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Zinc tolerant plant growth promoting bacteria alleviates phytotoxic effects of zinc on maize through zinc immobilization

机译:耐含锌植物生长促进细菌可缓解锌通过锌固定化锌的植物毒性作用

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摘要

The increasing heavy metal contamination in agricultural soils has become a serious concern across the globe. The present study envisages developing microbial inoculant approach for agriculture in Zn contaminated soils. Potential zinc tolerant bacteria (ZTB) were isolated from zinc (Zn) contaminated soils of southern Rajasthan, India. Isolates were further screened based on their efficiency towards Zn tolerance and plant growth promoting activities. Four strains viz. ZTB15, ZTB24, ZTB28 and ZTB29 exhibited high degree of tolerance to Zn up to 62.5?mM. The Zn accumulation by these bacterial strains was also evidenced by AAS and SEM–EDS studies. Assessment of various plant growth promotion traits viz., IAA, GA3, NH3, HCN, siderophores, ACC deaminase, phytase production and P, K, Si solubilization studies revealed that these ZTB strains may serve as an efficient plant growth promoter under in vitro conditions. Gluconic acid secreted by ZTB strains owing to mineral solubilization was therefore confirmed using high performance liquid chromatography. A pot experiment under Zn stress conditions was performed using maize (Zea mays) variety (FEM-2) as a test crop. Zn toxicity reduced various plant growth parameters; however, inoculation of ZTB strains alleviated the Zn toxicity and enhanced the plant growth parameters. The effects of Zn stress on antioxidant enzyme activities in maize under in vitro conditions were also investigated. An increase in superoxide dismutase, peroxidase, phenylalanine ammonia lyase, catalase and polyphenol oxidase activity was observed on inoculation of ZTB strains. Further, ZIP gene expression studies revealed high expression in the ZIP metal transporter genes which were declined in the ZTB treated maize plantlets. The findings from the present study revealed that ZTB could play an important role in bioremediation in Zn contaminated soils.
机译:农业土壤中越来越大的重金属污染已成为全球严重关注。本研究设想在Zn受污染的土壤中发育农业农业的微生物素描方法。潜在的锌耐受性细菌(ZTB)是从印度南部南部的锌(Zn)污染的土壤中分离出来的。基于促进抗抗抗性和植物生长促进活动的效率进一步筛选分离物。四个菌株viz。 ZTB15,ZTB24,ZTB28和ZTB29对Zn的高耐受程度高达62.5毫米。通过AAS和SEM-EDS研究也证明了这些细菌菌株的Zn积累。评估各种植物生长促进特征的viz,IAA,GA3,NH3,HCN,Sircerophores,ACC脱氨酶,植酸酶生产和P,K,K,Si溶解研究表明,这些ZTB菌株可作为在体外条件下的有效植物生长促进剂。因此,使用高效液相色谱法确认由ZTB菌株分泌的葡萄糖酸。使用玉米(Zea mays)品种(FEM-2)作为测试作物进行Zn胁迫条件下的罐实验。 Zn毒性减少了各种植物生长参数;然而,接种ZTB菌株缓解Zn毒性并增强了植物生长参数。还研究了Zn胁迫对体外条件下玉米抗氧化酶活性的影响。在接种ZTB菌株时观察到超氧化物歧化酶,过氧化物酶,苯丙氨酸氨催化酶,过氧化氢酶和多酚氧化酶活性。此外,ZIP基因表达研究显示ZIP金属转运蛋白基因中的高表达,其在ZTB处理的玉米植物中下降。本研究的发现表明,ZTB可以在Zn受污染的土壤中的生物修复中发挥重要作用。

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