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首页> 外文期刊>Journal of Plant Nutrition >EVALUATION OF DIFFERENT PGPR STRAINS FOR YIELD ENHANCEMENT AND HIGHER ZN CONTENT IN DIFFERENT GENOTYPES OF RICE (ORYZA SATIVA L.)
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EVALUATION OF DIFFERENT PGPR STRAINS FOR YIELD ENHANCEMENT AND HIGHER ZN CONTENT IN DIFFERENT GENOTYPES OF RICE (ORYZA SATIVA L.)

机译:不同PGPR菌株对水稻不同基因型中产量增强和较高Zn含量的评价(Oryza Sativa L.)

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摘要

Rice, one of the most important staple food crops of the world, suffers a major setback nutritionally, because it is deficient in bioavailable zinc. In an attempt to answer this problem a field study was performed for two years during 2010 and 2011. Rice plants were treated with selected plant growth promoting rhizobacteria (PGPR; P. putida, P. fluorescens, A. lipoferum, B 15, B 17, B 19, BN 17, and BN 30) and plant growth, zinc (Zn) content in different plant parts and grains was analyzed. The data obtained showed enhancement in rice growth and hence, increased rice yield in response to PGPR application. All isolates resulted in almost 1.5- to 2-fold increase in Zn content in roots, shoots as well as grains in comparison to the control. The bacterial isolates B 17, B 19, and BN 17 were of particular interest as they induced the movement of Zn from roots to shoots as well as from husk to the grains, thus making grains enriched in Zn (around 25% higher Zn content). Therefore, it can be concluded that application of PGPR strains is an important strategy to combat the problem of zinc deficiency in rice and consecutively in human masses.
机译:米饭是世界上最重要的主食作物之一,营养营养大量挫折,因为它缺乏生物可利用的锌。试图回答这个问题,在2010年和2011年进行了两年的实地研究。用选定的植物生长治疗促进毒细菌(PGPR; P. Putida,P.荧光素,A. Lipoferum,B 15,B 17分析了B 19,BN 17和BN 30)和植物生长,不同植物零件和晶粒中的锌(Zn)含量。获得的数据显示水稻生长的增强,从而增加了响应于PGPR申请的水稻产量。所有分离物导致Zn含量增加近1.5-2倍,与控制相比,芽面以及谷物。细菌分离株B 17,B 19和BN17特别感兴趣,因为它们诱导Zn从根部的运动从根部的运动以及从麦壳到晶粒的运动,因此在Zn(Zn含量较高约25%左右25%) 。因此,可以得出结论,PGPR菌株的应用是对抗水稻缺锌问题并连续地在人体中的一个重要策略。

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