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具有耐早和促进植物生长作用的植物内生性葡萄球菌属与补充硅酸钠具有协同作用。

Drought-tolerant and plant growth-promoting endophytic Staphylococcus sp. having synergistic effect with silicate supplementation.

机构信息

School of Biosciences, Mahatma Gandhi University, PD Hills (PO)686 560, Kottayam, Kerala, India.

Sree Narayana Arts and Science College, Kumarakom, Kerala, India.

出版信息

Arch Microbiol. 2020 Sep;202(7):1899-1906. doi: 10.1007/s00203-020-01911-1. Epub 2020 May 24.

Abstract

Endophytic bacteria have been reported to have symbiotic, mutualistic, commensalistic or trophobiotic relationships with various plant parts. As part of its adaptation, many endophytic organisms are known to exhibit properties with multiple beneficial effects to the plant system. Even though many bacterial genera have been identified to have endophytic association, isolation of those which were previously demonstrated well for human association is quite interesting. In the study, endophytic bacteria Ceb1 isolated from the rhizome of Curcuma longa was identified by 16S rDNA sequencing as Staphylococcus sp. Further, Ceb1 was observed to have the ability to tolerate drought stress. While screening for the plant growth-promoting traits, Ceb1 was found to be positive for IAA production both under drought-stressed and normal conditions as confirmed by HPLC. The Ceb1 priming with Vigna unguiculata was observed to enhance the growth parameters of the plant. Analysis of Ceb1-treated plants by ICP-MS further showed modulation of both macro- and micronutrients. Upon drought stress induction in Vigna unguiculata, Ceb1 was found to provide synergistic plant growth-promoting effect to the plant along with the supplemented silicate sources. Under the changing agroclimatic conditions, exploring the plant stress-alleviating effects of endophytes is highly significant.

摘要

内共生细菌与各种植物部位具有共生、互利共生、共生或营养关系。作为其适应的一部分,许多内生生物被认为具有对植物系统具有多种有益作用的特性。尽管已经确定了许多细菌属具有内生关联,但分离出以前被证明与人有良好关联的那些细菌属是非常有趣的。在这项研究中,从姜黄根茎中分离出的内生细菌 Ceb1 通过 16S rDNA 测序鉴定为葡萄球菌属。此外,Ceb1 被观察到具有耐受干旱胁迫的能力。在筛选植物生长促进特性时,发现 Ceb1 在干旱胁迫和正常条件下均能产生 IAA,这通过 HPLC 得到了证实。用豇豆对 Ceb1 进行预处理被观察到能增强植物的生长参数。用 ICP-MS 对 Ceb1 处理过的植物进行分析进一步显示了大量和微量元素的调节。在豇豆受到干旱胁迫诱导时,发现 Ceb1 与补充的硅源一起为植物提供协同的生长促进作用。在不断变化的农业气候条件下,探索内生菌对植物的缓解胁迫效应具有重要意义。

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