DIAZOTROPHIC ENDOPHYTE Klebsiella sp. N5 FROM SORGHUM SHOWS CROSS-COLONIZATION AND PLANT GROWTH PROMOTION IN RICE

Ashvin Gauswami, Sanjay Jha, Swati Patel, Harish Suthar, Vipul Parekh, Anamika Jha, H. Jajda
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Abstract

Rice necessitates the highest levels of N fertilizers during its cultivation increasing demand for nitrogen fertilizers as well as negatively affecting the environment. Endophytic diazotrophic bacteria were isolated from sorghum, out of 35 isolates  Klebsiella sp. N5 showed maximum potential for biological nitrogen fixation. Primary screening of strain N5 was done with acetylene reduction assay indicating dry root activity of 638.55 nmol C2H4 h-1 g-1. That was further confirmed by nifH gene amplification. The strain was identified morphologically, biochemically and 16S rDNA sequencing analysis and identified as Klebsiella sp. strain N5. This strain exhibited other plant growth-promoting (PGP) traits, such as phosphate solubilization, production of indole acetic acid, siderophore activity, ACC deaminase activity, and anti-fungal activity. PGP endophyte N5 was inoculated into rice seedlings to investigate its interaction under axenic conditions and to characterize its ability to colonize non-native host plant rice. Extensive colonization of rice roots was corroborated by Scanning electron microscopy. In-planta experiments with rice seeds inoculated with Klebsiella sp. N5 showed significant improvements in various agronomic traits such as increase in shoot length, root length, fresh and dry weight of root and shoot, chlorophyll content, and nitrogen content of the plant and soil compared to the untreated plants. Klebsiella sp. N5, a cross colonizer from sorghum (C4 plant) to rice (C3 plant) plays a crucial role in facilitating the acquisition of essential resources such as nitrogen, phosphorus, and iron through direct mechanisms. This study expands the horizon for its potential as a valuable bioinoculant for sustainable agricultural practices, particularly in non-native host rice, paving the way for future field trials.
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生姜中的二嗜酸性内生菌克雷伯氏菌 N5 在稻米中的交叉共生和植物生长促进作用
水稻在种植过程中对氮肥的需求量最大,增加了对氮肥的需求,同时也对环境造成了负面影响。从高粱中分离出了内生重氮营养细菌,在 35 个分离菌株中,克雷伯氏菌 N5 表现出最大的生物固氮潜力。通过乙炔还原试验对菌株 N5 进行了初步筛选,结果表明其干根活性为 638.55 nmol C2H4 h-1 g-1。nifH 基因扩增进一步证实了这一点。经形态学、生物化学和 16S rDNA 序列分析鉴定,该菌株为克雷伯氏菌 N5 株。该菌株还具有其他促进植物生长(PGP)的特性,如磷酸盐溶解、产生吲哚乙酸、苷元活性、ACC脱氨酶活性和抗真菌活性。将 PGP 内生菌 N5 接种到水稻幼苗中,研究其在轴生条件下的相互作用,并鉴定其在非本地寄主植物水稻中的定殖能力。扫描电子显微镜证实了其在水稻根部的广泛定殖。与未处理的植物相比,接种了克雷伯氏菌 N5 的水稻种子的栽培实验显示,其各种农艺性状均有显著改善,如芽长、根长、根和芽的鲜重和干重、叶绿素含量以及植物和土壤中的氮含量均有所增加。克雷伯氏菌 N5 是一种从高粱(C4 植物)到水稻(C3 植物)的杂交定殖菌,在通过直接机制促进氮、磷、铁等必要资源的获取方面发挥着至关重要的作用。这项研究拓宽了其作为可持续农业实践(尤其是在非本地寄主水稻中)的一种有价值的生物接种剂的潜力,为未来的田间试验铺平了道路。
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