. Stay healthy 🙏🏻 You can buy this Nutrients at : https://greenbuzzliquids.com/en/shop/ With the discount code: Made_in_Germany you get a discount of 15% on all products from an order value of 100 euros. You can buy this Strain at : www.Zamnesia.com Type: Runtz ☝️🏼 Genetics: Zkittlez x Gelato 👍 Vega lamp: 2 x Todogrow Led Quantum Board 100 W 💡 Bloom Lamp : 2 x Todogrow Led Cxb 3590 COB 3500 K 205 W Soil : Canna Coco Professional + ☝️🏼 Nutrients : Green Buzz Liquids : Organic Grow Liquid Organic Bloom Liquid Organic more PK More Roots Fast Buds Humic Acid Plus Growzyme Big Fruits Clean Fruits Cal / Mag Organic Ph - Pulver ☝️🏼🌱 Water: Osmosis water mixed with normal water (24 hours stale that the chlorine evaporates) to 0.2 EC. Add Cal / Mag to 0.4 Ec Ph with Organic Ph - to 5.8
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@NyBushDr
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Good morning, we just completed week 4 of veg and today is day 29 which is the start of 5. Temps are steady and these girls like it a little cooler and more humid, I tried to increase kpa to 1 slowly from .9 and they were not happy at all so I’m just keeping it at .9 for now! They also are thirsty girls wanting water every 2 days drying the pots up quickly! They got a dose of recharge which I like to do every 3 weeks! Also starts silica now that I started training the branches down for a better even canopy ! Moving forward I will alternate fish shit one watering and silica the next the rest of the way! I’ll be transplanting to their final 10 gallon pots today or tomorrow then will do some more training once they recover from that! I don’t usually notice transplant shock so I’m not anticipating any issues! Thanks for reading and see ya next week
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It's that exciting time again—time to dive into the enchanting journey of my beloved Purple Lemonade FF as she strides confidently into Week 5 of flowering. Defoliation Drama Unveiled! As the grand finale approaches, I made a daring decision to perform a defoliation dance with my purple beauty. Now, don't worry, it's not as dramatic as it sounds! Think of it like a plant makeover. I carefully removed a select few fan leaves to allow the inner sanctum of the plant to breathe. This move allows more light to reach those budding sites, ensuring that every nugget gets its chance to shine. The result? A lush canopy where each bud twinkles like a star in the night sky. Fruits of Our Labor: Bigger is Better! Oh, but the fruits of our labor! They're a sight to behold. The buds have grown into massive, magnificent marvels that stretch toward the heavens. Imagine holding a juicy lemon the size of your palm—that's the kind of awe we're talking about! Their aroma wafts through the air, teasing the senses and promising an explosion of flavors and fragrances when the time is ripe. The Symphony of Purple and Trichomes And now, let's talk about the color show happening here. It's like the Northern Lights decided to pay a visit to my grow space! Delicate shades of purple are dancing across the buds, creating a breathtaking tapestry of colors that's straight out of an artist's dream. But wait, there's more! It's practically snowing trichomes in there. These tiny, glistening structures cover the buds like a shimmering blanket, and trust me, it's a sight that warms any grower's heart. Mother Nature's Artistry in Action Nature truly is the best artist, and our Purple Lemonade FF is her masterpiece. Each leaf, each bud, each trichome is a stroke of perfection. This journey reminds me that we're not just gardeners; we're cultivators of beauty, patience, and endless wonder. A Glimpse of the Journey And as promised, here's a sneak peek of this week's snapshot from the grow room. Feast your eyes on the splendor of my purple queen standing tall amidst her sisters of diverse genetics. It's a visual symphony that fills the heart with joy and gratitude. Cherish the Journey As we approach the next chapter of this remarkable journey, I'm reminded once again that it's not just about the end result; it's about the experience, the love, and the lessons we gather along the way. So, my fellow green-thumbed adventurers, let's cherish every moment, celebrate every bud, and keep growing with passion and joy. Thanks for joining me on this magical ride. Until the next chapter unfolds, keep those hearts and plants thriving! Genetics - Fast Buds Purple Lemonade FF Ligth - Lumatek ZEUS 465 COMPACT PRO 
