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@Dunk_Junk
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I think she's done!!! She's gone very yellow during the week. Incredible frost!! Will be chopping in the next few days.
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Another week just passed. I have reduced the main flowering nutrient by 1ml, because I’ve introduced Plagron Green Sensation as an additional flowering nutrient. This thing increases your yield incredibly! If you start looking at bud formations starting this week, you will notice significant changes.
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@Raster893
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Entramos en su 4 semana de floracion y despues de una defolacion tardia por mi parte así van respondiendo :) seguimos usando la gran mayoria de los productos de biobiiz.pensando en si empezar añadir bio-heaven o no. Un saludoo :D buenos humooos!👽👽👽👽👽🙏
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Nex info in one week more or les. Encore un grand merci à marshydro pour la lumière ! 07/10: première partie de récoltes: les petites buds sont déjà sèches. Demain matin je vais les mettre dans leurs pots d'affinage. 07/23: 10 jours de curing après... C'est devenue la plante numéro 2 dans mon classement personnel juste après la blueberry cheese. Quand j'ouvre les jars une odeur intense en sort skunky yeah ;)
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hello to all, fellow cultivators! my girls are starting to show the first symptoms of pre-flowering ... they eat regularly and have formed a beautiful and solid structure. stay on track for the next updates also follow us on instagram
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8. Woche Läuft soweit gut, die Ladys sind mitten in der Bloom. Der eine Pheno hat bisschen Stress aber sonst, kann mich nicht beklagen 😊
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fast growing auto, overloaded on nutes with this one but she still produced beautiful buds
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Nothing of note really to add here. One day maybe like day 10 or so, I forgot to water on a hot day and the plant slumped. Bounced back immediately after watering. Other than that we seem to be on course. Currently fighting the urge to start using fertilizers 😒.
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Apple Pie. mmmmmm 👋Top is a clean cut, no confusion for the plant, road ahead is clear, by completely removing the main growth tip, the auxin source is eliminated. The plant permanently halts vertical growth from that main stem and immediately sends its energy and hormones to the two new, evenly spaced branches just below the cut. Fimming slightly different because a small tuft of the top growth is left behind, the auxin disruption is temporary and less severe. The plant recovers more quickly and sends its energy to multiple surrounding growth points, often creating four or more new shoots from the same spot. It will eventually regain some vertical dominance after a few weeks if left to its own devices, but with a little more LST, bending the apex to the same height as the rest of the internodes, this shatters dominance, hopefully creating around 8-9 main shoots growing at equal height once recovered and grown out. Reduced environmental intensity for now and let her focus on dealing with this new stress for a week or two. When H+ ions are added to soil, the first nutrient displaced from exchange sites is typically aluminum (Al3+), if it's present, followed by calcium (Ca2+), magnesium (Mg2+), and potassium (K+), because aluminum and these base cations have different binding strengths. The order of displacement depends on the lyotropic series, where ions with a higher positive charge and those with weaker binding strengths are displaced first. The specific order of nutrient displacement is determined by the lyotropic series, which ranks the strength with which cations are adsorbed by soil particles: Al3+: Most strongly adsorbed, so if present, it will be displaced by H+ ions, leading to increased solubility of aluminum and potential plant toxicity. Ca2+: Displaced next, as it is more strongly bound than Mg2+ or K+ but less than Al3+. Mg2+ and K+: Displaced after Ca2+. The displaced nutrients can be lost from the root zone through leaching, becoming unavailable to plants. As H+ ions increase, the proportion of acid cations (H+ and Al3+) on the exchange sites increases, while base cations (Ca2+, Mg2+, K+) decrease, resulting in a lower soil pH. The amount of photosynthesis (water splitting) directly determines the availability of H+ ions (protons) in a plant. 90% of water is for cooling of photosynthetic apparatus the other 10% is split for its H+ among others things. Carbon sugars, like glucose, do oxidize in soil through a process primarily driven by microorganisms, which break down these sugars for energy. This oxidation converts the sugars into carbon dioxide (CO2) through cellular respiration, a key part of the soil carbon cycle, though some carbon may also be incorporated into soil organic matter. The rate and extent of sugar oxidation depend on factors like oxygen availability, the presence of Fe oxides, and soil redox conditions, which can all influence the process. My understanding of why we flush. Just plain water, what does it do? Strips the medium of salts and nutrients making it empty. What does that do? Triggers nutrient recycling within the plant. What's nutrient recycling? It is a natural part of plant senescence, which can be triggered once you know the switches. A 24:1 carbon-to-nitrogen ratio will also trigger. Why won't it trigger autophagy for me? Nitrogen needs to be gone, gone, gone almost. Ammoniacal (organic) nitrogen takes 