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@Lazuli
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The taste is very delicious it hits very fast bit very pleasant u could smoke this all day everyday. No paranoia or being tired this is pure Gold 10/10 Everyone should at least try this once Took longer because of the cold. This strain is so bushy and full of buds. Smells very strong
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Die Blüten haben deutlich an Volumen gewonnen. An fast allen Pflanzen werden die ersten unteren Segelblätter gelb. So lange es bei diesen bleibt, werde ich nicht die Düngermenge erhöhen. Ich warte bis sie fast selbstständig abfallen und nehme sie weg. Leider ist das Wetter nicht auf unserer Seite. Da geht bestimmt noch mehr. Ein paar Wochen haben sie noch. Zum Ende der Woche hat der Wasserbedarf deutlich abgenommen. An dem Punkt habe ich auch den Big Bud Dünger abgesetzt. Die nächste Zeit werde ich nochmals das Batboost und Bloom hochfahren.
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Sep 6: Tropicana Cookies FF is doing great. Maybe not as much flower maturation last week as I expected but we’re just starting week 8 of flowering. So likely the end of September which is fine for the late start on this plant. Sep 7: decided on a final top dressing of malted barley and Power Bloom. Seems they need a bit more P. Sep 12: don't take flash pics unless you follow it up with a far red (730 nm) light to put the plant solidly into dark mode. Still using the far red light every night at dusk timed based in Civil Teilight as listed in timeanddate.com. Now at about 8:30 and when flowering started it was at about 10:00.
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She is coming along great. Showing some good early trichome production and smelling great.
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We had a lot of rain last week and unfortunately Do-si-dos wasn't dancing to new heights like her counterparts. This week will be full of sunshine so hopefully she will start her growing dance. I read information on the Royal Queen Seeds website concerning her growth this week and it said that DoSiDos is a plant that reaches heights of 40 inches to 55 inches for an outdoor grow. Royal Queen says it is a very "compact" plant that is easy to grow. The website also says Do-Si-Dos should be ready to harvest 9-10 weeks after sprouting. I think about the end of July or the beginning of August we should be able to harvest. Comments are welcome and dancing is allowed.
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@yaron
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Most of the day the ladies are under a roof due to rain. Maybe tomorrow a bit of sunshine but the weekend doesnt look good. Like i said another rainy Day,hang in there ladies!
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Lacewings seemed to have mostly killed themselves by flying into hot light fixtures. I may have left the UV on which was smart of me :) Done very little to combat if anything but make a sea of carcasses, on the bright side its good nutrition for the soil. Made a concoction of ethanol 70%, equal parts water, and cayenne pepper with a couple of squirts of dish soap. Took around an hour of good scrubbing the entire canopy. Worked a lot more effectively and way cheaper. Scorched earth right now, but it seems to have wiped them out almost entirely very pleased. Attempted a "Fudge I Missed" for the topping. So just time to wait and see how it goes. Question? If I attached a plant to two separate pots but it was connected by rootzone, one has a pH of 7.5 ish the other has 4.5. Would the Intelligence of the plant able to dictate each pot separately to uptake the nutrients best suited to pH or would it still try to draw nitrogen from a pot with a pH where nitrogen struggles to uptake? Food for stoner thought experiments! Another was on my mind. What happens when a plant gets too much light? Well, it burns and curls up leaves. That's the heat radiation, let's remove excess heat, now what? I've always read it's just bad, or not good, but when I look for an explanation on a deeper level it's just bad and you shouldn't do it. So I did. How much can a cannabis plant absorb, 40 moles in a day, ok I'll give it 60 moles. 80 nothing bad ever happened. The answer, finally. Oh great........more questions........ Reactive oxygen species (ROS) are molecules capable of independent existence, containing at least one oxygen atom and one or more unpaired electrons. "Sunlight is the essential source of energy for most photosynthetic organisms, yet sunlight in excess of the organism’s photosynthetic capacity can generate reactive oxygen species (ROS) that lead to cellular damage. To avoid damage, plants respond to high light (HL) by activating photophysical pathways that safely convert excess energy to heat, which is known as nonphotochemical quenching (NPQ) (Rochaix, 2014). While NPQ allows for healthy growth, it also limits the overall photosynthetic efficiency under many conditions. If NPQ were optimized for biomass, yields would improve dramatically, potentially by up to 30% (Kromdijk et al., 2016; Zhu et al., 2010). However, critical information to guide optimization is still lacking, including the molecular origin of NPQ and the mechanism of regulation." What I found most interesting was research pointing out that pH is linked to this defense mechanism. The organism can better facilitate "quenching" when oversaturated with light in a low pH. Now I Know during photosynthesis plants naturally produce exudates (chemicals that are secreted through their roots). Do they have the ability to alter pH themselves using these excretions? Or is that done by the beneficial bacteria? If I can prevent reactive oxygen species from causing damage by "too much light". The extra water needed to keep this level of burn cooled though, I must learn to crawl before I can run. Reactive oxygen species (ROS) are key signaling molecules that enable cells to rapidly respond to different stimuli. In plants, ROS plays a crucial role in abiotic and biotic stress sensing, integration of different environmental signals, and activation of stress-response networks, thus contributing to the establishment of defense mechanisms and plant resilience. Recent advances in the study of ROS signaling in plants include the identification of ROS receptors and key regulatory hubs that connect ROS signaling with other important stress-response signal transduction pathways and hormones, as well as new roles for ROS in organelle-to-organelle and cell-to-cell signaling. Our understanding of how ROS are regulated in cells by balancing production, scavenging, and transport has also increased. In this Review, we discuss these promising developments and how they might be used to increase plant resilience to environmental stress. Temperature stress is one of the major abiotic stresses that adversely affect agricultural productivity worldwide. Temperatures beyond a plant's physiological optimum can trigger significant physiological and biochemical perturbations, reducing plant growth and tolerance to stress. Improving a plant's tolerance to these temperature fluctuations requires a deep understanding of its responses to environmental change. To adapt to temperature fluctuations, plants tailor their acclimatory signal transduction events, specifically, cellular redox state, that are governed by plant hormones, reactive oxygen species (ROS) regulatory systems, and other molecular components. The role of ROS in plants as important signaling molecules during stress acclimation has recently been established. Here, hormone-triggered ROS produced by NADPH oxidases, feedback regulation, and integrated signaling events during temperature stress activate stress-response pathways and induce acclimation or defense mechanisms. At the other extreme, excess ROS accumulation, following temperature-induced oxidative stress, can have negative consequences on plant growth and stress acclimation. The excessive ROS is regulated by the ROS scavenging system, which subsequently promotes plant tolerance. All these signaling events, including crosstalk between hormones and ROS, modify the plant's transcriptomic, metabolomic, and biochemical states and promote plant acclimation, tolerance, and survival. Here, we provide a comprehensive review of the ROS, hormones, and their joint role in shaping a plant's responses to high and low temperatures, and we conclude by outlining hormone/ROS-regulated plant-responsive strategies for developing stress-tolerant crops to combat temperature changes. Onward upward for now. Next! Adenosine triphosphate (ATP) is an energy-carrying molecule known as "the energy currency of life" or "the fuel of life," because it's the universal energy source for all living cells.1 Every living organism consists of cells that rely on ATP for their energy needs. ATP is made by converting the food we eat into energy. It's an essential building block for all life forms. Without ATP, cells wouldn't have the fuel or power to perform functions necessary to stay alive, and they would eventually die. All forms of life rely on ATP to do the things they must do to survive.2 ATP is made of a nitrogen base (adenine) and a sugar molecule (ribose), which create adenosine, plus three phosphate molecules. If adenosine only has one phosphate molecule, it’s called adenosine monophosphate (AMP). If it has two phosphates, it’s called adenosine diphosphate (ADP). Although adenosine is a fundamental part of ATP, when it comes to providing energy to a cell and fueling cellular processes, the phosphate molecules are what really matter. The most energy-loaded composition for adenosine is ATP, which has three phosphates.3 ATP was first discovered in the 1920s. In 1929, Karl Lohmann—a German chemist studying muscle contractions—isolated what we now call adenosine triphosphate in a laboratory. At the time, Lohmann called ATP by a different name. It wasn't until a decade later, in 1939, that Nobel Prize–-winner Fritz Lipmann established that ATP is the universal carrier of energy in all living cells and coined the term "energy-rich phosphate bonds."45 Lipmann focused on phosphate bonds as the key to ATP being the universal energy source for all living