Processing
Likes
Comments
Share
@
Follow
Likes
12
Share
@Daviz_42
Follow
Muy buena genética, me quedé con el pheno 1, ya que tenía más resina y un mejor terp para mi gusto. Buen híbrido no te deja superaplacado y ofrece un efecto cerebral eufórico.
Likes
19
Share
Hoy fue la peor semana del cultivo y de mi experiencia cultivando, siendo el tercer día de la semana 5 se me desprendió el ventilador en el indoor y se me cae sobre una planta quebrando la punta principal (blue moby). día siguiente queriendo doblar el tallo principal lo arranque literal, ahora está en un mal estado, en comparación a la blue moby que recupero. Leo criticas y concejos! Bh
Likes
18
Share
Hulkberry went into flowering and is stretching now. Purple Queen should follow soon. I turned up the light to 100%. Since PQ is a lot lower it should be fine even though it's not flowering yet. Friday, Day 32: Hulkberry stretching nicely, now at 52cm. I noticed some brown spots on the tops leaves. Wondering if this is a nutrient problem. Recently these leaves also started curling upward, so it also could be heat stress or light burn. Increased the distance to the light to 45cm. The timelapse also made me realise the leaves start drooping quite early each day, about 2-3 hours before lights out. So I extended the sunrise/sunset period to an hour. If this does not help I will reduce the light intensity and/or duration. Update: Just gave Hulkberry some extra Bio-Grow to counter the Nitrogen deficiency. Calmag is on the way, which will hopefully help with the brown spots. Thanks to everyone in the replies on my grow question. Looks like I underestimated how hungry she is. But it makes sense, since it is a rather fast Auto (RQS says 8-9 weeks from seed to harvest). The Bio-Bizz nutrient schedule was designed for up to 10 weeks of flowering phase. Purple queen still taking things slow. Probably needs another week before flowering. As suggested in the comments, I have propped it up to counter the height difference. Day 34, Sunday: Hulkberry got a bit of its color back after getting double doses of Bio-Grow to get some Nitrogen in there. The lower leaves are as good as gone. Also started giving some Calmag. Purple Queen looks like it's about to go into flowering phase.
Likes
14
Share
Likes
4
Share
These photos were taking yesterday and I meant to post than but here we are. They seem to be doing well, growth seems to be picking up a bit but I've noticed slight burns and I think I just started nutrients a little bit too early. A new addition to the tent is a 4th seed I planted today, I'm goign to breed the best female and male, hopefully I get two females and one male but well see.
Likes
10
Share
King Louis Garcia by growers choice Got 109.96G 1 plant Mars hydro 100W 32G was is a bit Larfy though Currently in paper bag then will put on jar tomorrow and leave to cure for few days Overall happy with the first harvest ,took 4 hours ( 4 episodes of sopranos) to trim not sure if I was slow or not but I get why some call it trim jail lol
Likes
14
Share
Here we go - My Grow on the Go. I am going to Germinate in the Canna Kan and then transfer directly into the final Pot in my Danf_Box
Likes
17
Share
@Dunk_Junk
Follow
16cm vertical growth this week but she's fully entered flowering!!!!!!!!!!! Look how bushy she got!
Likes
5
Share
Hi People. Week 3 here and my baby is fucking strong, is the first time I am using just LST as training and I have to say it blew my mind away. The plant is very green, and strong, do you know when the plant is smelling healthy green? So, now I know what it is. hahahhaa Thanks, people, and see you next week. Love you all!
