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两系育成的芳香稻品种的宏基因组学研究揭示了内生细菌群落的基因型依赖和组织特异性定殖,赋予了多种植物生长促进特性。

Metagenomics of two gnotobiotically grown aromatic rice cultivars reveals genotype-dependent and tissue-specific colonization of endophytic bacterial communities attributing multiple plant growth promoting traits.

机构信息

Department of Biotechnology, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.

出版信息

World J Microbiol Biotechnol. 2021 Mar 4;37(4):59. doi: 10.1007/s11274-021-03022-5.

Abstract

Exploration of community structures, habitations, and potential plant growth promoting (PGP) attributes of endophytic bacteria through next generation sequencing (NGS) is a prerequisite to culturing PGP endophytic bacteria for their application in sustainable agriculture. The present study unravels the taxonomic abundance and diversity of endophytic bacteria inhabiting in vitro grown root, shoot and callus tissues of two aromatic rice cultivars through 16S rRNA gene-based Illumina NGS. Wide variability in the number of bacterial operational taxonomic units (OTUs) and genera was observed between the two samples of the root (55, 14 vs. 310, 76) and shoot (26, 12 vs. 276, 73) but not between the two callus samples (251, 61 vs. 259, 51), indicating tissue-specific and genotype-dependent bacterial community distribution in rice plant, even under similar gnotobiotic growth conditions. Sizes of core bacteriomes of the selected two rice genotypes varied from 1 to 15 genera, with Sphingomonas being the only genus detected in all six samples. Functional annotation, based upon the abundance of bacterial OTUs, revealed the presence of several PGP trait-related genes having variable relative abundance in tissue-specific and genotype-dependent manners. In silico study also documented a higher abundance of certain genes in the same biochemical pathway, such as nitrogen fixation, phosphate solubilization and indole acetic acid production; implying their crucial roles in the biosynthesis of metabolites leading to PGP. New insights on utilizing callus cultures for isolation of PGP endophytes aiming to improve rice crop productivity are presented, owing to constancy in bacterial OTUs and genera in callus tissues of both the rice genotypes.

摘要

通过下一代测序 (NGS) 探索内生细菌的群落结构、生境和潜在的植物促生 (PGP) 特性,是培养 PGP 内生细菌并将其应用于可持续农业的前提。本研究通过基于 16S rRNA 基因的 Illumina NGS 揭示了两种芳香稻品种离体根、茎和愈伤组织中内生细菌的分类丰度和多样性。在根(55、14 与 310、76)和茎(26、12 与 276、73)的两个样本之间观察到细菌操作分类单元(OTU)和属的数量存在广泛的差异,但在两个愈伤组织样本之间没有差异(251、61 与 259、51),这表明即使在相似的无菌生长条件下,内生细菌群落在水稻植株中也具有组织特异性和基因型依赖性。所选两种水稻基因型的核心细菌组的大小从 1 到 15 个属不等,其中只有 Sphingomonas 存在于所有 6 个样本中。基于细菌 OTU 的丰度进行功能注释,揭示了存在几种与 PGP 特性相关的基因,它们以组织特异性和基因型依赖性的方式具有不同的相对丰度。计算机研究还记录了某些基因在同一生化途径中的丰度更高,例如固氮、溶磷和吲哚乙酸产生;这表明它们在代谢物生物合成中起着至关重要的作用,这些代谢物导致 PGP。由于两种水稻基因型的愈伤组织中的细菌 OTU 和属保持不变,因此提出了利用愈伤组织培养物分离 PGP 内生菌以提高水稻作物生产力的新见解。

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