cells, because adenosine triphosphate releases energy when one of its three phosphate bonds breaks off to form ADP. ATP is a high-energy molecule with three phosphate bonds; ADP is low-energy with only two phosphate bonds. The Twos and Threes of ATP and ADP Adenosine triphosphate (ATP) becomes adenosine diphosphate (ADP) when one of its three phosphate molecules breaks free and releases energy (“tri” means “three,” while “di” means “two”). Conversely, ADP becomes ATP when a phosphate molecule is added. As part of an ongoing energy cycle, ADP is constantly recycled back into ATP.3 Much like a rechargeable battery with a fluctuating state of charge, ATP represents a fully charged battery, and ADP represents a "low-power mode." Every time a fully charged ATP molecule loses a phosphate bond, it becomes ADP; energy is released via the process of ATP becoming ADP. On the flip side, when a phosphate bond is added, ADP becomes ATP. When ADP becomes ATP, what was previously a low-charged energy adenosine molecule (ADP) becomes fully charged ATP. This energy-creation and energy-depletion cycle happens time and time again, much like your smartphone battery can be recharged countless times during its lifespan. The human body uses molecules held in the fats, proteins, and carbohydrates we eat or drink as sources of energy to make ATP. This happens through a process called hydrolysis . After food is digested, it's synthesized into glucose, which is a form of sugar. Glucose is the main source of fuel that our cells' mitochondria use to convert caloric energy from food into ATP, which is an energy form that can be used by cells. ATP is made via a process called cellular respiration that occurs in the mitochondria of a cell. Mitochondria are tiny subunits within a cell that specialize in extracting energy from the foods we eat and converting it into ATP. Mitochondria can convert glucose into ATP via two different types of cellular respiration: Aerobic (with oxygen) Anaerobic (without oxygen) Aerobic cellular respiration transforms glucose into ATP in a three-step process, as follows: Step 1: Glycolysis Step 2: The Krebs cycle (also called the citric acid cycle) Step 3: Electron transport chain During glycolysis, glucose (i.e., sugar) from food sources is broken down into pyruvate molecules. This is followed by the Krebs cycle, which is an aerobic process that uses oxygen to finish breaking down sugar and harnesses energy into electron carriers that fuel the synthesis of ATP. Lastly, the electron transport chain (ETC) pumps positively charged protons that drive ATP production throughout the mitochondria’s inner membrane.2 ATP can also be produced without oxygen (i.e., anaerobic), which is something plants, algae, and some bacteria do by converting the energy held in sunlight into energy that can be used by a cell via photosynthesis. Anaerobic exercise means that your body is working out "without oxygen." Anaerobic glycolysis occurs in human cells when there isn't enough oxygen available during an anaerobic workout. If no oxygen is present during cellular respiration, pyruvate can't enter the Krebs cycle and is oxidized into lactic acid. In the absence of oxygen, lactic acid fermentation makes ATP anaerobically. The burning sensation you feel in your muscles when you're huffing and puffing during anaerobic high-intensity interval training (HIIT) that maxes out your aerobic capacity or during a strenuous weight-lifting workout is lactic acid, which is used to make ATP via anaerobic glycolysis. During aerobic exercise, mitochondria have enough oxygen to make ATP aerobically. However, when you're out of breath and your cells don’t have enough oxygen to perform cellular respiration aerobically, the process can still happen anaerobically, but it creates a temporary burning sensation in your skeletal muscles. Why ATP Is So Important? ATP is essential for life and makes it possible for us to do the things we do. Without ATP, cells wouldn't be able to use the energy held in food to fuel cellular processes, and an organism couldn't stay alive. As a real-world example, when a car runs out of gas and is parked on the side of the road, the only thing that will make the car drivable again is putting some gasoline back in the tank. For all living cells, ATP is like the gas in a car's fuel tank. Without ATP, cells wouldn't have a source of usable energy, and the organism would die. Eating a well-balanced diet and staying hydrated should give your body all the resources it needs to produce plenty of ATP. Although some athletes may slightly improve their performance by taking supplements or ergonomic aids designed to increase ATP production, it's debatable that oral adenosine triphosphate supplementation actually increases energy. An average cell in the human body uses about 10 million ATP molecules per second and can recycle all of its ATP in less than a minute. Over 24 hours, the human body turns over its weight in ATP. You can last weeks without food. You can last days without water. You can last minutes without oxygen. You can last 16 seconds at most without ATP. Food amounts to one-third of ATP production within the human body.