Likes
16
Share
Day 70 - she is growing well and getting frosty. The buds getting bigger every week. The smell is great and the plant is bright colour when in late flowering I will do colder nights to get out the dark colours
Likes
43
Share
Gracias al equipo de Kannabia Seed y XpertNutrients, sin ellos esta magia no seria posible. 🍁💐 Runtz (Auto): Si esta cepa se ha ganado su popularidad a pulso, esta versión autofloreciente es digna heredera de sus atributos. No es de extrañar que nuestros criadores hayan acertado con su programa de reproducción, al combinar dos de las cepas más fascinantes de la actualidad: Zkittlez y Gelato. planta resistente y robusta, de cuerpo esbelto y fuerte ramificación lateral, que se puede cultivar prácticamente en cualquier entorno; pero prefiere los veranos largos y cálidos, tal y como quiere la madre naturaleza, donde bañada por el sol se eleva hasta los 120 cm. para producir unos rendimientos muy gratificantes de 100-150 gramos por planta. En interior, y tras solo 70 días desde la semilla, también recompensará con cosechas abundantes de hasta 500 gr./m² Inmediatamente después de encontrarte con ella, lo primero que notarás es su aroma descaradamente afrutado, con un toque tropical cortado con reminiscencias terrosas y amaderadas, que se entremezclan de forma agradable para ofrecer un combo que hace salivar las papilas gustativas. Ofrece un sabor confitado, refrescante y similar a sumergirse en una piscina de frutas cítricas y flores de fragancia intensa. Al inhalar, obtienes la bondad de la dulzura; al exhalar, el humo se convierte en suave y cremoso, dejando suficiente profundidad en cada bocanada para satisfacer a aquellos que buscan los matices más complejos. ⛽ XpertNutrients: es una empresa especializada en la producción y comercialización de fertilizantes líquidos 🍶y sustratos🐛, que garantizan los mejores resultados y cosechas de la más alta calidad. A través de una cuidadosa selección de materias primas y un proceso de producción avanzado, sus productos son sinónimo de resultados confiables. 🛒 Consigue aqui tus fertilizantes: https://xpertnutrients.com/es/sobre-nosotros/#:~:text=Xpert%20Nutrients%20es%20una%20empresa,de%20la%20m%C3%A1s%20alta%20calidad. 📆 Semana 5: Un temporal ha ralentizado el crecimiento, aunque ella sigue creciendo algo mas lento. No riego esta semana porque hay lluvias constantes que mantienen la humedad en el suelo. Esta semana creo que apareceran las primeras preflores.
Likes
14
Share
I would ideally have let these go for another week (if not 2 for the imperium) but my cuttings are in serious need of transplanting due to cold temps and becoming rootbound so will see how they fare on the next run given a full 10-12 weeks
Likes
68
Share
Well reveg is happening to only the plants in the ground. All plants are in the same place. This is so fucking strange. The potted plants are staying in flower. This is a strange occurrence for me. Everything should have reveged... better yet the difference between a potted plant and one in the ground. It's an incredible difference in size. And I water the ones in the ground with plain hose water. Straight city tap water. So this is a strange year. Its obvious the bar has been set really low this year. There will be no "tree" just bushes this year. But how big a bush you got?
Processing
Likes
70
Share
Illuminauto 21 - Sour Crinkle (Grape Crinkle x Sour Crack) Two of our fastest and frostiest varieties collide to make a sweet and sour delight! Expect super frosty, compact nugs that won't be a toke for novices. Destined to be a great strain for extraction work too! Plant size - Small - Medium Cycle time - 60-65 days from sprout Indica/Sativa - 80/20 Frost level - Extra Ridiculous https://www.mephistogenetics.com/product-page/illuminauto-21-sour-crinkle -------------------------------------------------------------------------------------------------------- 2017-10-18. Week 8 day 56 from germination. She is 33 cm high and really frosty and have nice buds. Maxed the nutes and hope she will grow a little more in the buds. Added video and pics. Its getting close to harvest i think.
Processing
Likes
15
Share
@No_Clout
Follow
27/02/19 - Cant wait for these to be done as I’ve never had gelato before so I feel like I’m missing out 😂 but yeah other than I let them stretch abit taller than I usually prefer it’s all going well, new genetics/nutrients/medium seem to be doing the job. 02/03/19 - Just transplanted all into their final pot, just in time I think as it looked like the roots were starting to circle at the bottoms of the pot, sprinkled half a tea spoon of Mykos on each hole prior to the transplant & fed them 2.5 litres each. I was going to saturate the whole pot but I’ll do that next feeding.
