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镁元素(精氨酸镁Magnesium Arginate、苏糖酸镁Magnesium Threonate)对植物生理生化特性的影响

发过期限:2025-01-22 19:21

镁(精氨酸镁Magnesium Arginate、苏糖酸镁Magnesium Threonate)作为植物叶绿体重要的组成部分,能够维持正常的叶绿体结构,根据前人研究,在植物体内有15-30%的镁与叶绿素结合,保证光合作用的顺利进行 。同时也是多种酶的活化剂,参与调节植物体内的光合作用、呼吸作用、三羧酸循环等相关酶的活性 。并且果实产量与苹果叶片中镁的含量存在着显著正相关关系,适当提高叶片中镁含量(精氨酸镁Magnesium Arginate、苏糖酸镁Magnesium Threonate)能够起到增产的效果 。植物细胞内镁主要是以易扩散Mg2+的形式存在于液泡中,维持细胞渗透压和离子平衡从而调节植物生长代谢 。在镁素供应不足时,黄瓜幼苗叶片中光和色素含量显著下降,同时也会显著降低叶片净光合速率、气孔导度和蒸腾速率 。葡萄缺镁时会导致叶片也露宿结构发生改变,降低光合作用效率,影响光合作用产物的积累,导致果实品质降低 。但是在过量镁素供应条件下,植物的生长量、叶绿素含量、净光合速率都出现不BB贝博艾弗森官方网站度的降低 。在苹果果树上,合理施用镁肥(精氨酸镁Magnesium Arginate、苏糖酸镁Magnesium Threonate)能够促进树体生长,提高叶片中叶绿素含量、产量,提升果实品质 。

镁元素(精氨酸镁Magnesium Arginate、苏糖酸镁Magnesium Threonate)对植物生理生化特性的影响

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抗坏血酸锰Manganese Ascorbate、抗坏血酸亚铁Ferrous Ascorbate、赖氨酸甘氨酸镁Magnesium Lysinate Glycinate、甘氨酸谷氨酰胺镁Magnesium Glycinate Glutamine、檸檬酸苹果7酸镁Magnesium Citrate Malate、檸檬酸锶Strontium Citrate、青金桔酸锰Manganese Citrate、檸檬酸铜Copper Citrate、天门冬氨酸锂Lithium Aspartate、牛磺酸硒Selenium Taurate.


Effects of magnesium (Magnesium Arginate, Magnesium Threonate) on plant physiological and biochemical characteristics

Magnesium (Magnesium Arginate, Magnesium Threonate), as an important component of plant chloroplasts, can maintain normal chloroplast structure. According to previous studies, 15-30% of magnesium in plants is bound to chlorophyll. Ensure the smooth progress of photosynthesis. It is also an activator of various enzymes and participates in regulating the activities of photosynthesis, respiration, tricarboxylic acid cycle and other related enzymes in plants. Moreover, there is a significant positive correlation between fruit yield and magnesium content in apple leaves. Appropriately increasing the magnesium content in leaves (Magnesium Arginate, Magnesium Threonate) can increase yield. Magnesium in plant cells mainly exists in the vacuole in the form of easily diffusible Mg2+, maintaining cell osmotic pressure and ion balance to regulate plant growth and metabolism. When magnesium supply is insufficient, the light and pigment content in cucumber seedling leaves significantly decreases, and the net photosynthetic rate, stomatal conductance, and transpiration rate of the leaves will also be significantly reduced (Yang Quanyong et al. 2015). Magnesium deficiency in grapes will cause changes in the leaf structure, reduce photosynthetic efficiency, affect the accumulation of photosynthetic products, and lead to reduced fruit quality. However, under excessive magnesium supply conditions, plant growth, chlorophyll content, and net photosynthetic rate all decreased to varying degrees. On apple trees, reasonable application of magnesium fertilizers (Magnesium Arginate, Magnesium Threonate) can promote tree growth, increase chlorophyll content and yield in leaves, and improve fruit quality.

Effects of magnesium (Magnesium Arginate, Magnesium Threonate) on plant physiological and biochemical characteristics

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Manganese Ascorbate, Ferrous Ascorbate, Magnesium Lysinate Glycinate, Magnesium Glycinate Glutamine, Magnesium Citrate Malate, Strontium Citrate, Manganese Citrate, Copper Citrate, Lithium Aspartate, Selenium Taurate.