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@Herbinski
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Both seeds came out quick and vigorous, I hade to leave for three days and left the tent closed and the humidity went through the roof, I think this caused the leaves to twist up a little but at this moment I am not very concerned about that, Based on the other strains I did from the Sherbinskis Humboldt line, I am expecting a bit longer vegitation period, so a minimum of 6 weeks, depending on how they develop, The Bilberry Lamp is making a great impression I must say, the special grow spectrum in full effect. Hope they go good, fingers crossed 👍
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Hello everyone, Another week has passed a very hot week to be precise. The buds look thinner than the previous peyote cookies plants i have grown. Next week i will flush the salts out of the soil. Thanks for stopping by and have a nice day. Best regards, Growfather
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@Sfinxks
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Air pump on 2 plants failed and the plants went kraty for a week. Aiming at 400g now, one sticky beast is almost ready to harvest, Lucky first grow! 👌🏻
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**Encontrarás la traducción a español al final de la descripción** If you like this week, please hit a like, it costs you nothing! 👊. Thanks in advance 😉! From/Desde: 16/09/19 || To/Hasta: 22/09/19 From day/Desde día: 56 || To day/Hasta día: 62 -----IMAGES & VIDEOS----- V1 - Compiled all growing timelapses into a complete growing video, hope you like it mates!. V2 - My apologies about the quality of this video buddies, I didn't choose a very good place to record it, and also the GoPro released the manual configured blocked exposure, so there are many color differences among days, as every day upon lights on the GoPro make a new exposure and temp adjustment (The light is 3,000k i don't know why the GoPro read it different daily). V3 - I'm still learning to record some cool videos, as for example @MyrceneDream ones 👊, and many others.... I'm not doing it well at time. -----WEEK SUMMARY----- Hard work times drain my time for the plants and to make content, sorry about that. At last flowering started, as can be shown in the weekly video, the first 3 days after the full switch to 12, she stayed in a frozen state, no much growing or movement at all. Since the 4th day she started to grow at high speed, a bit more than a cm/day. She's really looking awesome, making some bold branches and defining every part of the plant very well. Some weeks ago I told that the smell went too strong at home, but it lowered to normal levels last week, now she's smelling more and more each day again ;). I can say about Alice.K, that I had 0 problems or weird things along the current 9 weeks, she suffered very high temperatures, some insects, and also i'm going hard with nutes, I'm cycling EC reaching 2 sometimes, and she didn't show any excess signs at time, I'm not telling that they're not going to exist on Alice, but not at time, if i see some, i will stop and re-adjust. Also she has responded very well to every prune or cut I've maded to her, and the distribution is perfect, I'm in love with the form she developed. while i was thinking on 4 external main colas with 12 secondary decent Satellites, she's developing 2 awesome central colas, with 4 secondary and very decent sub-colas, and then 10 excellent satellites, and many small ones that i will cut later on (Already cutted many below the SCROG net). -----WATERING CALENDAR----- 18/09/19 (Day 58) - 3,000 ml with Tarantula, Piranha, Rhino Skin, Big Bud, Bud Candy & Bud Ignitor @ (1.1 E.C. | PH 6 | 25.7ºC) 22/09/19 (Day 62) - 4,000 ml with Silica Power, Organic Bloom, PK Booster, Bloom Stimulator, Pro Active, Bud Ignitor, Bud Candy, Bud Factor X & Sensizym @ (2.1 E.C. | PH 6.4 | 25.8ºC) *****ESPAÑOL***** Por favor, si te gusta esta semana dale un like, no te cuesta nada 👊. ¡Gracias por adelantado 😉! -----IMÁGENES Y VÍDEOS V1 - He compilado todos los timelapses de crecimiento en un vídeo de 1 minuto, espero que os guste!. V2 - Debo disculparme por la calidad de este vídeo compañeros, no escogí una buena posición para situar la cámara y esta además perdió el bloqueo de exposición que le pongo, por lo que al realizar un auto-ajuste automático a diario, hay diferencia en la exposición y el color entre los vídeos de cada día. No entiendo por que siendo siempre la misma luz de 3.000 k la cámara la interpreta diferente cada día. V3 - Todavía estoy intentado aprender ha hacer buenos vídeos, como pueden ser los de @MyrceneDream 👊 entre muchos otros por ejemplo... De momento no me salen bien, ya iré mejorando. -----SUMARIO SEMANAL----- Estoy teniendo tanto trabajo que me está dejando muy poco tiempo para las plantas y para realizar contenidos, lo siento. Por fin empezó la floración. Como se puede ver en el vídeo semanal, los 3 primeros días de la floración la planta se mantuvo en un estado vegetativo (sin crecimiento). A partir del cuarto día a empezado a crecer a gran velocidad, de momento más de 1 cm al día. De verdad que se ve maravillosa, está engordando bien las ramas y definiendo su partes muy bien. Hace algunas semanas comenté que ya estaba apestando toda mi casa y aún estaba en crecimiento. El olor fue