Likes
18
Share
Green light is radiation with wavelengths between 520 and 560 nm and it affects photosynthesis, plant height, and flowering. Plants reflect green light and this is why they appear green to our eyes. As a result, some growers think that plants don’t use green wavelengths, but they actually do! In fact, only around 5 – 10% of green light is reflected from leaves and the rest (90 – 95 %) is absorbed or transmitted to lower leaves [1]. Green wavelengths get used in photosynthesis. Chlorophyll pigments absorb small amounts of green wavelengths. Light that doesn’t get absorbed is transmitted to leaves that are shaded out from direct light. This means that leaves at the bottom of the canopy get more green light than leaves at the top. A high proportion of green wavelengths compared to other colors tells lower leaves that they are being shaded out, so they are able to react accordingly. Lower leaves may react by opening or closing their stomata or growing longer stems that help the leaves reach brighter light [1, 2, 3]. When it comes to growing cannabis, many cultivators are interested in the quality of light used for the flowering stage. In many plants, flowering is regulated by two main photoreceptors: cryptochrome and phytochrome. Both photoreceptors primarily respond to blue light but can also respond to green, although to a lesser extent. Green can accelerate the start of flowering in several species (although cannabis has yet to be tested) [1, 4, 5]. However, once flowering has begun, it’s important to provide plants with a “full spectrum” light that has high amounts of blue and red light, and moderate amounts of green, in order for photosynthesis to be optimized. Green light mediates seed germination in some species. Seeds use green wavelengths to decide whether the environment is good for germination. Shade environments are enriched in green relative to red and blue light, so a plant can tell if it is shady or sunny. A seed that senses a shaded environment may stay dormant to avoid poor growing conditions [1]. Some examples of plant species where researchers have documented this response are: ryegrass (a grass that grows in tufts) and Chondrilla (a plant related to dandelion) [1, 6]. Although green wavelengths generally tell plants NOT to germinate, there are some exceptions! Surprisingly, green wavelengths can stimulate seed germination in some species like Aeschynomene, Tephrosia, Solidago, Cyrtopodium, and Atriplex [1, 6, 7]. Of course, light is not the only factor affecting seed germination – it’s a combination of many factors, such as soil moisture, soil type, temperature, photoperiod, and light quality. When combined with red and blue light, green can really enhance plant growth [1, 8]. However, too much green light (more than 50% of the total light) can actually reduce plant growth [8]. Based on the most current research, the ideal ratio of green, red, and blue light is thought to be around 1:2:1 for green:blue:red [9]. When choosing a horticultural light, choose one that has high amounts of blue and red light and moderate amounts of green and other colors of light. Not many studies can be found about the effect of green light on cannabis growth or metabolism. However, if one reads carefully, there are clues and data available even from the very early papers. Mahlberg and Hemphill (1983) used colored filters in their study to alter the sunlight spectrum and study green light among others. They concluded that the green filter, which makes the environment green by cutting other wavelengths out, reduced the THC concentration significantly compared to the daylight control treatment. It has been demonstrated that green color can reduce secondary metabolite activity with other species as well. For example, the addition of green to a light spectrum decreases anthocyanin concentration in lettuce (Zhang and Folta 2012). If green light only reverses the biosynthesis of some secondary metabolites, then why put green light into a growth spectrum at all? Well, there are a couple of good reasons. One is that green penetrates leaf layers effectively. Conversely red and blue light is almost completely absorbed by the first leaf layer. Green travels through the first, second, and even third layers effectively (Figure 2). Lower leaf layers can utilize green light in photosynthesis and therefore produce yields as well. Even though a green light-specific photoreceptor has not yet been found, it is known that green light has effects independent from the cryptochrome but then again, also cryptochrome-dependent ones, just like blue light. It is known that green light in low light intensity conditions can enhance far red stimulating secondary metabolite production in microgreens and then again, counteracts the production of these compounds in high-intensity light conditions (Kim et al. 2004). In many cases, green light promoted physiological changes in plants that are opposite to the actions of blue light. In the study by Kim et al. blue light-induced anthocyanin accumulation was inhibited by green light. In another study it has been found that blue light promotes stomatal opening whereas green light promotes stomatal closure (Frechilla et al. 2000). Blue light inhibits the early stem elongation in the seedling stage whereas green light promotes it (Folta 2004). Also, blue light results in flowering induction, and green light inhibits it (Banerjee et al., 2007). As you can see, green light works very closely with blue light, and therefore not only the amount of these two wavelengths separately is important but also the ratio (Blue: Green) between these two in the designed spectrum. Furthermore, green light has been found to affect the elongation of petioles and upward leaf reorientation with the model plant Arabidopsis thaliana