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For most crops, a slightly acidic soil pH between 6.0 and 6.8 is ideal because it optimizes nutrient availability. When soil pH rises above 7.0 (alkaline), the concentration of hydrogen ions H+ drops significantly, and they are replaced by calcium, magnesium, or sodium ions on the clay colloid exchange sites. To naturally lower alkaline soil pH, you can add organic matter (carbon-rich materials), which produces weak organic acids as it decomposes. Maintaining this slightly acidic range stimulates a highly active, diverse microbial community; these microbes decompose organic matter and release carbon dioxide CO2, which plants absorb through their roots and leaves to boost photosynthesis and sugar production. Furthermore, the added organic carbon acts like a sponge, drastically improving the soil's water-holding capacity. While soil biological activity does involve cellular electron transport, electrical conductivity (EC) in soil is actually a measure of dissolved mineral salts, not a voltage carried by individual microbes. Soil microorganisms secrete organic acids and chelate metallic and non-metallic minerals, transforming locked-up inorganic compounds into bioavailable organic complexes. Unlike harsh synthetic fertilizers that can dehydrate soil life in high concentrations, these naturally chelated nutrients safely nourish the plant, creating a thriving, self-sustaining ecosystem where plants can efficiently synthesize their own food. Metal-based: Could include elements like iron, manganese, copper, or zinc, which are essential nutrients for plants but can exist in forms not readily accessible. Non-metal-based: Examples like calcium carbonate, phosphate, or sulfur are also important for plant growth and potentially serve as building blocks for the organic salt. Chelation in a plant medium is a chemical process where a chelating agent, a negatively charged organic compound, binds to positively charged metal ions, like iron, zinc, and manganese. This forms a stable, soluble complex that protects the micronutrient from becoming unavailable to the plant in the soil or solution. The chelate complex is then more easily absorbed by the plant's roots, preventing nutrient deficiency, improving nutrient uptake, and enhancing plant growth. Chelation is similar to how microorganisms create organic salts, as both involve using organic molecules to bind with metal ions, but chelation specifically forms ring-like structures, or chelates, while the "organic salts" of microorganisms primarily refer to metal-complexed low molecular weight organic acids like gluconic acid. Microorganisms use this process to solubilize soil phosphates by chelating cations such as iron (Fe) and calcium (Ca), increasing their availability. Added sugars stimulate soil microbial activity, but directly applying sugar, especially in viscous form, can be tricky to dilute. Adding to the soil is generally not a beneficial practice for the plant itself and is not a substitute for fertilizer. While beneficial microbes can be encouraged by the sugar, harmful ones may also be stimulated, and the added sugar is a poor source of essential plant nutrients. Sugar in soil acts as a food source for microbes, but its effects on plants vary significantly with the sugar's form and concentration: simple sugars like glucose can quickly boost microbial activity and nutrient release. But scavenge A LOT of oxygen in the process, precious oxygen. Overly high concentrations of any sugar can attract pests, cause root rot by disrupting osmotic balance, and lead to detrimental fungal growth. If you are one who likes warm tropical high rh, dead already. Beneficial, absolutely, but only to those who don't run out of oxygen. Blackstrap is mostly glucose, iirc regular molasses is mostly sucrose. Sugars, especially sucrose, act as signaling molecules that interact with plant hormones and regulate gene expression, which are critical for triggering the floral transition. When sucrose is added to the growth medium significantly influences its effect on floral transition. Probably wouldn't bother with blackstrap given its higher glucose content. Microbes in the soil consume the sugar and, in the process, draw nitrogen from the soil, which is the same nutrient the plant needs. Glucose is not an oxygen scavenger itself, but it acts as a substrate for the glucose oxidase (GOx) enzyme, effectively removing oxygen from a system. Regular molasses (powdered if you can), as soon as she flips to flower or a week before, the wrong form of sugar can delay flower, or worse. Wrong quantity, not great either. The timing of sucrose application is crucial. It was more complicated than I gave it credit for, that's for sure. When a medium's carbon-to-nitrogen (C:N) ratio reaches 24:1, it signifies an optimal balance for soil microbes to thrive, leading to efficient decomposition and nutrient cycling. At this ratio, soil microorganisms have enough nitrogen for their metabolic needs, allowing them to break down organic matter and release vital nutrients like phosphorus and zinc for plants. Exceeding this ratio results in slower decomposition and nitrogen immobilization, while a ratio below 24:1 leads to faster breakdown and excess nitrogen availability. Carbon and nitrogen are two elements in soils and are required by most biology for energy. Carbon and nitrogen occur in the soil as both organic and inorganic forms. The inorganic carbon in the soil has minimal effect on soil biochemical activity, whereas the organic forms of carbon are essential for biological activity. Inorganic carbon in the soil is primarily present as carbonates, whereas organic carbon is present in many forms, including live and dead plant materials and microorganisms; some are more labile and therefore can be easily decomposed, such as sugars, amino acids, and root exudates, while