Food - Aptus Holland #aptus #aptusplanttech #aptusgang #aptusfamily #aptustrueplantscience #inbalancewithnature #trueplantscience #fastbuds #dogdoctorofficial #growerslove With true love comes happiness <3 <3 <3 Always believe in your self and always do things expecting nothing and with an open heart , be a giver and the universe will give back to you in ways you could not even imagine so <3 <3 <3 
All info and full product details can be find in can find @ https://2fast4buds.com/ 

https://aptus-holland.com/
 
https://autopot.co.uk/ 

https://lumatek-lighting.com/ <3 <3 <3 Growers love to you all <3 <3 <3 " Arising from a cross between purple and citrus Cali genetics, Purple Lemonade FF (Fastflowering) offers a complex high made up of perfectly balanced cerebral and body effects that are ideal for daytime use. Expect an extremely enjoyable high that boosts your mood while deeply relaxing your whole body and getting rid of muscle pain. This meticulous cross produces up to 550 g/m2 of some of the most beautiful purple buds, with pinkish and reddish hues that will catch everyone’s attention. The beautiful purple buds are ready for harvest in 7-8 weeks and come hand-in-hand with unbelievably sugary citrus terps that are just as refreshing as a cold lemonade on a hot Summer day. It’s the ideal variety for the sweet-tooth stoner seeking strains that deliver both in quality and quantity of resin. Bud Description Purple Lemonade FF grows chunky, spade-shaped buds that boast a whole range of pinkish-purple hues with rich, dark orange pistils shooting out of every direction. This variety stands out for the, oftentimes, lilac trichomes that give them a gorgeous pink tint and make for outstanding purple concentrates. The buds give off a delicious tart lemon aroma that reveals a sweeter, more fruity scent as you break the buds open. Definitely a must for flavor chasers and those looking for pungent terpene profiles. Smoke Reports Purple Lemonade FF offers an effect that’s just as unique as the flavor. Expect a potent uplifting high that gives you that energy boost you need to get things done while 100% happy and stress-free. The effect gradually transforms into a wave that works its way along the limbs and through the muscles, deeply relaxing your body and putting you in the right mindset to go through a busy day with a huge smile on your face. This is an excellent all-day smoke as it not only increases energy but can also help combat chronic pain, migraine and stress. Plant Appearance This feminized photoperiod variety develops a thick and strong structure, growing a medium-sized main cola with multiple shorter side branches, typical of hybrid strains. Purple Lemonade FF develops fairly short internodal spacing with gorgeous purple buds growing stacked on top of each other, making it the perfect choice for growers of all levels looking to get lots and lots of top-shelf purple weed, as this variety can produce up to 550 g/m2 in a 7-8 week flower cycle. Grow Tips This is a super fast feminized photoperiod version that takes approximately 7-8 weeks to flower with a 5-week vegetation cycle,, this means you can have faster harvests by shortening the veg cycle or have a longer veg cycle for bigger yields. Purple Lemonade FF (Fastflowering) makes for a great candidate for growers of all levels as it’s a vigorous strain that will thrive with basic maintenance both indoors and outdoors. This is a resin powerhouse so make sure to have your trim bin close by as all the resinous sugar leaves will make for the most mouth-watering hash and extracts. Flavor Expect a long-lasting citrus zest that taste just like it smells. Purple Lemonade FF reeks of a delicious blend of sweet fruits and tart citrus that’ll make your mouth water. On the inhale, expect sour flavors that taste just like lemon candy with hints of orange and a really subtle earthy background. And on the exhale, the citrus flavors open up, giving place to a more sugary berry fruitiness that leaves your whole mouth tasting like an extremely sweet weed-infused lemonade.
