微量元素在作物生产中的作用研究进展

Israel Zewide, Abde Sherefu
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引用次数: 10

摘要

微量元素对植物生长、产量和品质的影响与大量元素同样重要。植物的需要量是微量的。硼、铁、铜、锌、锰、镁、钼是不同作物所需的主要微量元素,数量不同。微量元素的需求部分可以从土壤或通过化肥或其他来源得到满足。各种身体和代谢功能都受这些矿物质营养物质的支配。硼在花粉萌发中尤为重要,铜在光合作用中起主要作用,提高果实糖含量,锰促进叶绿素合成和磷利用率,铁作为氧载体促进叶绿素形成,锌辅助植物生长激素和酶系统。微量营养素的应用提高了农产品的产量和质量,因此,用富含植物的饲料保护了人类和动物的健康。每一种必需元素只有在植物营养中正确发挥其作用时,其他必需元素才能以均衡的比例为植物提供。因此,在植物中,锰在氧化和还原过程中起着重要作用,在光合作用中作为电子传递。锰缺乏对非结构性碳水化合物,尤其是根类碳水化合物的影响非常严重。缺锰导致作物质量和数量下降,这是由于灌浆期间花粉肥力低和碳水化合物含量低所致。在木质部途径中,锌被传递成二价形式或与有机酸结合。在韧皮部液中,锌与低分子量有机酸形成络合物,并增加其浓度。锌缺乏可以在侵蚀、钙质和风化酸性土壤中看到。在钙质土壤中,缺锌常伴有缺铁。土壤中铁是地球上第四丰富的元素,但由于在世界上许多地方,特别是在干旱的碱性土壤中,含铁矿物的溶解度低,土壤中铁的含量很低或不能满足植物和微生物的需要。
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Review Paper on Effect of Micronutrients for Crop Production
Micronutrients are essentially as important as macronutrients to have better growth, yield and quality in plants. There requirement by plants is in trace amounts. Boron, iron, copper, zinc, manganese, magnesium and molybdenum constitute main micronutrients required by different crops in variable quantities. The requirement of micronutrients is partly met from the soil or through chemical fertilizer or through other sources. Various physical and metabolic functions are governed by these mineral nutrients. Boron is particularly essential in pollen germination, copper plays major role in photosynthesis and increases sugar content in fruits, chlorophyll synthesis and phosphorus availability is enhanced by manganese, iron acts as an oxygen carrier and promotes chlorophyll formation, while, zinc aids plant growth hormones and enzyme system. Yield and quality of agricultural products increased with micronutrients application, therefore human and animal health is protected with feed of enrichment plant materials. Each essential element only when can perform its role in plant nutrition properly that other necessary elements are available in balanced ratios for plant. therefore in the plant manganese plays an important role on oxidation and reduction processes, as electron transport in photosynthesis. Manganese deficiency has very serious effects on non-structural carbohydrates, and roots carbohydrates especially. Crops quality and quantity decreased due to manganese deficiency, and this is due to low fertility of pollen and low in carbohydrates during grain filling. In the xylem routes zinc is transmitted to divalent form or with organic acids bond. In the phloem sap zinc makes up complex with organic acids with low molecular weight, and increases its concentration. Zinc deficiency can be seen in eroded, calcareous and weathering acidic soils. Zinc deficiency is often accompanied with iron deficiency in calcareous soils. Iron in the soil is the fourth abundant element on earth, but its amount was low or not available for the plants and microorganisms needs, due to low solubility of minerals containing iron in many places the world, especially in arid region with alkaline soils.
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