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小麦根际细菌群落对植物品种和施肥的差异响应。

Differential Response of Wheat Rhizosphere Bacterial Community to Plant Variety and Fertilization.

机构信息

Department of Biology, University of Florence, Via Madonna del Piano 6, 50019 Sesto Fiorentino, Italy.

Department of Agriculture, Food, Environment and Forestry (DAGRI), University of Florence, Piazzale delle Cascine 18, 50144 Florence, Italy.

出版信息

Int J Mol Sci. 2022 Mar 25;23(7):3616. doi: 10.3390/ijms23073616.

Abstract

The taxonomic assemblage and functions of the plant bacterial community are strongly influenced by soil and host plant genotype. Crop breeding, especially after the massive use of nitrogen fertilizers which led to varieties responding better to nitrogen fertilization, has implicitly modified the ability of the plant root to recruit an effective bacterial community. Among the priorities for harnessing the plant bacterial community, plant genotype-by-microbiome interactions are stirring attention. Here, we analyzed the effect of plant variety and fertilization on the rhizosphere bacterial community. In particular, we clarified the presence in the bacterial community of a varietal effect of N and P fertilization treatment. 16S rRNA gene amplicon sequence analysis of rhizospheric soil, collected from four wheat varieties grown under four N-P fertilization regimes, and quantification of functional bacterial genes involved in the nitrogen cycle (; ; and ) were performed. Results showed that variety played the most important role and that treatments did not affect either bacterial community diversity or bacterial phyla abundance. Variety-specific response of rhizosphere bacterial community was detected, both in relation to taxa (Nitrospira) and metabolic functions. In particular, the changes related to amino acid and aerobic metabolism and abundance of genes involved in the nitrogen cycle ( and ), suggested that plant variety may lead to functional changes in the cycling of the plant-assimilable nitrogen.

摘要

植物细菌群落的分类组合和功能受到土壤和宿主植物基因型的强烈影响。作物的培育,特别是在大量使用氮肥之后,导致了对氮施肥反应更好的品种的出现,这在一定程度上改变了植物根系招募有效细菌群落的能力。在利用植物细菌群落的优先事项中,植物基因型与微生物组的相互作用引起了人们的关注。在这里,我们分析了植物品种和施肥对根际细菌群落的影响。特别是,我们澄清了细菌群落中存在 N 和 P 施肥处理的品种效应。对从四个小麦品种在四个氮磷施肥处理下生长的根际土壤进行了 16S rRNA 基因扩增子序列分析,并定量了参与氮循环的功能细菌基因(;;和)。结果表明,品种起着最重要的作用,处理既不影响细菌群落多样性,也不影响细菌门的丰度。在与分类群(硝化螺旋菌)和代谢功能相关的方面,检测到根际细菌群落的品种特异性反应。特别是,与氨基酸和需氧代谢相关的变化以及与氮循环(和)相关的基因的丰度表明,植物品种可能导致植物可同化氮循环的功能变化。

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