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从砂壤土中特异性招募根际细菌以促进 变种的生长。 (你提供的原文中“var.”后面内容缺失,我只能按现有内容准确翻译到这里)

Genotype-Specific Recruitment of Rhizosphere Bacteria From Sandy Loam Soil for Growth Promotion of var. .

作者信息

Li Zeyang, Zheng Yingying, Li Yansu, Cheng Xu, Huang Sanwen, Yang Xueyong, Qin Yuxuan

机构信息

School of Agricultural Sciences, Zhengzhou University, Zhengzhou, China.

Key Laboratory of Biology and Genetic Improvement of Horticultural Crops of the Ministry of Agriculture, Sino-Dutch Joint Laboratory of Horticultural Genomics, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Front Microbiol. 2022 Jun 27;13:910644. doi: 10.3389/fmicb.2022.910644. eCollection 2022.

Abstract

The composition and structure of the rhizosphere microbiome is affected by many factors, including soil type, genotype, and cultivation time of the plant. However, the interaction mechanisms among these factors are largely unclear. We use culture-independent 16S rRNA amplicon sequencing to investigate the rhizosphere bacterial composition and the structure of cultivated cucumber Xintaimici (XT) and wild-type cucumber var. (HD) in four kinds of soils. We found that soil type, cultivation time, and genotype affected the composition and structure of cucumber rhizosphere bacterial communities. Notably, HD showed better physiological features in sandy soil and sandy loam soil than it did in black soil and farm soil at 50 days post-sowing, which was due to its stronger recruitment ability to , , , and in sandy soil, and more , , and in sandy loam soil. Meanwhile, we also found that HD showed a better recruiting capacity for these bacterial genera than XT in both sandy soil and sandy loam soil. Functional predictions indicated that these bacteria might have had stronger root colonization ability and then promoted the growth of cucumbers by enhancing nitrogen metabolism and active metabolite secretion. In this study, our findings provided a better insight into the relationship between cucumber phenotype, genotype, and the rhizosphere bacterial community, which will offer valuable theoretical references for rhizosphere microbiota studies and its future application in agriculture.

摘要

根际微生物组的组成和结构受多种因素影响,包括土壤类型、植物基因型和种植时间。然而,这些因素之间的相互作用机制在很大程度上尚不清楚。我们使用非培养依赖型16S rRNA扩增子测序技术,研究了四种土壤中栽培黄瓜新泰密刺(XT)和野生型黄瓜变种(HD)的根际细菌组成和结构。我们发现土壤类型、种植时间和基因型影响黄瓜根际细菌群落的组成和结构。值得注意的是,播种50天后,HD在沙土和沙壤土中表现出比在黑土和农田土中更好的生理特征,这是因为它在沙土中对[具体细菌属1]、[具体细菌属2]、[具体细菌属3]和[具体细菌属4]的招募能力更强,在沙壤土中[具体细菌属5]、[具体细菌属6]和[具体细菌属7]更多。同时,我们还发现,在沙土和沙壤土中,HD对这些细菌属的招募能力均优于XT。功能预测表明,这些细菌可能具有更强的根定殖能力,进而通过增强氮代谢和活性代谢产物分泌来促进黄瓜生长。在本研究中,我们的发现为深入了解黄瓜表型、基因型与根际细菌群落之间的关系提供了更好的视角,这将为根际微生物群研究及其未来在农业中的应用提供有价值的理论参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7452/9271904/a5346b3d4fb4/fmicb-13-910644-g001.jpg

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