disminuyendo hasta niveles normales y esta semana de nuevo está volviendo a incrementar su olor día a día. De momento debo remarcar que en 9 semanas de cultivo que van, la Alice.k me ha dado 0 problemas o cosas raras. Ha sufrido de altas temperaturas, algunos insectos y he empezado a ir fuerte con los nutrientes. Estoy ciclando la EC en los riegos, sobrepasando los 2 en algunos casos, de momento no ha mostrado ningún signo de exceso. Con esto no quiero decir que no los vaya a mostrar si sigo así, pero de momento no lo ha hecho, si en algún momento empiezo a ver signos, ya frenaré y reajustaré. También es un planta fuerte y con capacidad de recuperación rápida, eso se puede observar en los vídeos perfectamente. Y lo increíble es la distribución que ha adquirido, mientras yo pensaba en una estructura con 4 colas exteriores principales grandes y 12 satélites centrales pequeños, ella me ha sorprendido formándose con 2 cola centrales enormes (para el tamaño del cultivo), 4 colas exteriores grandes y un montón de satélites de tamaño superior al que esperaba, más adelante cortaré los que se queden más retrasados (de momento he cortado mucho de lo que quedaba por debajo de la red) -----CALENDARIO DE RIEGO----- 18/09/19 (Día 58) - 3.000 ml con Tarantula, Piranha, Rhino Skin, Big Bud, Bud Candy & Bud Ignitor @ (1,1 E.C. | PH 6 | 25,7ºC) 22/09/19 (Día 62) - 4.000 ml con Silica Power, Organic Bloom, PK Booster, Bloom Stimulator, Pro Active, Bud Ignitor, Bud Candy, Bud Factor X & Sensizym @ (2,1 E.C. | PH 6,4 | 25,8ºC)
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This week was a lil tougher then usual.. ran into a bad deficiency that took me a minute to get a hold of, but everything seems to be moving along great. Getting her frost on and building to her stack 🤩 Follow my personal grows on IG where I upload only cannabis. @authenticgrow . I only have 2 plants on grow diaries but 8 others on IG😃
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First sights of trichomes on leafs (sugar leafs)! No issues she’s growing good just a few yellow leaves on gc2. Looked like she needed cal mag, chopped the yellowed leaves and put cal mag 6 ml. Usually give cal mag every other watering but ima give them more often since I’m using dechlorinated tap water.
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Buenas noches familia, os aseguro que es sorprendente el cambio de olores que pego en una semana, es un olor muy fuerte , y todavía quedan semanas, que miedo da esta variedad, tiene buen porte y se ve que va salir potente. En tan solo 5,5 litros tenemos un plantón híbrido con toques índicos en su forma y sativas en su tamaño y forma de las hojas. La floración es bastante rápida estamos viendo controlando temperaturas y humedades, todo está dentro de los parámetros correctos. Destacamos la densidad de sus flores y lo compactas que se forman entre sí, promete.
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@Arcadium
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Weathers been great, a little cold in the mornings, but sunny and 25c every day. Flowering looking great, close to week 5. All the LST done, now to just sit back and wait. Heavy top dress of compost mixed with 70/30 Gaia Green PB/AP (20Tbsp). Weekly spray of BT/Lactobacillus/Epsom, occasionally soil drench of Lactobacillus as well, which is 50% molasses (1-2 Tbsp per gallon). Still seeing tons of moth / caterpillar eggs on mesh netting, but the wasps are making short work of them. Nice even (almost) canopy is making for some great uniform flowering. **Bonus last picture** I had an extra GC FF as a "backup", planted same time but early flowered due to root bound 7 gallon I assume, notice all the single bladed fan leaves, stress maybe? Just harvested, looks good, but I'm sure my main plant will be much better.. Early flowering was sure nice.
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@Dunk_Junk
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Chopped during the week and drying now............ The first pics are taken just before harvest. Video is as it is drying out. Dry weight 140 g!!!!!!!!! Very pleased with this. Nice genetics, I'm excited to do more strains for Barneys Farm.
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So we're here again. Seem to have got the worst of the slug and s ail problem under control. Just hoping they haven't done too much damage. She's looking really healthy and really taken well to biobizz nutrients. I'm tying her down every couple days and have started tying out some of the branches. Hopefully we'll start to see some preflowers soon. Thanks for checking in. See you next time.
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Primer dia desde cambio de fotoperiodo, recien se pueden ver los primeros pistilos indicando el sexo de nuestras plantas🌱. En unos dias se veran las primeras preflores que nos indicaran que partio la floracion🌺. Muy contento con los resultados obtenidos hasta ahora con tan solo 4 semanas de vegetacion, hemos llenado el espacio super rapido🔥. Se pretende sacar este cultivo en menos de 3 meses, asi como vamos se cree lograrlo!. Las proximas lavores a realizar sera desfoliacion a los 21 dias de floracion ✂️. Iluminacion Sodio 400w al 75% se aumentara en una semana a 100% 💡. Fertilizacion con linea @topcropchile 💥 Potenciadorgenetico @knactive_ ⚡ Royal gorilla🦍 by: @royalqueenseedsrqs 🦁.
