Response of Black Gram (Vigna mungo L. Hepper) to Rhizobium, Phosphorus and Nitrogen for Sustainable Agriculture: A Mini Review

D. Veer, K. Habib, Krishna Kumar
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Abstract

Rhizobium microbial bacteria functioning that living a symbiosis relationship soil and leguminous plant root fixation of nitrogen to be utilized by plant superior performance during grain development stage. They can enter into symbiosis with leguminous plant, by infecting their root nodules. The legume crops are the bigger partner, often referred to as macro-symbiotic. Usually certain strains form nodule on the limited legume plants. Such a collection of strain is called cross inoculation group. Legume crops show a decrease in the nitrogenase activities observed in soil, the higher doses of nitrogen reduce nitrogen fixation on one hand and increase cost of production on the other. Rhizobium inoculation encourage both nutrient such as Mo and Fe nutrient increasing N-fixation capacity in soil with the effective agronomic practice directly plant root nodulation, nitrogen fixation, vegetative germination, maturity and yield of black gram. It is use of Rhizobium and phosphate solubilising bacteria (PSB) increases nitrogen and phosphorus uptake use efficiency from soil. Lesser efficiency of PSB has been showing through Co-inoculation with another profitable bacteria mycorrhiza. The main used of rhizobia, PSB and improvement of soil fertility and increased of yield of black gram and decrease the use of balance fertilizer.
可持续农业中黑革对根瘤菌、磷、氮的响应
根瘤菌是一种生活在土壤与豆科植物共生关系中的微生物菌群,其对植物根系的固氮能被植物利用,在籽粒发育阶段表现优越。它们可以通过感染豆科植物的根瘤而与豆科植物共生。豆科作物是更大的伙伴,通常被称为大型共生作物。通常某些菌株在有限的豆科植物上形成根瘤。这样的菌株集合称为交叉接种组。豆科作物土壤中氮酶活性降低,高施氮量一方面降低固氮,另一方面增加生产成本。接种根瘤菌可以促进土壤中钼、铁等营养物质的吸收,提高土壤的固氮能力,通过有效的农艺措施直接促进黑豆根系结瘤、固氮、营养萌发、成熟和产量。根瘤菌和增磷菌(PSB)的使用提高了土壤对氮磷的吸收利用效率。通过与另一种有益细菌菌根共接种,PSB的效率较低。主要施用根瘤菌、PSB,提高土壤肥力,提高黑克产量,减少平衡肥的施用。
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