西孟加拉邦两个栽培水稻品种根系内生菌核心菌群的研究

S. Sengupta, P. Singh, S. Ganguli
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引用次数: 0

摘要

根内生菌被认为是有效的环境友好型化肥替代品之一,因为它们具有在宿主内部诱导串扰的能力,用于促进生长、固氮、增溶磷酸盐和固铁。本研究旨在探索和评价两个广泛栽培的水稻品种“Saraswati”(OS01)和“Kunti”(OS04)的关键根内生细菌群落。生成了OS01和OS04内生菌的详细比较宏基因组数据,并计算了物种丰富度。OS01的内生菌物种丰富度高于OS04,α多样性值分别为3.10和2.40。芽孢杆菌(Bacillus)、磁螺菌(Magnetospirillum)、甲烷孢子虫(Methanocystis)、脱硫微生物(Desulfomicrobium)和泛菌(Pantea)被鉴定为两个品种的常见内生菌。Solibacillus、Paenibacillus、Candidatus和Melospira是OS01的独特成员,Herbspirillum、Pandoraea和Anabaenopsis是OS04的独特成员。品种中大量出现的固氮菌和产甲烷菌证实了生物固氮作用,有助于植物发育。氨基酸生物合成和碳代谢的核心同源性途径也反映在两个品种的内生菌中,这表明微生物处于支持性环境中。硫代谢途径同样被预测在所研究的生态位中是活跃的,这可能被归因于对砷胁迫的反应。此外,已确定的最丰富的属可能成为寄主植物发育的重要候选群落,并以可持续的方式提高产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Insights into the core bacterial consortia of root endophytes in two cultivated varieties of rice in West Bengal
Root endophytes are considered to be one of the potent environment-friendly substitutes for chemical fertilizers, as they possess an ability to induce crosstalk inside the hosts for growth promotion, nitrogen fixation, phosphate solubilization and iron sequestration. This study aimed to explore and evaluate the key root endophytic bacterial consortia of two widely cultivated varieties of rice (Oryza sativa L.), cv. ‘Saraswati’ (OS01) and cv. ‘Kunti’ (OS04). Detailed comparative metagenome data were generated for endophytes of OS01 and OS04 and the species richness was calculated. OS01 showed higher endophyte species richness than OS04, with alpha diversity values of 3.10 and 2.40, respectively. Bacillus, Magnetospirillum, Methanocystis, Desulfomicrobium and Pantoea were identified as common endophyte members for both cultivars. Solibacillus, Paenibacillus, Candidatus, and Melospira were unique members of OS01, and Herbaspirillum, Pandoraea, Anabaenopsis for OS04. Considerable occurrence of nitrogen fixing bacteria and methanogenic bacteria in the cultivars confirmed biological nitrogen fixation, which can contribute to plant development. Core homeotic pathways of amino acid biosynthesis and carbon metabolism were also reflected in endophytes from both cultivars, indicating a supportive environment for microorganisms. Sulfur metabolism pathways were likewise predicted to be active in the niche under study, which may be attributed as a response to arsenic stress. Furthermore, the most abundant genera identified may potentially serve as crucial consortium candidates for host plant development and contribute to better yield in a sustainable manner.
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
15
审稿时长
12 weeks
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