Agricultural intensification reduces selection of putative plant growth-promoting rhizobacteria in wheat.

IF 10.8 1区 环境科学与生态学 Q1 ECOLOGY
Tessa E Reid, Vanessa N Kavamura, Adriana Torres-Ballesteros, Monique E Smith, Maïder Abadie, Mark Pawlett, Ian M Clark, Jim A Harris, Tim H Mauchline
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Abstract

The complex evolutionary history of wheat has shaped its associated root microbial community. However, consideration of impacts from agricultural intensification has been limited. This study investigated how endogenous (genome polyploidization) and exogenous (introduction of chemical fertilizers) factors have shaped beneficial rhizobacterial selection. We combined culture-independent and -dependent methods to analyze rhizobacterial community composition and its associated functions at the root-soil interface from a range of ancestral and modern wheat genotypes, grown with and without the addition of chemical fertilizer. In controlled pot experiments, fertilization and soil compartment (rhizosphere, rhizoplane) were the dominant factors shaping rhizobacterial community composition, whereas the expansion of the wheat genome from diploid to allopolyploid caused the next greatest variation. Rhizoplane-derived culturable bacterial collections tested for plant growth-promoting (PGP) traits revealed that fertilization reduced the abundance of putative plant growth-promoting rhizobacteria in allopolyploid wheats but not in wild wheat progenitors. Taxonomic classification of these isolates showed that these differences were largely driven by reduced selection of beneficial root bacteria representative of the Bacteroidota phylum in allopolyploid wheats. Furthermore, the complexity of supported beneficial bacterial populations in hexaploid wheats was greatly reduced in comparison to diploid wild wheats. We therefore propose that the selection of root-associated bacterial genera with PGP functions may be impaired by crop domestication in a fertilizer-dependent manner, a potentially crucial finding to direct future plant breeding programs to improve crop production systems in a changing environment.

农业集约化减少了小麦中假定的植物生长促进根瘤菌的选择。
小麦复杂的进化史塑造了与其相关的根微生物群落。然而,对农业集约化影响的研究却很有限。本研究调查了内源(基因组多倍体化)和外源(化肥的引入)因素如何塑造了有益根瘤菌的选择。我们结合了独立于培养和独立于培养的方法,分析了一系列祖先和现代小麦基因型在施用或未施用化肥的情况下根瘤菌群落的组成及其在根-土界面的相关功能。在对照盆栽实验中,施肥和土壤区系(根瘤层、根瘤平面)是影响根瘤菌群落组成的主要因素,而小麦基因组从二倍体扩展到全多倍体则是造成次大变异的主要因素。根据促进植物生长(PGP)特性对根瘤菌培养物进行的测试表明,施肥降低了异源多倍体小麦中假定的促进植物生长根瘤菌(PGPR)的数量,而野生小麦祖先中却没有。对这些分离物的分类显示,这些差异主要是由于在全多倍体小麦中代表类杆菌门的有益根部细菌的选择减少所致。此外,与二倍体野生小麦相比,六倍体小麦中受支持的有益细菌种群的复杂性大大降低。因此,我们认为,作物驯化可能会以肥料依赖的方式损害具有PGP功能的根相关细菌属的选择,这一潜在的重要发现将指导未来的植物育种计划,以在不断变化的环境中改进作物生产系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ISME Journal
ISME Journal 环境科学-生态学
CiteScore
22.10
自引率
2.70%
发文量
171
审稿时长
2.6 months
期刊介绍: The ISME Journal covers the diverse and integrated areas of microbial ecology. We encourage contributions that represent major advances for the study of microbial ecosystems, communities, and interactions of microorganisms in the environment. Articles in The ISME Journal describe pioneering discoveries of wide appeal that enhance our understanding of functional and mechanistic relationships among microorganisms, their communities, and their habitats.
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