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Entree dans la 4 eme semaines de Flo Ajout de Greensensation
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ANTHOCYANIN production is primarily controlled by the Cryptochrome (CR1) Photoreceptor ( !! UV and Blue Spectrums are primary drivers in the production of the pigment that replaces chlorophyll, isn't that awesome! 1. Diverse photoreceptors in plants Many civilizations, including the sun god of ancient Egypt, thought that the blessings of sunlight were the source of life. In fact, the survival of all life, including humans, is supported by the photosynthesis of plants that capture solar energy. Plants that perform photosynthesis have no means of transportation except for some algae. Therefore, it is necessary to monitor various changes in the external environment and respond appropriately to the place to survive. Among various environmental information, light is especially important information for plants that perform photosynthesis. In the process of evolution, plants acquired phytochrome, which mainly receives light in the red light region, and multiple blue light receptors, including his hytropin and phototropin, in order to sense the light environment. .. In addition to these, an ultraviolet light receptor named UVR8 was recently discovered. The latest image of the molecular structure and function of these various plant photoreceptors (Fig. 1), focusing on phytochrome and phototropin. Figure 1 Ultraviolet-visible absorption spectra of phytochrome, cryptochrome, phototropin, and UVR8. The dashed line represents each bioactive absorption spectrum. 2. Phytochrome; red-far red photoreversible molecular switch What is phytochrome? Phytochrome is a photochromic photoreceptor, and has two absorption types, a red light absorption type Pr (absorption maximum wavelength of about 665 nm) and a far-red light absorption type Pfr (730 nm). Reversible light conversion between the two by red light and far-red light, respectively(Fig. 1A, solid line and broken line). In general, Pfr is the active form that causes a physiological response. With some exceptions, phytochrome can be said to function as a photoreversible molecular switch. The background of the discovery is as follows. There are some types of plants that require light for germination (light seed germination). From that study, it was found that germination was induced by red light, the effect was inhibited by subsequent far-red light irradiation, and this could be repeated, and the existence of photoreceptors that reversibly photoconvert was predicted. In 1959, its existence was confirmed by the absorption spectrum measurement of the yellow sprout tissue, and it was named phytochrome. Why does the plant have a sensor to distinguish between such red light and far-red light? There is no big difference between the red and far-red light regions in the open-field spectrum of sunlight, but the proportion of red light is greatly reduced due to the absorption of chloroplasts in the shade of plants. Similar changes in light quality occur in the evening sunlight. Plants perceive this difference in light quality as the ratio of Pr and Pfr, recognize the light environment, and respond to it. Subsequent studies have revealed that it is responsible for various photomorphogenic reactions such as photoperiodic flowering induction, shade repellent, and deyellowing (greening). Furthermore, with the introduction of the model plant Arabidopsis thaliana (At) and the development of molecular biological analysis methods, research has progressed dramatically, and his five types of phytochromes (phyA-E) are present in Arabidopsis thaliana. all right. With the progress of the genome project, Fi’s tochrome-like photoreceptors were found in cyanobacteria, a photosynthetic prokaryotes other than plants. Furthermore, in non-photosynthetic bacteria, a homologue molecule called bacteriophytochrome photoreceptor (BphP) was found in Pseudomonas aeruginosa (Pa) and radiation-resistant bacteria (Deinococcus radiodurans, Dr). Domain structure of phytochrome molecule Phytochrome molecule can be roughly divided into N-terminal side and C-terminal side region. PAS (Per / Arndt / Sim: blue), GAF (cGMP phosphodiesterase / adenylyl cyclase / FhlA: green), PHY (phyto-chrome: purple) 3 in the N-terminal region of plant phytochrome (Fig. 2A) There are two domains and an N-terminal extension region (NTE: dark blue), and phytochromobilin (PΦB), which is one of the ring-opening tetrapyrroles, is thioether-bonded to the system stored in GAF as a chromophore. ing. PAS is a domain involved in the interaction between signal transduction-related proteins, and PHY is a phytochrome-specific domain. There are two PASs and her histidine kinase-related (HKR) domain (red) in the C-terminal region, but the histidine essential for kinase activity is not conserved. 