others are more recalcitrant, such as lignin, humin, and humic acids. Soil nitrogen is mostly present in organic forms (usually more than 95 % of the total soil nitrogen), but also in inorganic forms, such as nitrate and ammonium. Soil biology prefers a certain ratio of carbon to nitrogen (C:N). Amino acids make up proteins and are one of the nitrogen-containing compounds in the soil that are essential for biological energy. The C:N ratio of soil microbes is about 10:1, whereas the preferred C:N ratio of their food is 24:1 (USDA Natural Resource Conservation Service 2011). Soil bacteria (3-10:1 C:N ratio) generally have a lower C:N ratio than soil fungi (4-18:1 C:N ratio) (Hoorman & Islam 2010; Zhang and Elser 2017). It is also important to mention that the ratio of carbon to other nutrients, such as sulfur (S) and phosphorous (P) also are relevant to determine net mineralization/immobilization. For example, plant material with C:S ratio smaller than 200:1 will promote mineralization of sulfate, while C:S ratio higher than 400:1 will promote immobilization (Scherer 2001). In soil science and microbiology, the C:S ratio helps determine whether sulfur will be released (mineralized) or tied up (immobilized) by microorganisms. A carbon-to-sulfur (C:S) ratio smaller than 200:1 promotes the mineralization of sulfate, when the C:S ratio is low, it indicates that the organic matter decomposing in the soil is rich in sulfur relative to carbon. Microorganisms require both carbon and sulfur for their metabolic processes. With an excess of sulfur, microbes take what they need and release the surplus sulfur into the soil as plant-available sulfate A carbon-to-sulfur (C:S) ratio higher than 400:1 will promote the immobilization of sulfur from the soil. This occurs because when high-carbon, low-sulfur materials (like sawdust) are added to soil, microbes consume the carbon and pull sulfur from the soil to meet their nutritional needs, temporarily making it unavailable to plants. 200:1 C:S 400:1: In this range, both mineralization and immobilization can occur simultaneously, making the net availability of sulfur less predictable. This dynamic is similar to how the carbon-to-nitrogen (C:N) ratio regulates the availability of nitrogen in soil. Just as microbes need a certain amount of nitrogen to process carbon, they also require a balanced amount of sulfur. Both mineralization and immobilization are driven by the metabolic needs of the soil's microbial population. Sulfur is crucial for protein synthesis. A balanced ratio is particularly important in relation to nitrogen (N), as plants need adequate sulfur to efficiently use nitrogen. A severely imbalanced C:S ratio can hinder the efficient use of nitrogen, as seen in trials where adding nitrogen without balancing sulfur levels actually lowered crop yields. Maintaining a balanced carbon-to-sulfur (C:S) ratio is highly beneficial for plant growth, but this happens indirectly by regulating soil microbial activity. Unlike the C:N ratio, which is widely discussed for its direct effect on nutrient availability, the C:S ratio determines whether sulfur in the soil's organic matter is released (mineralized) or temporarily locked up (immobilized). Glucose will hinder oxygenation more than sucrose in a solution because glucose is consumed faster and has a higher oxygen demand, leading to a more rapid decrease in oxygen levels. When cells respire, they use oxygen to break down glucose, and this process requires more oxygen for glucose than for sucrose because sucrose must first be broken down into glucose and fructose before it can be metabolized. In a growth medium, glucose is a more immediate and universal signaling molecule for unicellular and multicellular organisms because it is directly used for energy and triggers a rapid gene expression response. In contrast, sucrose primarily acts as a signaling molecule in plants to regulate specific developmental processes by being transported or broken down, which can be a more complex and slower signaling process. Critical stuff.
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@PETEROG
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Hey guys everything is going great with these ladies all 6 germinated and popped up in 3 days after planting 1 of the six shooters is a lot smaller than its sisters so I've order LEMON PIE from FASTBUDS should be here tomorrow to take its place and I'm going to move the six shooter outside so if you would like to see its journey comment and like bellow ⤵️ The only thing I wish I did differently would of been starting these girls under a cfl or a cheap led to stop stretching but lesson learned if anyone has any question's please comment and thank-you all for your support ✌️
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First grow. Ph 6.3 /temp 23 /RH%60 /water ppm 210 /Co2 500 ppm/18-6 light/ par value 600/ techna flora recipe for success nutrient cycle. Kryptonite organic worm casting soil. No training yet. 3.5 litres of water every 3 days . First mistake and note to growers and self when using spray bottle to wet surface make sure not rip off any leaves as your pulling the trigger... on the do Sweet dos plant. oh well she will live.
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30/05/2021 sono emozionato ho fatto cambio ora non ve l ora di vedere i fiori....credo che avrò un pessimo raccolto farò pochi grammi...piante irregolari di altezza dove prende piu luce e dove prende meno purtroppo sbagliando si impara spero solo di fare almeno 200g cosi da poter fumare per due mesi
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@MG2009
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05/06/2021 All is progressing nicely and I want to see how lowering blue spectrum to only 1/4 on just enough for fan to kick on, and leave red at 100% Last picture is the 2 cuttings looking healthy.
