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Linking rhizosphere microbiome composition of wild and domesticated Phaseolus vulgaris to genotypic and root phenotypic traits

机译:将野生和驯化菜豆的根际微生物组组成与基因型和根表型性状联系起来

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摘要

Plant domestication was a pivotal accomplishment in human history, but also led to a reduction in genetic diversity of crop species compared to their wild ancestors. How this reduced genetic diversity affected plant–microbe interactions belowground is largely unknown. Here, we investigated the genetic relatedness, root phenotypic traits and rhizobacterial community composition of modern and wild accessions of common bean (Phaseolus vulgaris) grown in agricultural soil from the highlands of Colombia, one of the centers of common bean diversification. Diversity Array Technology-based genotyping and phenotyping of local common bean accessions showed significant genetic and root architectural differences between wild and modern accessions, with a higher specific root length for the wild accessions. Canonical Correspondence Analysis indicated that the divergence in rhizobacterial community composition between wild and modern bean accessions is associated with differences in specific root length. Along the bean genotypic trajectory, going from wild to modern, we observed a gradual decrease in relative abundance of Bacteroidetes, mainly Chitinophagaceae and Cytophagaceae, and an increase in relative abundance of Actinobacteria and Proteobacteria, in particular Nocardioidaceae and Rhizobiaceae, respectively. Collectively, these results establish a link between common bean domestication, specific root morphological traits and rhizobacterial community assembly.
机译:植物驯化是人类历史上举足轻重的成就,但与野生祖先相比,也导致农作物物种的遗传多样性下降。这种减少的遗传多样性如何影响地下植物与微生物的相互作用尚不清楚。在这里,我们调查了哥伦比亚高地(普通豆多样化中心之一)在农业土壤中种植的普通豆(菜豆)的现代和野生种的遗传相关性,根表型特征和根际细菌群落组成。基于多样性阵列技术的本地普通豆种质的基因分型和表型分析表明,野生和现代种质之间存在显着的遗传和根系结构差异,野生种质的根长更长。典范对应分析表明,野生和现代豆种之间根瘤菌群落组成的差异与特定根长的差异有关。沿着从野生到现代的豆类基因型轨迹,我们观察到拟杆菌属(主要是壳藻科和细胞吞噬菌科)的相对丰度逐渐降低,放线菌和变形杆菌(尤其是诺卡氏菌和根瘤菌)的相对丰度有所增加。总而言之,这些结果在普通豆的驯化,特定的根系形态特征与根瘤菌群落组装之间建立了联系。

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