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接种铜绿假单胞菌CMAA 1215对盐渍根际土壤中非靶标本地细菌群落的影响

Impact of Inoculation with Pseudomonas aestus CMAA 1215 on the Non-target Resident Bacterial Community in a Saline Rhizosphere Soil.

作者信息

Vasconcellos Rafael L F, Romagnoli Emiliana Manesco, Taketani Rodrigo G, Santos Suikinai Nobre, Zucchi Tiago Domingues, Melo Itamar Soares

机构信息

Soil Microbiology Laboratory, Department of Soil Science, Luiz de Queiroz College of Agriculture, University of São Paulo, ESALQ/USP, Av. Pádua Dias, 11, CP 09, Piracicaba, SP, 13418-900, Brazil.

Laboratory of Environmental Microbiology, Embrapa Environment, Brazilian Agricultural Research Corporation-EMBRAPA, Rodovia SP 340, Km 127,5, P.O. Box 69, Jaguariúna, SP, 13820-000, Brazil.

出版信息

Curr Microbiol. 2021 Jan;78(1):218-228. doi: 10.1007/s00284-020-02285-9. Epub 2020 Nov 24.

Abstract

Plant growth reduction caused by osmotic stress, pathogens, and nutrient scarcity can be overcome by inoculation with plant growth-promoting rhizobacteria (PGPR). Knowing the effects of PGPR on the microbial community beyond those on plant growth can bring new options of soil microbiota management. The present study aimed to investigate the effect of inoculation with the newly described Pseudomonas aestus CMAA 1215 [a 1-aminocyclopropane-1-carboxylate (ACC) deaminase and glycine-betaine producer] on the rhizosphere bacterial community of Zea mays in natural (non-salinized) and saline soil. The bacterial community structure was assessed by sequencing the V6-V7 16S ribosomal RNA using the Ion Personal Genome Machine. The non-metric multidimensional scaling (NMDS) of the OTU profile (ANOSIM P < 0.01) distinguishes all the treatments (with and without inoculation under saline and natural soils). Inoculated samples shared 1234 OTUs with non-inoculated soil. The most abundant classes in all samples were Alphaproteobacteria, Gammaproteobacteria, Actinobacteria, Acidobacteriia, Bacteroidia, Thermoleophilia, Verrucomicrobiae, Ktenodobacteria, and Bacilli. The inoculation, on the other hand, caused an increase in the abundance of the genera Bacillus, Bryobacter, Bradyrhizobium, "Candidatus Xiphinematobacter", and "Candidatus Udaeobacter" independent of soil salinization. "Candidatus Udaeobacter" has the largest Mean Decrease in Gini Values with higher abundance on inoculated salted soil. In addition, Pseudomonas inoculation reduced the abundance of Gammaproteobacteria and Phycisphaerae. Understanding how inoculation modifies the bacterial community is essential to manage the rhizospheric microbiome to create a multi-inoculant approach and to understand its effects on ecological function.

摘要

渗透胁迫、病原体和养分缺乏导致的植物生长减缓可通过接种促植物生长根际细菌(PGPR)来克服。了解PGPR对微生物群落的影响(而非仅对植物生长的影响)可为土壤微生物群管理带来新选择。本研究旨在调查接种新描述的铜绿假单胞菌CMAA 1215(一种1-氨基环丙烷-1-羧酸(ACC)脱氨酶和甘氨酸甜菜碱生产者)对天然(非盐渍化)和盐渍土壤中玉米根际细菌群落的影响。使用离子个人基因组机器对V6-V7 16S核糖体RNA进行测序,以评估细菌群落结构。OTU图谱的非度量多维尺度分析(NMDS)(ANOSIM P < 0.01)区分了所有处理(盐渍土和天然土中接种和未接种的情况)。接种样品与未接种土壤共有1234个OTU。所有样品中最丰富的类别是α-变形菌纲、γ-变形菌纲、放线菌纲、酸杆菌纲、拟杆菌纲、嗜热放线菌纲、疣微菌纲、链杆菌纲和芽孢杆菌纲。另一方面,接种导致芽孢杆菌属、Bryobacter属、慢生根瘤菌属、“暂定剑线虫杆菌属”和“暂定乌达杆菌属”的丰度增加,与土壤盐渍化无关。“暂定乌达杆菌属”的基尼值平均下降幅度最大,在接种的盐渍土壤上丰度更高。此外,假单胞菌接种降低了γ-变形菌纲和球形杆菌纲的丰度。了解接种如何改变细菌群落对于管理根际微生物组以创建多接种方法并了解其对生态功能的影响至关重要。

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