Effect in soil and rhizosphere microbiota of Brachiaria inoculated with Azospirillum brasilense: a pilot trial in two Oxisol types

IF 1.2 4区 农林科学 Q4 SOIL SCIENCE Soil Research Pub Date : 2023-01-03 DOI:10.1071/sr22201
Eliane Cristina Gruszka Vendruscolo, Dany Mesa, Robson Fernando Missio
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引用次数: 1

Abstract

Context The Brachiaria genus includes several species of pastures distributed in tropical and subtropical regions. Plant growth-promoting bacteria (PGPB), such as Azospirillum brasilense, have been used as inoculants to increase crop production. Aims This study explored the effect of A. brasilense on Brachiaria seedlings, rhizosphere, and soil. Methods We inoculated A. brasilense on Brachiaria seeds sown in two types of soil mainly varying in texture (medium texture-Mt and clayey-C soils). We then collected the rhizosphere to evaluate the microbiota adhered to the plants by high-throughput 16S sequencing using bioinformatic tools. Shoot and root biomass were also evaluated. Key results Inoculation increased the aerial biomass of Brachiaria plants. However, it did not increase root biomass. Soil texture is a critical element in shaping rhizosphere communities. A. brasilense decreased the abundance of Firmicutes, mainly in C Oxisols. Network analysis showed that Proteobacteria, Acidobacteria, Actinobacteria, Firmicutes, and Bacteroidetes were the main phyla in the vicinity of Brachiaria roots. Furthermore, the abundance of specific phyla, such as Armatimonadetes, Tenericutes, and Fusobacteria (Mt) and Latescibacteria, Rokubacteria, and WS2 (C) increased in the bulk fraction. In the rhizosphere, Chlamydiae was exclusively related to Mt Oxisols. By contrast, Verrumicrobia and Fusobacteria were only found in the C soils. Conclusions Relative abundance of Acidobacteria and Actinobacteria increased after inoculation in the rhizosphere of both types of Oxisols. Implications These results indicate that inoculation can affect Brachiaria plants and their rhizospheric bacterial communities. The effect of taxonomic groups altered through inoculation and the relationship between the functional capacities of each group within the microbiota are yet to be elucidated.
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接种巴西氮螺旋菌对腕毛虫土壤和根际微生物群的影响:两种氧梭菌类型的中试试验
腕足属包括分布在热带和亚热带地区的几种牧草。植物生长促进菌(PGPB),如巴西氮螺旋菌,已被用作接种剂,以提高作物产量。目的研究巴西螺对腕足属植物幼苗、根际和土壤的影响。方法在两种质地主要不同的土壤(中质- mt和粘质- c土壤)上接种巴西螺。利用生物信息学工具,通过高通量16S测序,收集根际植物黏附菌群。同时对地上部和根部生物量进行了评价。接种增加了腕子属植物的地上生物量。但并没有增加根系生物量。土壤质地是形成根际群落的关键因素。brasilense降低了厚壁菌门的丰度,主要是在C . oxisol中。网络分析显示,腕足菌根附近主要有变形菌门、酸性菌门、放线菌门、厚壁菌门和拟杆菌门。此外,armatimonadees、Tenericutes、Fusobacteria (Mt)和Latescibacteria、Rokubacteria和WS2 (C)等特定门的丰度在总体分数中有所增加。在根际,衣原体只与Mt Oxisols相关。相比之下,在C土壤中只发现了Verrumicrobia和Fusobacteria。结论接种后根际酸性菌群和放线菌群的相对丰度均有所增加。结果表明,接种可影响腕足属植物及其根际细菌群落。通过接种改变的分类群的影响以及微生物群中各群功能能力之间的关系尚未阐明。
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来源期刊
Soil Research
Soil Research SOIL SCIENCE-
CiteScore
3.20
自引率
6.20%
发文量
35
审稿时长
4.5 months
期刊介绍: Soil Research (formerly known as Australian Journal of Soil Research) is an international journal that aims to rapidly publish high-quality, novel research about fundamental and applied aspects of soil science. As well as publishing in traditional aspects of soil biology, soil physics and soil chemistry across terrestrial ecosystems, the journal welcomes manuscripts dealing with wider interactions of soils with the environment. Soil Research is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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