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@Dr_Boom
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Yet another fun and eventful week! I did some final defiliation and LST before I flip them next week. I'd love to repot these into 3 gallon pots and veg longer, but I just don't have the space. I should get a good yield anyway. They grew well this week, and filled out nicely. I'm loving the way most of these are developing. The topping worked well and my canopy is looking good on these. I didn't have any problems this week. Everything went well, and I had a great time!
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En esta semana con las lluvias y vientos se me quebro una rama 😬
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@Salokin
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Hello Growmies, The final chapter of this incredible journey has unfolded, and it's time to share the bountiful harvest and reflections on the entire cultivation process. Trimming the plant was a joy, and with gentle fingers, I removed all the large fan leaves. The precision in this process revealed the true beauty of the buds, setting the stage for a smooth harvest. With care and gratitude, the plant was chopped, and the buds were hung to dry. The anticipation for what lies ahead only adds to the sense of accomplishment. The wet weight, excluding fan leaves, stands at an impressive 782 grams. The buds are massive, a testament to the efficacy of the nutrients used, particularly the Power Buds. The name seems apt, as the result is a collection of sticky, dense buds with subtle lemon notes and sweet pungent undertones. In the final moments, the plant unveiled some delightful purple hues. While I wish I could have allowed them to intensify further, it's a reminder that each grow is a learning experience. In hindsight, a slightly longer fading period would have accentuated those beautiful colors. We live and learn, and that's the essence of this journey. A heartfelt thank you to Plagron and Zamnesia for hosting this amazing contest. The quality of the products and the support throughout the journey have been invaluable. As this chapter concludes, I'm left with a sense of fulfillment and gratitude for the collective experience we've shared. The plant's growth, from seed to harvest, has been a testament to the art and science of cultivation. Feel free to check out my other adventures in my bigger environments, until then...happy growing! Stay Lifted Salokin
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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).
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14 días desde EASY START.(4 semillas,1 venía solo la cáscara de un lado) Maceta RQS 10L. -EASY BOST ORGANIC NUTRITION.(preparación del suelo con 50g en 10 litros de sustrato con perlita) -EASY COMBO BOOSTER PACK. -En la 2ª semana riego las 4 plantas con agua mezclada con la pastilla EASY GROW BOOSTER (la dividí en 4 trozos para la semana 2,3,4 y 5 diluyendo en 1L. de agua la mezcla). -Las 3 que están en vaso de plástico para la próxima semana le voy añadir al vaso uno granos del EASY BOOST ORGANIC que no le mezclé cuando las planté). 👌
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@BlaKX
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Ai Gude Growmies, Alter Tobi (NL auto)🧓🏼🌌: 5.6= 21cm 8.6=29cm +8cm Canna Terra Vega Gorilla Punch Auto 🦍👊🏻🚗: 5.6= 20,5cm 8.6= 25cm +4,5 cm Canna Terra Flores / Canna Boost Mimosa Cake Auto🍹🍰🚗: 5.6= 23cm 8.6= 30cm +7cm Canna Terra Vega Habe mich gegen das Toppen entschieden da es noch mehr Stress bedeuten würde und ich beim ersten mal Autoflower Genetik lieber auf Nummer sicher gehen wollte da. Endlich bin ich auch wieder im Wochen takt das es immer Sonntags die neue Woche hochladen kann. Fangen wir beim Alten Tobi an dem Sorgenkind nachdem Blatt Schaden fing er an sehr gezackte und verformte Blätter zu entwickeln. Natürlich ist der Punkt das die Erde am anfang zu trocken war und ich tauchen musste um die Erde richtig zu wässern. Denke der ganze Stress ist daran schuld und ein Teil die Genetik weil die anderen 2 haben sich wie ich empfinde gut entwickelt. Oder meint ihr die Pilze wo im Topf wachsen haben damit was zu tun was ich mir nicht vorstellen kann oder ? Die GPA wächst sehr gut in die Breite und entwickelt massive stabile Seitentriebe. Sie ist den anderen geschätzte 5-7 Tage voraus. Hatte gehofft das sie mehr in die Höhe schießt da die anderen ihr 5cm voraus sind. Werde wahrscheinlich einfach sie. Höher setzen das sie mit den anderen gleich hoch ist. Sie hat als einzige schon Blüte Dünger und Booster bekommen vor 2 Tagen seitdem explodiert sie förmlich🤯 Zu guter letzt die MCA sie hat die trocken und wässer Phase gut überstanden. Leider hätte ich den Vega Dünger nicht erhöhen müssen da sie jetzt leichte Adlerkrallen hat. Ansonsten habe ich sie nur entlaubt da für LST die Triebe noch wachsen müssen und sie ist nicht so Dicht verzweigt ist denke ich geht es ohne solange an alle Triebe ausreichend Licht fällt. Da ab jetzt bei allen definitiv die Blüte beginnt habe ich vor 2 tagen die ADlite Red-55 (660nm Deep Red 55w) zugeschaltet und die Haupt-Lampe von 60% (400w) auf 80% (520w) geschaltet da es endlich die Temperaturen wieder zu lassen. Die 2 anderen Pflanzen sind Fettkraut Pinguicula spec. "Guatemala" meine natürliche Insekten Falle. Diese Art ist sehr robust und kann auch mit Kalk haltigen Wasser gegossen werden.