both of which are a sign of shade avoidance symptoms (Zhang et al. 2011) and also gene expression in the same plant (Dhingra et al. 2006). As mentioned before, green light produces shade avoidance symptoms which are quite intuitive if you consider the natural conditions where the plants grow. Not all the green light is reflected from the highest canopy leaves in nature but a lot of it (50-90%) has been estimated to penetrate the upper leaves at the plant level ((Terashima et al., 2009; Nishio, 2000). For the plant growing in the understory of the forest green light is a signal for the plant of being in the shade of a bigger plant. Then again, the plants growing under unobstructed sunlight can take advantage of the green photons that can more easily penetrate the upper leaves than the red and blue photons. From the photosynthetic pigments in higher plants, chlorophyll is crucial for plant growth. Dissolved chlorophyll and absorb maximally in the red (λ600–700 nm) and blue (λ400–500 nm) regions of the spectrum and not as easily in the green (λ500–600 nm) regions. Up to 80% of all green light is thought to be transmitted through the chloroplast (Terashima et al., 2009) and this allows more green photons to pass deeper into the leaf mesophyll layer than red and blue photons. When the green light is scattered in the vertical leaf profile its journey is lengthened and therefore photons have a higher chance of hitting and being absorbed by chloroplasts on their passage through the leaf to the lower leaves of the plant. Photons of PPFD (photosynthetic photon flux density) are captured by chlorophyll causing an excitation of an electron to enter a higher energy state in which the energy is immediately passed on to the neighboring chlorophyll molecule by resonance transfer or released to the electron transport chain (PSII and PSI). Despite the low extinction coefficient of chlorophyll in the green 500–600 nm region it needs to be noted that the absorbance can be significant if the pigment (chlorophyll) concentration in the leaf is high enough. The research available clearly shows that plants use green wavelengths to promote higher biomass and yield (photosynthetic activity), and that it is a crucial signal for long-term developmental and short-term dynamic acclimation (Blue:Green ratio) to the environment. It should not be dismissed but studied more because it brings more opportunities to control plant gene expression and physiology in plant production. REFERENCES Banerjee R., Schleicher E., Meier S. Viana R. M., Pokorny R., Ahmad M., Bittl R., Batschauer. 2007. The signaling state of Arabidopsis cryptochrome 2 contains flavin semiquinone. The Journal of Biological Chemistry 282, 14916–14922. Dhingra, A., Bies, D. H., Lehner, K. R., and Folta, K. M. 2006. Green light adjusts the plastic transcriptome during early photomorphogenic development. Plant Physiol. 142, 1256-1266. Folta, K. M. 2004. Green light stimulates early stem elongation, antagonizing light-mediated growth inhibition. Plant Physiol. 135, 1407-1416. Frechilla, S., Talbott, L. D., Bogomolmi, R. A., and Zeiger, E. 2000. Reversal of blue light -stimulated stomatal opening by green light. Plant Cell Physiol. 41, 171-176. Kim, H.H., Goins, G. D., Wheeler, R. M., and Sager, J. C. 2004.Green-light supplementation for enhanced lettuce growth under red- and blue-light emitting diodes. HortScience 39, 1617-1622. Nishio, J.N. 2000. Why are higher plants green? Evolution of the higher plant photosynthetic pigment complement. Plant Cell and Environment 23, 539–548. Terashima I., Fujita T., Inoue T., Chow W.S., Oguchi R. 2009. Green light drives leaf photosynthesis more efficiently than red light in strong white light: revisiting the enigmatic question of why leaves are green. Plant & Cell Physiology 50, 684–697. Zhang, T., Maruhnich, S. A., and Folta, K. M. 2011. Green light induces shade avoidance symptoms. Plant Physiol. 157, 1528-156. Wang, Y. & Folta, K. M. Contributions of green light to plant growth and development. Am. J. Bot. 100, 70–78 (2013). Zhang, T. & Folta, K. M. Green light signaling and adaptive response. Plant Signal. Behav. 7, 75–78 (2012). Johkan, M. et al. Blue light-emitting diode light irradiation of seedlings improves seedling quality and growth after transplanting in red leaf lettuce. HortScience 45, 1809–1814 (2010). Kasajima, S., et al. Effect of Light Quality on Developmental Rate of Wheat under Continuous Light at a Constant Temperature. Plant Prod. Sci. 10, 286–291 (2007). Banerjee, R. et al. The signaling state of Arabidopsis cryptochrome 2 contains flavin semiquinone. J. Biol. Chem. 282, 14916–14922 (2007). Goggin, D. E. & Steadman, K. J. Blue and green are frequently seen: responses of seeds to short- and mid-wavelength light. Seed Sci. Res. 22, 27–35 (2012). Mandák, B. & Pyšek, P. The effects of light quality, nitrate concentration and presence of bracteoles on germination of different fruit types in the heterocarpous Atriplex sagittata. J. Ecol. 89, 149–158 (2001). Darko, E. et al. Photosynthesis under artificial light: the shift in primary and secondary metabolism. Philos. Trans. R. Soc. B Biol. Sci. 369 (2014). Lu, N. et al. Effects of Supplemental Lighting with Light-Emitting Diodes (LEDs) on Tomato Yield and Quality of Single-Truss Tomato Plants Grown at High Planting Density. Environ. Control Biol. 50, 63–74 (2012).
Likes
1
Share
Day 2; 48 hrs the Purple Star Killer seed's root was long enough to go into soil today. I use Happy Frog soil for seedlings. The soil cup will stay on the heat mat insuring the temp is kept at 75°F. Day1; 24 hrs and the Purple Star Killer seed has a visible tap root. I'll wait a little longer before putting it in soil. I like to see the root about a quarter inch before planting. Day 0; Germination, paper towel method.