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30/07/2021 (F DAY 63) Comienza el corte de las Sweet cheese que ya están sumamente listas y apochocladas! El resto continua unos dias mas!
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@FlonGrow
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Frohe Festtage
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@DniceWJ
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LSD journey September 15, 2021 day 3 first day of vegetation temperature 27c light schedule is 18 hours of light. I moved my grow light up 16 inches from the pot. September 17, 2021 Day 3 of vegetation Temperature 28.5 I took the plant pot out of the clay pebbles and put it on the top so that it can still get water but I’m not over watering it. 🙏
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@MrCOCO
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Hi everyone🍃🍃🍃Everything is going well...🍃🍃🍃 The girls are growing very fast which makes me happy...🍃🍃🍃 I defoliated in 14 days of flowering and removed the small flowers that wouldn't do anything anyway....🍃🍃🍃 Happy growing🍃🍃🍃
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@deseed_uy
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A esta gelato la coseche y colgue con hojas para hacerle manicura fina en seco asi protegemos los tricomas y terpenos durante el secado. Llegamos al fin a pesar de la lucha contra las plagas, hasta despues de la cosecha las arañitas estuvieron ahi, envolvieron todos lo tallos hasta q murieron las malditas. Pero todo salio bastante bien igual, cosechamos sin hongo y con bastante lavado
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Well, what to say other than the pictures can already show? I wish the GZkitz buds were just as large as the Critical ones :D Maybe they will surprise me and flower one week longer then their sisters :P :D For some reason I get an error when I try to upload the time lapse video, hope it workes out in the end!
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Amazing and very powerful amnesia fragrance guys! I fucking love this aroma, very good classic amnesia version this amnesia Fast by seedsman. Hope they get fat and as dense as possible to be able to enjoy her for a long time, very recomended seed.
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My homework. Rubisco regeneration is intrinsically linked to nitrogen supply because Rubisco is a major sink for nitrogen in plants, typically accounting for 15% to over 25% of total leaf nitrogen. The regeneration phase itself consumes nitrogen through the synthesis of the Rubisco enzyme and associated proteins (like Rubisco activase), and overall nitrogen status heavily influences the efficiency of RuBP regeneration.Structural Component: Nitrogen is an essential building block for all proteins, and the sheer abundance of the Rubisco protein makes it the single largest storage of nitrogen in the leaf. Synthesis and Activity: Adequate nitrogen supply is crucial for the synthesis and maintenance of sufficient Rubisco enzyme and Rubisco activase (Rca), the regulatory protein responsible for maintaining Rubisco's active state. Nitrogen deficiency leads to a decrease in the content and activity of both Rubisco and Rca, which in turn limits the maximum carboxylation rate, Vmax, and the rate of RuBP regeneration Jmax, thus reducing overall photosynthetic capacity. Nitrogen Storage and Remobilization: Rubisco can act as a temporary nitrogen storage protein, which is degraded to remobilize nitrogen to other growing parts of the plant, especially under conditions of nitrogen deficiency or senescence. Nitrogen Use Efficiency (NUE): The allocation of nitrogen to Rubisco is a key determinant of a plant's photosynthetic nitrogen use efficiency (PNUE). In high-nitrogen conditions, plants may accumulate a surplus of Rubisco, which may not be fully activated, leading to a lower PNUE. Optimizing the amount and activity of Rubisco relative to nitrogen availability is a target for improving crop NUE. Photorespiration and Nitrogen Metabolism: Nitrogen metabolism is also linked to the photorespiration pathway (which competes with carboxylation at the Rubisco active site), particularly in the reassimilation of ammonia released during the process. To increase RuBisCO regeneration, which refers to the process of forming the CO2 acceptor molecule Ribulose-1,5-bisphosphate (RuBP) during photosynthesis, the primary methods involve optimizing the levels and activity of Rubisco activase (Rca) and enhancing the performance of other Calvin-Benson-Bassham (CBB) cycle enzymes. Biochemical and Environmental Approaches: Optimize Rubisco Activase (Rca) activity: Rca is a crucial chaperone protein that removes inhibitory sugar phosphates, such as CA1P (2-carboxy-D-arabinitol 1-phosphate), from the Rubisco active site, thus maintaining its catalytic competence. •Ensure optimal light conditions: Rca is light-activated via the chloroplast's redox status. Adequate light intensity ensures Rca can effectively maintain Rubisco in its active, carbamylated state. •Maintain optimal temperature: Rca is highly temperature-sensitive and can become unstable at moderately high temperatures (e.g., above 35°C/95F° in many C3 plants), which decreases its ability to activate Rubisco. Maintaining temperatures within the optimal range for a specific plant species is important. •Optimize Mg2+ concentration: Mg2+ is a key cofactor for both Rubisco carbamylation and Rca activity. In the light, Mg2+ concentration in the chloroplast stroma increases, promoting activation. •Manage ATP/ADP ratio: Rca activity depends on ATP hydrolysis and is inhibited by ADP. Conditions that maintain a high ATP/ADP ratio in the chloroplast stroma favor Rca activity. Enhance Calvin-Benson-Bassham (CBB) cycle enzyme activity: The overall rate of RuBP regeneration can be limited by other enzymes in the cycle. •Increase SBPase activity: Sedoheptulose-1,7-bisphosphatase (SBPase) is a key regulatory enzyme in the regeneration pathway, and increasing its activity can enhance RuBP regeneration and overall photosynthesis. •Optimize other enzymes: Overexpression of other CBB cycle enzymes such as fructose-1,6-bisphosphate aldolase (FBA) and triose phosphate isomerase (TPI) can also help to balance the metabolic flux and improve RuBP regeneration capacity. Magnesium ions, Mg2+, are specifically required for Rubisco activation because the cation plays a critical structural and chemical role in forming the active site: A specific lysine residue in the active site must be carbamylated by a CO2 molecule to activate the