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Response of lentil (Lens culinaris Medikus) to phosphorus-A review

机译:小扁豆(Lens culinaris Medikus)对磷的反应-A综述

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摘要

Lentil (Lens culinaris Medikus) is an old world legume and probably one of the first plant species to be domesticated. Lentil is mainly cultivated in rainfed agro-ecosystems, where majority of soils are low to medium in available phosphorus (P), so lentil responds well to phosphorus fertilization. Higher phosphorus application stimulates the plant to increase the main root as well as lateral root length which enables the plant to take large volume of water from deeper soil layers. The symbiotic parameters i.e. nodulation, nodule dry weight and leghaemoglobin content are positively influenced by phosphorus application. Proper supply of phosphorus lengthens the lentil phenology i.e. maturity period, moreover it also influences the physiological parameters i.e. harvest index, leaf area index, net assimilation rate and crop growth rate. The optimum phosphorus application enhances the yield attributes such as number of pods per plant, grains per pod and 1000-grain weight, resulting in high production. Lentil occupies a unique position in the world of agriculture by virtue of its high protein content. Adequate supply of phosphorus increases the protein concentration and protein developing parameters i.e. albumins, globulins and prolamins. Higher phosphorus fertilization stimulates the plant to capture molybdenum (Mo) element from soil which is an important component of the nitrogenase enzyme and also manipulates the soil N and organic carbon status to maintain the soil fertility. Phosphorus applicationmakes the plant resistant against diseases i.e. root rot, collar rot and wilt by morphological and physiological changes.
机译:扁豆(Lens culinaris Medikus)是一种古老的豆科植物,可能是最早被驯化的植物之一。扁豆主要种植在雨养农业生态系统中,那里的土壤大多数都缺乏有效磷(P),因此扁豆对磷肥的反应很好。较高的磷施用量会刺激植物增加主根和侧根的长度,从而使植物能够从较深的土壤层中吸收大量的水分。共生参数,即结瘤,结节干重和血红蛋白含量受磷施用的积极影响。磷的适当供应延长了扁豆的物候,即成熟期,而且还影响生理参数,即收获指数,叶面积指数,净同化率和农作物生长率。最佳的磷施用量可提高产量属性,例如每株豆荚的数量,每粒豆荚的谷物和1000粒重的产量,从而提高了产量。扁豆因其高蛋白质含量而在农业领域占有独特的地位。充足的磷增加了蛋白质浓度和蛋白质发育参数,即白蛋白,球蛋白和谷醇溶蛋白。较高的磷肥水平可以刺激植物从土壤中捕获钼(Mo)元素,而钼元素是固氮酶的重要组成部分,还可以控制土壤中的氮和有机碳状况,以保持土壤肥力。磷的施用通过形态和生理变化使植物具有抗病性,例如根腐病,衣领腐烂和枯萎病。

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