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~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_ ❤️💡🌱😽💨 Everyone was up-potted 2 days ago and showing a little new growth since then. They're all very healthy looking, one has some slight yellowing which should disappear soon with our change but all plants are extremely small for their size.. we've been letting these dry out completely between watering so I'm convinced there's a genetic component to this. We've had a few other strains start extra slow for us in the past and one in particular that started slow and then took off like wildfire around week 5 so I'm not too concerned ..they're each using 3gal square (plastic) pots willed with fresh Promix-HP..they're getting a little bit of Big Bloom with smaller amounts of Grow Big with every other watering now and this has corrected the odd hue we noticed around wk3.. The Mars SP-3000 is about 2.5 away, it sounds far but despite the distance, node spacing is always really tight in that tent all through veg We're hoping for some explosive growth this week now that everyone is officially settled, we're still on the fence as to how we'll train these but odds are we'll do our typical 4 way LST after topping and keep under their skirts bare.. ..there no telling how long we'll veg these as size is always our determining factor but when the time comes, we plan to flower in this tent as well.. not too much else to report, its been an effortless week.. thanks as always for dropping by and happy harvests everyone!! 👊😺 ~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~ 8/17 We've gotten some fast growth in the last few days.. we figured they were just late to the party.. we topped all plants at the 3rd node yesterday and we'll eventually pull each plant 4 ways..apparently the "weird hue" is genetic, they all have a unique purple undertones..neat strain for sure.. we dropped the SP-3000 a few inches and they're praying to it almost around the clock..we're debating on building a 4x2 PVC scrog table for these girls if we find the time.. thanks for dropping by Growmies! Much love!❤️ ⚡Mars Hydro/SP-3000⚡ Specifications ⚙️: Diodes: Samsung LM301B / Osram 660nm (960 total!) Driver: Meanwell 300watt 🔌 (300W±5% @AC120V-277V) PPF: 824umol/S ☢️ PPE: 2.8 µmol/j 〰️〰️ Lifespan: 50k+ hrs ⌛ Weight: 10.1 lbs (4.6kg) Veg Coverage: 3 x 5 ft 🌱 Flowering Coverage: 2 x 4 ft 🌼 -The SP-3000 uses an aluminum heatsink (no fan) and the driver can be placed outside the tent 🌡️⬇️ -IP65 waterproof ratings, tolerant to high humidity grow environments 💦 .. -Up to 15 can be daisy-chained together and all controlled from a single light! 💡~💡~💡~💡~💡 ~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_~_
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D85/F41 - 24/06/23 - She's almost ready, I think I'll start the flush soon D86/F42 - 25/06/23 - Temp is still too high, I'm trying to refresh the environment with air conditioning D87/F43 - 26/06/23 - First Thricomes Video. I'm going to start the flush today and I'll arwest next WE D88/F44 - 27/06/23 - Flushing D89/F45 - 28/06/23 - Flushing D90/F46 - 29/06/23 - Flushing D91/F47 - 30/06/23 - She's ready. Tomorrow I'll cut her
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Started LST today but as of Day 22 Mazar was 24 cm Daiquiri was 13 cm and Auto Ultimate was 22 cm. They are doing really well and growing fast!! Daiquiri is definitely shorter then the other two but I believe that is her nature.
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@JKent19
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Not going to lie, with everything going on in the world right now, taking pictures of the plants was not high on my priority list. I basically snapped a couple of pics and took a couple of videos today and decided that will be it. This is not the place to get political, but I truly hope that against all odds by the time of my next post peace will have returned to Ukraine. In terms of the grow, plants seem to be doing great. Over the past couple of days, the buds have started to fatten up to the point where I think my yield will at least be on par with the last run. I'm still giving her another 3-4 weeks before I think they'll be finished up, but it honestly could be anywhere from 2-6 weeks, just have to wait and see. On a side note the plants are becoming more and more different, to the point where they don't even look like the same pheno. One plant has airy, larfy buds but has made some progress over past 24 hours towards tightening up a bit. The other plant has these fat, dense, stocky nugs that look very much like an indica strain, we will see how this affects the harvest. Thanks as always for taking the time to read my update, hoping for a more cheery update next week.
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@Mo_Powers
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it has really developed very well. it has grown another 10cm. and the flowers are now really coming into their own and are getting thicker and thicker. because of the heat, it has been given calm-a-mag and acti-vera by biobizz. and of course now also bio-bloom.
