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具有生理和功能意义的田间茎和离体培养木瓜中多样化的细胞定植内生细菌。

Diverse cellular colonizing endophytic bacteria in field shoots and in vitro cultured papaya with physiological and functional implications.

机构信息

Division of Biotechnology, Endophytic and Molecular Microbiology Laboratory, ICAR-Indian Institute of Horticultural Research, Bengaluru, India, 560 089.

出版信息

Physiol Plant. 2019 Jul;166(3):729-747. doi: 10.1111/ppl.12825. Epub 2018 Nov 21.

Abstract

The study was envisaged to assess the extent of normally uncultivable endophytic bacteria in field papaya plants and in vitro established cultures adopting cultivation vs molecular analysis and microscopy. Surface-sterilized axillary shoot-buds of papaya 'Arka Surya' revealed high bacterial diversity as per 16S rRNA metagene amplicon sequencing (6 phyla, 10 classes, 21 families) with an abundance of Pseudomonas (Gammaproteobacteria), which also formed a common contaminant for in vitro cultured field explants. Molecular analysis of seedling shoot-tip-derived healthy proliferating cultures of three genotypes ('Arka Surya', 'Arka Prabhath', 'Red Lady') with regular monthly subculturing also displayed high bacterial diversity (11-16 phyla, >25 classes, >50 families, >200 genera) about 12-18 months after initial establishment. 'Arka Surya' and 'Red Lady' cultures bore predominantly Actinobacteria (75-78%) while 'Arka Prabhath' showed largely Alphaproteobacteria corroborating the slowly activated Methylobacterium sp. Bright-field direct microscopy on tissue sections and tissue homogenate and epi-fluorescence microscopy employing bacterial DNA probe SYTO-9 revealed abundant intracellular bacteria embracing the next-generation sequencing elucidated high taxonomic diversity. Phylogenetic investigation of communities by reconstruction of unobserved states- PICRUSt- functional annotation suggested significant operational roles for the bacterial-biome. Metabolism, environmental information processing, and genetic information processing constituted major Kyoto Encyclopedia of Genes and Genomes KEGG attributes. Papaya stocks occasionally displayed bacterial growth on culture medium arising from the activation of originally uncultivable organisms to cultivation. The organisms included Bacillus (35%), Methylobacterium (15%), Pseudomonas (10%) and seven other genera (40%). This study reveals a hidden world of diverse and abundant conventionally uncultivable cellular-colonizing endophytic bacteria in field shoots and micropropagating papaya stocks with high genotypic similarity and silent participation in various plant processes/pathways.

摘要

这项研究旨在评估田间番木瓜植株和通过培养与分子分析和显微镜观察建立的体外培养物中正常不可培养内生细菌的程度。对番木瓜“Arka Surya”的腋芽进行表面消毒,通过 16S rRNA 元基因扩增测序(6 个门、10 个纲、21 个科)显示出高度的细菌多样性,其中假单胞菌(γ变形菌)最为丰富,这也是体外培养的田间外植体的常见污染物。对三种基因型(“Arka Surya”、“Arka Prabhath”、“Red Lady”)的幼苗茎尖衍生的健康增殖培养物进行分子分析,这些培养物在初始建立后约 12-18 个月内也显示出高度的细菌多样性(11-16 个门、>25 个纲、>50 个科、>200 个属)。“Arka Surya”和“Red Lady”培养物主要含有放线菌(75-78%),而“Arka Prabhath”则主要含有α变形菌,这与缓慢激活的甲基杆菌 sp. 相吻合。组织切片和组织匀浆的明场直接显微镜检查以及使用细菌 DNA 探针 SYTO-9 的荧光显微镜检查显示,大量的内生细菌包含了下一代测序揭示的高度分类多样性。通过重建未观察到的状态- PICRUSt-功能注释对群落进行系统发育研究表明,细菌生物群落具有重要的操作作用。代谢、环境信息处理和遗传信息处理构成了京都基因与基因组百科全书 KEGG 属性的主要内容。番木瓜株偶尔会在培养基上显示细菌生长,这是由于原本不可培养的生物体被激活到培养物中。这些生物体包括芽孢杆菌(35%)、甲基杆菌(15%)、假单胞菌(10%)和其他七个属(40%)。这项研究揭示了一个隐藏的世界,即田间嫩枝和高基因型相似的微繁殖番木瓜株中存在多样且丰富的常规不可培养的细胞定殖内生细菌,它们在各种植物过程/途径中沉默参与。

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