镁元素(乳清酸镁Magnesium Orotate、葡萄糖酸镁Magnesium Gluconate)对植物的主要抗病机制发表过耗时:2024-12-04 18:00 镁元素(乳清酸镁Magnesium Orotate、葡萄糖酸镁Magnesium Gluconate)参与植物体内能量转化反应、呼吸作用、DNA和RNA的合成,是多种酶的辅因子,是叶绿素分子的组成部分,能够保持核糖体结构和完整性,且与植物生长、活跃的有丝分裂、高蛋白水平、碳水化合物代谢和氧化磷酸化密切相关 ,镁元素(乳清酸镁Magnesium Orotate、葡萄糖酸镁Magnesium Gluconate)所参与的这些过程都容易受到植物病害的影响,并且与植物对病害的反应有关 。镁在光合产物的韧皮部输出中起着重要作用,缺镁限制了干物质在根和芽之间的分配,导致叶片中糖、淀粉和氨基酸的过量积累,叶绿素分解,光合电子传递链中的过还原,以及由于光合CO2固定障碍而产生的高活性氧缺镁增加了花生细菌性叶斑病的侵染和严重程度,该病的发生首先表现在缺镁的叶片上 。镁元素(乳清酸镁Magnesium Orotate、葡萄糖酸镁Magnesium Gluconate)可以特异地作用于特定的宿主-病原菌互作,如镁增加了苜蓿花叶病毒侵染菜豆过程中局部侵染病斑的形成而非全身性侵染
镁元素(乳清酸镁Magnesium Orotate、葡萄糖酸镁Magnesium Gluconate)对植物的主要抗病机制
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抗坏血酸镁Magnesium Ascorbate 、抗坏血酸锌Magnesium Ascorbate、牛磺酸镁Magnesium Taurate、氨基酸螯合锌Zinc Amino Acids Chelate 、氨基酸螯合镁Magnesium Amino Acids Chelate、乳清酸镁Magnesium Orotate、乳清酸钙Calcium Orotate、琥珀酸钙Calcium Succinate、琥珀酸镁 Magnesium Succinate 、抗坏血酸锂 Lithium Ascorbate.
The main disease resistance mechanism of magnesium (magnesium orotate, magnesium gluconate) on plants
Magnesium (magnesium orotate, magnesium gluconate) participates in energy conversion reactions, respiration, DNA and RNA synthesis in plants, is a cofactor of many enzymes, is a component of chlorophyll molecules, can maintain ribosome structure and integrity, and is closely related to plant growth, active mitosis, high protein levels, carbohydrate metabolism and oxidative phosphorylation. These processes in which magnesium (magnesium orotate, magnesium gluconate) participate are susceptible to plant diseases and are related to the plant's response to diseases. Magnesium plays an important role in the phloem output of photosynthetic products. Magnesium deficiency limits the distribution of dry matter between roots and shoots, leading to excessive accumulation of sugars, starches and amino acids in leaves, chlorophyll decomposition, over-reduction in the photosynthetic electron transport chain, and high reactive oxygen produced by photosynthetic CO2 fixation disorders. Magnesium deficiency increases the infection and severity of peanut bacterial leaf spot, which first manifests itself on magnesium-deficient leaves. Magnesium (magnesium orotate, magnesium gluconate) can specifically act on specific host-pathogen interactions, such as magnesium increases the formation of local infection spots during the infection of alfalfa mosaic virus in kidney beans rather than systemic infection
The main disease resistance mechanism of magnesium (magnesium orotate, magnesium gluconate) for plants
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Magnesium Ascorbate, Magnesium Ascorbate, Magnesium Taurate, Zinc Amino Acids Chelate, Magnesium Amino Acids Chelate, Magnesium Orotate, Calcium Orotate, Calcium Succinate, Magnesium Succinate, Lithium Ascorbate. |