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@GrowDr
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I Pruned all the lower herming sections and lowered the far red % as well. Lots of trichomes, which is always awesome. Smell is amazing
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@paetel
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At the beginning of week 4 she started to show yellow leaf tips. My assumption was that it's caused by light stress. I then increased the lamp distance progressively to around 25 cm, PPFD 400. Since the overall growth was satisfying I am not that worried. Maybe someone can chime in with a better analysis. Different sources say, that this strain could stretch up to 3x. I think I will flip her very soon since my tent is rather small.
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7/13 It's maine-ing out. Overcast and misting. I guess it rained last night but not much. Today is my watering day although I think they could've made it until tomorrow. These drastic temp changes makes it hard to get a STEADY routine in place. I watered everything in the 20's a gallon the 10's 1/2 gallon. The 10th planet in the front was still heavy so I didn't water it. I'll keep an eye on it. Temps are much milder. I noticed a few more septoria leaves on the 10th planet which I promptly defoliated. This pheno is flowering. I could've put this week as flowering as several plants have started. I also saw ONE leaf on my chem dog that had septoria on it. ONE f-ing leaf! I was planning on treating this early anyway so I mixed one gallon of plant doctor 3 tsp gallon/gallon which was the recommendation. I'll monitor this plant and continue treating it the next two weeks. I may do foliar too but the mixture is different. It's a systemic so I don't think that matters as much. Considering getting mulch to protect from spores on the soil. My plants look GORGEOUS. I Hate to use such a nice plant as a guennie pig but I'm not going to sit here and watch it progress. I'm lucky it's really not that bad and that it's on a reveg. There's so many leaves that I would be forced to prune anyway. I'm seeing two MAYBE three leaves a morning but I want to get this under control. Last year u let a plant with septoria go and it finished but went to extracts. I've got a pretty good feeling about this plant doctor. I've used it before with good results. Only time will tell though.🤞 EDIT: WENT OVER AT ABOUT 1PM. ITS 2 NOW AND BLUE SKIES AND SUNNY. IM SUPER GLAD I WATERED AND EVEN MORE SO THAT I APPLIED THE PLANT DOCTOR HOW I DID. THE GIRLS ALL LOOKED AMAZING. THE TENTH PLANET I TREATED WITH PLANT DOCTOR LOOKS THE BEST IVE EVER SEEN IT. I FOUND ON LEAVE DEEP ON THE INTERIOR WITJ A SMALL SPOT BUT ITS SOMETHING IM SURE I MISSED THIS MORNING. IF THIS WORKS THIS GOOD ILL BE APPLYING IT TO EVERYTHING EVEN IF ITS JUST PREVENTATIVE. 7/14 Rained last night andcwas still sprinkling when I went over. Amazingly the 10th planet that I treated with the plant doctorcmix had ZERO visible signs of septoria. I did find one leaf on Mt chem dog and two on my mk ultra with the big leaves. It could've been calcium deficiency but I really doubt it because I think I saw THAT as well. I'm going to wait a day or two and if there are still no negative results and the plant is still looking good I'm going to treat AT LEAST the two others that MAY be infected. It's a systemic and can be used proactively and supposably breaks down into p and k after stimulating immune response. I'll monitor a little longer but as it stands I think I'm going to treat the other two just in case. I also need to start feeding. I've watered a lot more than I normally do so obviously the soil won't last as long. This has been some tricky weather but I'm happy with how things are progressing. I probably should've changed this to the first week of flower as several plants are popping pistols everywhere. EDIT: WENT OVER AROUND NOON AND MIXED UP TEO GALLONS OF PLANT DOCTOR PLANNING TO TREAT THE TWO PLANTS BESIDE THE 10TH PLANET. EVERYTHING LOOKED SO PERFECT AND TOMORROW IS MY WATER DAY SO I DECIDED TO HOLD OFF AND APPLY IT WHEN IT NEEDS WATER ANYWAY. I DID NOTICE THAT PLANTS SEEM TO BE FLOWERING MORE AGGREWWIVELY THAN BEFORE. THINGS ARE GETTING INTERESTING. 