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@MomNPopOp
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After the shock of all gelatos showing male signs, we got our shit together and removed all balls !! Zkittlez is getting out of tent for her black period tomorrow, giving our bigger gelato more space !! We still have one week and a half before Zki2 leave the tent and let the girls ride !! The final 4-5 weeks will go mad !! Need to clean our hps bulb and cooltube.. Tangie will go to their space, cuz she didnt show balls, so less maintance.. cheers and dont give up on hermies.. maybe it was just a bad day !! Temp dropped with a polar mass coming to our town, and water was freezing !! Light leaks were considered too, overwatering/feeding were disconsidered LST and rearrengement will be done as soon as Zkittlez mature..
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@mrekansh
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So finally some wind breaker some support and dozed them with citygreen's nutes and greens 1ml each in 1ltr And ill be out for a week or two so hope it grows good by then!
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@NOLOGIK
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hello guys, we really got to the limit I think! after 89 days, the first month of March was very cold and April not least !, I still managed to have a beautiful plant !!! and rich in trichomes, the smell is reminiscent of pine resin! and I can't wait to try. Sunday 9/6 cutting ... while in the indoor I'm growing the non-original seed born from a top, now I've passed it after 89 days of vegetative, in bloom it was full of primordial flowers! I think it will be a success !!!!, then I cut some branches I made 4 cuttings 1 of these is dead, the others continue on their way, for reasons of space they are already receiving even 12 hours of light .. .
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This week was really great except for some weather problem, cold is came a little bit earlier and i m still fixing something in the grow box. Roots are really large and strenght. Flowering started exactly in the 28 day. Let's go!
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Hello everyone, The growers nightmare occurred the small amnesia haze plant of expert seeds hermied on me, i wanted to take some pictures for the diary when i noticed the pollen sacks this is clearly my mistake as they were easy to spot if i just opened the tent door especially when i know i stressed her big time by defoliating her in the previous weeks. I removed about 20 buds and trimmed her, the other 2 plants didn't produce any bananas and can't spot any seeds but time will tell. Today i started with the heavy feed that raised to 910ppm i switched to canna pk13/14 and put 150ml in the 50 liter reservoir. I hope to have better news next week. Thanks for stopping by and have a nice week.
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absolute beast and definitely my favorite strain of this run so far. i love the internodal spacing on this one, its a very sturdy plant with strong branching.
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Hey friends of good grow😊✌️ This week was relaxed the AK OG looks good . they Smell and look good💚 This week there was again Enhancer from Ghsc and the ladies love it 😊👌 Thanks for your time and see you soon 💚 Stay high and grow up✌️
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Se acercan las 2 ultimas semanas. Esta semana y luego se viene flawless. Tratando de bajar de a poco la EC y bajando la humedad para evitar problemas fungicos. Un olor fuerte a frutas tropicales, y mucha resina.
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@OGOZHigh
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Kleines Update : 27.05.24 Lemon Cherry Cookies und Papaya Cookies getoppt 28.05.24 Guava Auto angefangen mit LST Weitere Updates folgen
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Hi Growmies I hope your week had been as productive and fun as mine and that your flowering is progressing. It has been a very easy week to manage their needs. Nicely set and with lots of light per plant , we have a lot of clusters of pistils throughout their whole structure. Keeping the humidity lower now is helping to reduce the risk of bud rot with so much vegetation and fresh pistils to feed it. It will also help raise the oils needd within the girls to keep them supple amd attractive to those buzzy friends they hope to attract. The smell of sweet pineapple is so strong in the room now and their stickiness from resin is really starting to show itself now. It is evident that the plagron products have had a substantial effector the progress now with so.mamy sets of flowers lower in the canopy too. Seeing other grows of the Biscotti not using the products , there is a difference in node lengths between flowers without doubt. The flowering plants are nice and stocky compared to most of my previous grows sonit has been easier to keep them well within the lights sweet spot With just 2 weeks left that will hopefully be the adding weight and second flowering sets kicking into play too , a good yield could be on the cards. I do seem to have 2 phenotypes off the Biscotti running so it will be interesting to see how they differ at the end for yield etc.. I have added a small greenhouse heater to bring the temp up a little and help with the humidity control too as we are experiencing a very cold snap again in good old Blighty. All in all a great week with a more to follow hopefully. 😀 Be lucky and stay safe among the chaos unfolding.......
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I'm impressed with this C4 Auto, from fastbuds this is one of two plants I grew. This plant is a real indoor plant she grows lovely. The other plant is an outdoor plant it's pretty too don't get me wrong but where i thought the outdoors would produce a bigger plant i got the opposite of that, I got a Mutated plant, nice colored bud on here but she continues to mutate even in flowering stage my indoor plant is twice her height and size but love both my C4 Auto from fastbuds. Even if they broke my heart by changing payment policy, I'll never be able to get seeds from fastbuds again so I decided to spray my runt on the outdoors with tiresias mist feminized seed spray..... hopefully I get some pollen and able to pollinate my indoor C4 Auto..