4-5 times more water to separate it from soil particles than nitrates so what happens is most people jist flush the nitrates, leave all the ammoniacal in there and this prevents autophagy initiating. Nitrogen decays differently depending on its form during the dry. Ammoniacal nitrogen will oxidize in the air, leaving no trace. But nitrates do no decay and turn volatile and smelly and remain trapped until smoked, no matter how long you cure it does not oxidize. This is why you need to trigger it and begin the denitrification process prior to harvest to get rid of all the nitrates. Otherwise, you will smoke it. Flush till autophagy begins, just make sure you add no nitrogen afterwards. Micronutrients for trichomes. Don't leave the medium empty for 2 weeks, that does nothing but reduce yield 10%ish. Trichomes are another thing. Trichomes themselves are not directly affected by flushing; rather, flushing affects the plant's nutrient uptake, which influences the development and final state of the trichomes. Trichomes are filled with antioxidants in the last weeks, which is what makes them cloudy. A lot of the processing of antioxidants requires energy and nutrients (mostly micronutrients ), so you don't want that soil empty for 2 weeks, you just want the carbon nitrogen ratio 24:1and no higher. She still wants what she needs to ripen. Processing antioxidants is energy-intensive; heat and light accelerate the rate at which THC converts to CBN. This is why you lower DLI, lower temps. By doing so, you reduce the oxidative workload caused by photosynthesis, which opens up the oxidative capacity for the production of antioxidants. THC is mostly processed at night when the plant's oxidative capacity is generally moreso "free and available" for work
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@Bncgrower
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Everything's going great here, another week is won! 💪💪💪
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@QixxGrows
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Day8: First day of the new week. I assume still pretty much focusing on roots, as the top didn't really do much today. Day9: Nothing special. But she's growing Day10: Still roots, it seems. Very little happening up top. Day11: Effort being put into growing the top leaves. They increased in size. I assume that the next node will start tomorrow - kicking off the switch into Veg. Day12: Next node already showing :D Day13: I put in a humidifier and changed the cycle of the extractor to keep more moisture in the growbox. My humidity was way too low. Day14: This time the humidity was too high. It was sitting at around 95% when the lights went on.
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@Ninjabuds
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They all needed me to do surgery to get the shells off let's hope they grow. I got these as a bonus when I bought a pack like a year ago so there kinda old and I opened the package when i got them so humidity prob git to then little over time with an open package. I'm not sure what to expect from these but lit has failed to have anything other than a1 plants so
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2nd net is up. Early bud formations are promising. holding up to the extremes pretty well, some leaves taking minor damage, but overall, she is holding up, gave her 1 night at 50F see how she would react, stressful. Not advised as it messes with her metabolism, but I want to see if it triggers any anthocyanin response. Love to see her purp up but no signs yet. Remember, For every molecule of glucose produced during photosynthesis, a plant needs to split six molecules of water. This process provides the hydrogen needed for synthesizing glucose and other organic compounds, while oxygen is released as a byproduct. Homework. If Rubisco activity is impaired and it cannot properly function or regenerate its substrate, the plant's leaves are likely to turn a pale green or lime green, a condition known as chlorosis. Essentially, Rubisco activity is highly regulated and susceptible to various environmental and metabolic factors that can cause it to become inhibited, leading to an apparent failure in RuBP regeneration due to a lack of consumption. 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. RuBisCO is a very large enzyme that constitutes a significant proportion (up to 50%) of leaf soluble protein and requires large investments in nitrogen. Insufficient nitrogen supply limits the plant's ability to produce adequate amounts of RuBisCO, thereby limiting the overall capacity for photosynthesis and carbon fixation. Maintaining the optimal, slightly alkaline pH is crucial for the proper function and regeneration of Rubisco. Deviations in either direction (too high or too low) disrupt the enzyme's structure, activation state, and interaction with its substrates, leading to decreased activity and impaired RuBP regeneration. (Lime/yellowing) 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. For those high-intensity workouts when 1 meal a day is just not enough! 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 plant was getting a little limey yellow in the centre. Shortly thereafter, she was back in business, green mostly regenerated. 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. Confidence is evidence... nothing more. You are confident because you have driven 10,000 times, you are confident because you have spoken 10,000 times. People think confidence is a feeling, but it's not. If you want more confidence, then you need to create evidence, take more shots, collect more data, build more experiences, take more risks; fail, confidence doesn't come first; it is the reward you get for doing the work. no one else wants to do.