3. Phototropin; photosynthetic efficiency optimized blue light receptor What is phototropin? Charles Darwin, who is famous for his theory of evolution, wrote in his book “The power of move-ment in plants” published in 1882 that plants bend toward blue light. Approximately 100 years later, the protein nph1 (nonphoto-tropic hypocotyl 1) encoded by one of the causative genes of Arabidopsis mutants causing phototropic abnormalities was identified as a blue photoreceptor. Later, another isotype npl1 was found and renamed phototropin 1 (phot1) and 2 (phot2), respectively. In addition to phototropism, phototropin is damaged by chloroplast photolocalization (chloroplasts move through the epidermal cells of the leaves and gather on the cell surface under appropriate light intensity for photosynthesis. As a photoreceptor for reactions such as escaping to the side of cells under dangerous strong light) and stomata (reactions that open stomata to optimize the uptake of carbon dioxide, which is the rate-determining process of photosynthetic reactions). It became clear that it worked. In this way, phototropin can be said to be a blue light receptor responsible for optimizing photosynthetic efficiency. Domain structure and LOV photoreaction of phototropin molecule Phototropin molecule has two photoreceptive domains (LOV1 and LOV2) called LOV (Light-Oxygen-Voltage sensing) on the N-terminal side, and serine / on the C-terminal side. It is a protein kinase that forms threonine kinase (STK) (Fig. 4Aa) and whose activity is regulated by light. LOV is one molecule as a chromophore, he binds FMN (flavin mononucleotide) non-covalently. The LOV forms an α/βfold, and the FMN is located on a β-sheet consisting of five antiparallel β-strands (Fig. 4B). The FMN in the ground state LOV shows the absorption spectrum of a typical oxidized flavin protein with a triplet oscillation structure and an absorption maximum wavelength of 450 nm, and is called D450 (Fig. 1C and Fig. 4E). After being excited to the singlet excited state by blue light, the FMN shifts to the triplet excited state (L660t *) due to intersystem crossing, and then the C4 (Fig. 4C) of the isoaroxazine ring of the FMN is conserved in the vicinity. It forms a transient accretionary prism with the tain (red part in Fig. 4B Eα) (S390I). When this cysteine is replaced with alanine (C / A substitution), the addition reaction does not occur. The effect of adduct formation propagates to the protein moiety, causing kinase activation (S390II). After that, the formed cysteine-flavin adduct spontaneously dissociates and returns to the original D450 (Fig. 4E, dark regression reaction). Phototropin kinase activity control mechanism by LOV2 Why does phototropin have two LOVs? Atphot1 was found as a protein that is rapidly autophosphorylated when irradiated with blue light. The effect of the above C / A substitution on this self-phosphorylation reaction and phototropism was investigated, and LOV2 is the main photomolecular switch in both self-phosphorylation and phototropism. It turns out that it functions as. After that, from experiments using artificial substrates, STK has a constitutive activity, LOV2 functions as an inhibitory domain of this activity, and the inhibition is eliminated by photoreaction, while LOV1 is kinase light. It was shown to modify the photosensitivity of the activation reaction. In addition to this, LOV1 was found to act as a dimerization site from the crystal structure and his SAXS. What kind of molecular mechanism does LOV2 use to photoregulate kinase activity? The following two modules play important roles in this intramolecular signal transduction. Figure 4 (A) Domain structure of LOV photoreceptors. a: Phototropin b: Neochrome c: FKF1 family protein d: Aureochrome (B) Crystal structure of auto barley phot1 LOV2. (C) Structure of FMN isoaroxazine ring. (D) Schematic diagram of the functional domain and module of Arabidopsis thaliana phot1. L, A’α, and Jα represent linker, A’α helix, and Jα helix, respectively. (E) LOV photoreaction. (F) Molecular structure model (mesh) of the LOV2-STK sample (black line) containing A’α of phot2 obtained based on SAXS under dark (top) and under bright (bottom). The yellow, red, and green space-filled models represent the crystal structures of LOV2-Jα, protein kinase A N-lobe, and C-robe, respectively, and black represents FMN. See the text for details. 