7/15 It was water day. The girls looked great this morning. I watered everything at least a gallon and 1.5 for the thirstier plants. I treated my big fan leaf mk ultra and my chem dog #4 with the same Plant Doctor mix as i did tge 10th planet beside it. I havent seen ANY septoria on that plant since application and it looks better than ever. I watered them with a half gallon of phed water before doing a soul drench with the gallon of Plant Doctor @ 3tsp/gal. I'm not seeing much septoria but plants are starting flower and I want to nip it in the bud. This product can be used preventatively and I went by the guidelines for medical marijuana. It was 70 earlier this morning. I'll update as I go forward. EDIT: WENT BACK OVER AT 3 AS THE TENPS WERE PIST 90 AND HAD BEEN ALL DAY. I POSTED A SHORT VIDEO BUT EVERYTHING IS LOOKING GREAT. THE PLANT DOCTOR SEEMS TO HAVE HELPED SUBSTANTIALLY. DIDNT FIND ONE SEPTORIA LEAF. STILL IT WILL TAKE A WHILE TO WORK FULLY BUT IM GLAD I DIDNT CHICKEN OUT AND I APPLIED THE RIGHT AMOUNT. IM GOING TO KEEP AN EYE ON THINGS BUT I MIGHT JUST TREAT EVERYTHING PREVENTATIVELY WHICH IS JUST HALF A TSP A GALLON I THINK. IT DEF TRIGGERS A RESPONSE IN THE PLANT. I LOVE IT WHEN SHIT JUST WORKS OYT AND YOU END UP PLEASANTLY SURPRISED. NEXT WATERING ILL PROBABLY DO NUTES. IM DEBATING WHETBER TO TRELLUS OR JUST USE STAKES AND STRINGS ACROSS THE CAGE AS NEEDED. OH WELL. OVER 90 IS TO MUCH FOR ME TO BE OUTSIDE FOR TOO LONG. 7/16 Plant Doctor is doimg its job. I saw a couple septoria leaves on chem dog but it was interior amd I could've missed it. It takes a little bit to get going. I think I'm going to treat the rest of the garden with at least the preventative dose of 1tsp per gallon. I'll wait and see if this keeps it from popping back up. It almost got to 100 yesterday. It was 80 early this morning. I mixed up two gallons of water and gave the thistiest/lightest a half gallon. I'm hoping that will hold everything over until tomorrow which is water day. I'll have to check but I think it might be time to feed too. I def should make sure to treat tjis septoria before focusing on nutes. It says you can mix it with nutes but I'm leary of doing so. I'd rather apply them at seperate times. I'll watch the garden and of I NEED to water I will. I'm hoping what I did will be enough. EDIT: WENT OVER AROUND ONE. IT WAS 93° WITH SUPER HIGH HUMIDITY. IM GLAD I SPLIT THAT TWO GALLONS WITH THOSE FOUR PLANTS THATS FOR SURE! THEY'D PROBABLY BE DROOPED IF I DIDNT. EVERYTHING WAD PRAYING TO THE SUN GODS. WELL, EVERYTHING EXCEPT THE MK ULTRA IN THE 30 AND THE 10TH PLANET. THEY ARENT DROOPING THEY JUST LOOK NORMAL. THEY ARENT "PRAYING" LIKE THE OTHERS. THEY ARE DEFINATELY A LITTLE LIGHT AND ARE LOOKING FORWARD TO THEIR WATERING. AND THEIR FEEDING. THATS FOR SURE. I WAS SUPER HAPPY WITH WHAT I SAW GOING OVER AND THE GIRLS WILL BE ABLE TO HOLD OUT UNTIL THE MORNING. ONE IN SPECIAL KUSH (WHICH GROW AMAZING AND LARGE HERE) IS IN A 10 AND I EVEN GAVE IT A LITTLE WATER THIS MORNING BUT ITS DROOPY. I COULD STILL FEEL A LITTLE BIT OF MOUSTURE EVEN THOUGH IT WAS LIGHT. IT CAN WAIT UNTIL THE MORNING WITH THE REST. IF IT WAS DROOPING BAD I WOULDA WATERED IT. I DONT GET WHY IM HAVING PROBLEMS FINISHING PLANTS IN 10GAL SMART POTS. YEARS AGO I COULD FINISH SOMETHING IN A 5GAL BUCKET! BUT NOW ITS LIKE THE PLANTS I GROW GET FAR TO BIG TO FINISH FLOWERING ON THESE TINY BAGS. ILL MONITER. HOPFULLY IT WILL BE FINE. IF I HAVE TO I SUPPOSE I COULD CUT THE BOTTOM OFF AND PUT THEM IN THE GROUND OR MORE SUBSTRATE BUT THATS NOT SOMETHING I REALLY WANT TO DO. I CANT WAIT TO SEE YOU THESE GIRLS TURN OUT.
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@BB_US
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These ladies are solid and filled with tons of orange hairs. The smell is like no other of citrus and fresh cut wood. One week then I am going to flush her.