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I’ll be most definitely harvesting these next week! I will continue with water from now until they are ripe and ready! They are absolutely smelling of some nuttiness and dank fuel ⛽️ like stardawg smells too! The buds are starting to swell too so thinking next 7 days I’ll be ready! Next upload will be harvest hope you like buddies! I’ll be hang drying this time! As I’ll have space and a tent to do it in as before I didn’t and used the brown bag method! But I can maintain between 14c - 18c with a humidity of 42 percent! So I’ll hang dry this time! Any suggestions?? Let me know! I’ll be putting 2 fans on them for air circulation and a air vent only sucking out as it will draw air in on its own and keep the humidity lower in the tent while drying!
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@Growbody
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Hallo und herzlich willkommen zu meinem Growbericht Outdoor 2025 mit den Sorten Power Flower Feminized, Royal Medic Feminized und Special Kush #1 Feminized, alle 3 von Royal Queen Seeds. Es ist das erste Mal, das ich Töpfe für den Outdoor grow verwende, bisher waren alle Gorilla grows und direkt in die Erde gepflanzt. Die URL der Power Flower Feminized: https://www.royalqueenseeds.de/feminisierte-hanfsamen/120-power-flower.html Die URL der Royal Medic Feminized: https://www.royalqueenseeds.de/cbd-samen/148-royal-medic.html Die URL der Special Kush #1 Feminized: https://www.royalqueenseeds.de/feminisierte-hanfsamen/138-special-kush-1.html Die Planung für den Grow ist, die Samen in easyplug Anzuchtwürfeln keimen zu lassen und danach in 0,6L und 2,2L Plastiktöpfen, dann letztlich in die neuen komplett doppellagigen ROOTIES 15 Liter Wide Version Stofftöpfe umzutopfen. Sobald die Witterung es zuläßt, sollen die Pflanzen an die frische Luft. Es ist schon eine Weile her, das der Grow losging, die Bilder sind jetzt aktuell. Tag 162: Wieder ein Hitzetag, kaum Wind. Gewitter sind angekündigt, bis jetzt gehen die im Schwarzwald und den Vogesen runter, der Rheingraben bleibt bisher trocken. Die Mädels bekommen weiterhin 3x am Tag Ihren Cocktail. Kein weiteres Höhenwachstum. Wenn's dir gefallen hat, schau wieder vorbei ✌️😎
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Ab den 13:11 ab zum trocknen. Da freue ich mich
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@wolfvb
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Week 6: The "Vase" Vision Taking Shape 🏺🥦 The Update: We are moving into Week 6 and the Sticky Broccoli is really starting to find her rhythm. After the heavy LST and the 90-degree bend last week, now I have tide her up to shape her more in the right direction. she hasn't skipped a beat. The recovery time was almost zero, this strain is resilient! 💪 The Experiment (Root Reveal): The most exciting part of this Cup run is what's happening below the soil. I’m keeping the down "nursery" pot moist to encourage those roots to dive deep into the vase underneath. The goal is to get them thick and woody before the big "reveal." It requires a lot of patience not to peek, but I trust the process! Plant Health: Structure: The canopy is evening out nicely thanks to the LST clips. Signs of Flower: Keeping a close eye on the nodes. I'm expecting to see the first pistils popping any day now as she transitions. Guardian: The Kewpie doll is still on duty, ensuring no bad vibes enter the tent. 👶 Next Steps: Just steady watering (one-handed style! 🤕) and letting her stretch into her final shape.
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@MxGrow
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Todo muy bien nacieron fuertes, a los 3 días de nacidas las trasplante y no hubo ningún problema. La Gorilla Ghost tardo 10 días en germinar bajo las mismas condiciones ambientales y riegos pero nació fuerte y grande. De 4 semillas que sembré las 4 nacieron 👍🏻
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