1) Jα. LOV2 C of oat phot1-to α immediately after the terminus Rix (Jα) is present (Fig. 4D), which interacts with the β-sheet (Fig. 4B) that forms the FMN-bound scaffold of LOV2 in the dark, but unfolds and dissociates from the β-sheet with photoreaction. It was shown by NMR that it does. According to the crystal structure of LOV2-Jα, this Jα is located on the back surface of the β sheet and mainly has a hydrophobic interaction. The formation of S390II causes twisting of the isoaroxazine ring and protonation of N5 (Fig. 4C). As a result, the glutamine side chain present on his Iβ strand (Fig. 4B) in the β-sheet rotates to form a hydrogen bond with this protonated N5. Jα interacts with this his Iβ strand, and these changes are thought to cause the unfold-ing of Jα and dissociation from the β-sheet described above. Experiments such as amino acid substitution of Iβ strands revealed that kinases exhibit constitutive activity when this interaction is eliminated, and that Jα plays an important role in photoactivation of kinases. 2) A’α / Aβ gap. Recently, several results have been reported showing the involvement of amino acids near the A’α helix (Fig. 4D) located upstream of the N-terminal of LOV2 in kinase photoactivation. Therefore, he investigated the role of this A’α and its neighboring amino acids in kinase photoactivation, photoreaction, and Jα structural change for Atphot1. The LOV2-STK polypeptide (Fig. 4D, underlined in black) was used as a photocontrollable kinase for kinase activity analysis. As a result, it was found that the photoactivation of the kinase was abolished when amino acid substitution was introduced into the A’α / Aβ gap between A’α and Aβ of the LOV2 core. Interestingly, he had no effect on the structural changes in Jα examined on the peptide map due to the photoreaction of LOV2 or trypsin degradation. Therefore, the A’α / Aβ gap is considered to play an important role in intramolecular signal transduction after Jα. Structural changes detected by SAXS Structural changes of Jα have been detected by various biophysical methods other than NMR, but structural information on samples including up to STK is reported only by his results to his SAXS. Not. The SAXS measurement of the Atphot2 LOV2-STK polypeptide showed that the radius of inertia increased from 32.4 Å to 34.8 Å, and the molecular model (Fig. 4F) obtained by the ab initio modeling software GASBOR is that of LOV2 and STK. It was shown that the N lobes and C lobes lined up in tandem, and the relative position of LOV2 with respect to STK shifted by about 13 Å under light irradiation. The difference in the molecular model between the two is considered to reflect the structural changes that occur in the Jα and A’α / Aβ gaps mentioned above. Two phototropins with different photosensitivity In the phototropic reaction of Arabidopsis Arabidopsis, Arabidopsis responds to a very wide range of light intensities from 10–4 to 102 μmol photon / sec / m2. At that time, phot1 functions as an optical sensor in a wide range from low light to strong light, while phot2 reacts with light stronger than 1 μmol photon / sec / m2. What is the origin of these differences? As is well known, animal photoreceptors have a high photosensitivity due to the abundance of rhodopsin and the presence of biochemical amplification mechanisms. The exact abundance of phot1 and phot2 in vivo is unknown, but interesting results have been obtained in terms of amplification. The light intensity dependence of the photoactivation of the LOV2-STK polypeptide used in the above kinase analysis was investigated. It was found that phot1 was about 10 times more photosensitive than phot2. On the other hand, when the photochemical reactions of both were examined, it was found that the rate of the dark return reaction of phot1 was about 10 times slower than that of phot2. This result indicates that the longer the lifetime of S390II, which is in the kinase-activated state, the higher the photosensitivity of kinase activation. This correlation was further confirmed by extending the lifespan of her S390II with amino acid substitutions. This alone cannot explain the widespread differences in photosensitivity between phot1 and phot2, but it may explain some of them. Furthermore, it is necessary to investigate in detail protein modifications such as phosphorylation and the effects of phot interacting factors on photosensitivity. Other LOV photoreceptors Among fern plants and green algae, phytochrome ɾphotosensory module (PSM) on the N-terminal side and chimera photoreceptor with full-length phototropin on the C-terminal side, neochrome (Fig. There are types with 4Ab). It has been reported that some neochromes play a role in chloroplast photolocalization as a red light receiver. It is considered that fern plants have such a chimera photoreceptor in order to survive in a habitat such as undergrowth in a jungle where only red light reaches. In addition to this, plants have only one LOV domain, and three proteins involved in the degradation of photomorphogenesis-related proteins, FKF1 (Flavin-binding, Kelch repeat, F-box 1, ZTL (ZEITLUPE)), LKP2 ( There are LOV Kelch Protein2) (Fig. 4Ac) and aureochrome (Fig. 4Ad), which has a bZip domain on the N-terminal side of LOV and functions as a gene transcription factor. 