enzyme. The resulting negatively charged carbamyl group then facilitates the binding of the positively charged Mg2+ion. While other divalent metal ions like Mn2+ can bind to Rubisco, they alter the enzyme's substrate specificity and lead to dramatically lower activity or a higher rate of the non-productive oxygenation reaction compared to Mg2+, making them biologically unfavorable in the context of efficient carbon fixation. The concentration of Mg2+ in the chloroplast stroma naturally increases in the light due to ion potential balancing during ATP synthesis, providing a physiological mechanism to ensure the enzyme is activated when photosynthesis is possible. At the center of the porphyrin ring, nestled within its nitrogen atoms, is a Magnesium ion (Mg2+). This magnesium ion is crucial for the function of chlorophyll, and without it, the pigment cannot effectively capture and transfer light energy. Mg acts as a cofactor: Mg2+ binds to Rubisco after an activator CO2 molecule, forming a catalytically competent complex (Enzyme-CO2-Mg2+). High light + CO2) increases demand: Under high light (60 DLI is a very high intensity, potentially saturating) and high CO2, the plant's capacity for photosynthesis is high, and thus the demand for activated Rubisco and the necessary Mg2+ cofactor increases. Mg deficiency becomes limiting: If Mg2+ is deficient under these conditions, the higher levels of Rubisco and Rubisco activase produced cannot be fully activated, leading to lower photosynthetic rates and potential photo-oxidative damage. Optimal range: Studies show that adequate Mg2+ application can enhance Rubisco activation and stabilize net photosynthetic rates under stress conditions, but the required concentration is specific to the experimental setup. Monitoring is key: The most effective approach in a controlled environment is to monitor the plant's physiological responses e.g., leaf Mg2+ concentration, photosynthetic rate, Rubisco activation state, and adjust the nutrient solution/fertilizer to maintain adequate levels, rather than supplementing a fixed "extra" amount. In practice, this means ensuring that Mg2+ is not a limiting factor in the plant's standard nutrient solution when pushing the limits with high light and CO2. Applying Mg2+ through foliar spray is beneficial to Rubisco regeneration, particularly in alleviating the negative effects of magnesium (Mg) deficiency and high-temperature stress (HTS). While Mg can be leached from soil, within the plant it is considered a mobile nutrient, particularly in the phloem. Foliar-applied Mg is quickly absorbed by the leaves and can be translocate to other plant parts, including new growth and sink organs. Foliar application of: NATURES VERY OWN MgSO4 @ 15.0g L-1 in a spray bottle. Foliar sprays are often recommended as a rapid rescue measure for existing deficiencies or as a supplement during critical growth stages, when demand for Mg is high. Application in the early morning or late evening can improve absorption and prevent leaf burn. The starting point [of creativity] is curiosity: pondering why the default exists in the first place. We’re driven to question defaults when we experience vuja de, the opposite of déjà vu. Déjà vu occurs when we encounter something new, but it feels as if we’ve seen it before. Vuja de is the reverse—we face something familiar, but we see it with a fresh perspective that enables us to gain new insights into old problems.
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on week 6-7 nute recipe since w5, 950w main and undercanopy lights + 192w of lil sidelights. smelling nice now
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21/06/2021 (F DAY 24) La flora viene muy bien! a seguir progresando. El sistema es totalmente autónomo y solo preparo dos riegos por semanas sin medir ph ni nada extraño! Solo bioestimulantes, lixiviado y buena comida en sustrato.
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@PeterSage
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wonderfull colours and smell, plant is looking fine, i see another 2/3 weeks from now, for a full development of the buds. heavy and frequent rain occurring, didn't have to water so much, hope it get better from here to the cut. i am gonna decrease on the nutrients, to make them disappear in 10-15 days and a have a full week on just pure water. the quality of the smell is incredible, very sugar-candy like, not so citric.
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So these Cream Cookies were really easy to grow! Almost too easy that I neglected them for a week or so and then found two of them covered in Aphids. We tried everything we could to save #1 & #2 but It was a battle that we eventual lost. They are in a bag in the freezer getting ready to be bubble hash. #3 to my awe and surprise has survived through thick and thin. Good and Bad. And will be my only smokeable "flower" from this run. That said I will run these again but inside in a controlled environment as it seems my FastBud Girls were prone to the aphids and caterpillars. Reguardless I'm super impressed with the structure and just look of the plant overall. Can't wait to smoke #3!!! The frozen bag of hash weighs in at 203g and includes the mutant #3 smoothie auto from my other diary which also was overrun with aphids. *Will update with dry numbers*
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My own blended recycled living soil water passion love & respect only. ...... added soil biology includes Wallace wonder organics myco fungi .. extreme gardening AZOS ... and synergro ... along with my own farmed castings also inoculated
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Start week 6! Looking nice and starting to fatten out! Can’t wait for harvest time! PATIENCE! Very happy so far with how they are all doing!
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Ninth Week / 04.07.24 - 10.07.24 Week 9 was smooth with no major issues—everything’s going great! 🌿 Whenever the sun was shining, I took the opportunity to put the plants out on the balcony for some direct sunlight. ☀️ Kept up with the 18-hour light schedule indoors and continued watering every three days. 🌱💧 The plants are looking healthy and vibrant, making steady progress in their growth and development. Loving this journey! 🚀🌼
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MATARO BLUE by KANNABIA Week #18 overall Week #4 Flower She's doing great this week looking good and her buds are starting to dense up she's getting nice trichome coverage as well. Stay Growing!! Kannabia.com MATARO BLUE
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