4. Cryptochrome and UVR8 Cryptochrome is one of the blue photoreceptors and forms a superfamily with the DNA photoreceptor photolyase. It has FAD (flavin adenine dinucle-otide) as a chromophore and tetrahydrofolic acid, which is a condensing pigment. The ground state of FAD is considered to be the oxidized type, and the radical type (broken line in Fig. 1B) generated by blue light irradiation is considered to be the signaling state. The radical type also absorbs in the green to orange light region, and may widen the wavelength region of the plant morphogenesis reaction spectrum. Cryptochrome uses blue light to control physiological functions similar to phytochrome. It was identified as a photoreceptor from one of the causative genes of UVR8 Arabidopsis thaliana, and the chromophore is absorbed in the UVB region by a Trp triad consisting of three tryptophans (Fig. 1D). It is involved in the biosynthesis of flavonoids and anthocyanins that function as UV scavengers in plants. Conclusion It is thought that plants have acquired various photoreceptors necessary for their survival during a long evolutionary process. The photoreceptors that cover the existing far-red light to UVB mentioned here are considered to be some of them. More and more diverse photoreceptor genes are conserved in cyanobacteria and marine plankton. By examining these, it is thought that the understanding of plant photoreceptors will be further deepened.
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Bulking up nicely during this week! And the strawberry smell getting stronger!
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Nothing special this week, just watching them buds grow :)
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@Targona
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26 days since my little girl sprouted from a seed🌱 Third week of growing my Gorilla Cookies Auto 🦍🍪🦍 Nutrients: I use Advanced Hydroponics Of Holland nutrients - three basic components, always according to the table for vegetative growth 💓 - - Dutch Formula 1 Grow - supplies the plant with substances necessary for the perfect development of roots, stem and leaves; intended for the growth phase 🌾 - Dutch Formula 2 Bloom - contains a large amount of nutrients needed for rapid growth and development of fruits, provides energy to the plant; intended for the flower phase 🌸🌿 - Dutch Formula 3 Micro - increases oxygen intake, improves plant immunity, ensures better absorption of nutrients; intended for the growth and flowering phase 🌴 -------------------------------------------------- -------------------------------------------------- -------- BioBizz Calmag - The special Calmag supplement was designed for professional and hobby growers who need to supply calcium and magnesium in organic quality to plants for a long time or immediately. 100% organic 💩💩 and certified BioBizz Calmag product is made from calcium carbonate and magnesium sulfate supplemented with humic acid. -------------------------------------------------- -------------------------------------------------- -------- BioBizz Bio pH- is an organic pH regulator. Aqueous solution of citric acid, which occurs naturally in citrus fruits 🍋🍋 -------------------------------------------------- -------------------------------------------------- ------- During the flowering period, I add Advanced Nutrients stimulators: - Bud Ignitor (first two weeks of flowering) - flower stimulator 🌸🏵️ - Bud Candy - carbs for my girls 🍭🍭🍭 - JUNGLE - ENVIRON X is a highly effective complex product stimulate the formation of flowers. Contains no synthetic growth regulators (PGRs). • multiplies yield and increases product quality In general: Gorilla Cookies Auto 🦍🍪🦍 - The girl went into the flowering phase, so I adjusted the nutrients. She grew a lot in height, because she germinated 10 days later than the other girls in the tent. It responds very well to nutrients, is strong and has a beautiful green color 🍃💚 Training: During this period, I usually do another defoliation and LST 💚🌞🌞 Light: Mars Hydro TS1000 The plants react effectively and the light is technically very well managed - I try to have 50cm between the light and the plants, so I move it up regularly 💡💡💡 See you soon 😍💚