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草甘膦和纳米管对拟南芥叶际微生物群落的叶片代谢影响。

Leaf metabolic influence of glyphosate and nanotubes on the Arabidopsis thaliana phyllosphere.

机构信息

College of Environment, Zhejiang University of Technology, Hangzhou 310032, China.

Laboratory of Applied Microbiology and Biotechnology, School of Pharmaceutical Engineering & Life Science, Changzhou University, Changzhou 213164, China.

出版信息

J Environ Sci (China). 2021 Aug;106:66-75. doi: 10.1016/j.jes.2021.01.002. Epub 2021 Jan 27.

Abstract

Chemical exposure can indirectly affect leaf microbiota communities, but the mechanism driving this phenomenon remains largely unknown. Results revealed that the co-exposure of glyphosate and multi-carbon nanotubes (CNTs) caused a synergistic inhibitory effect on the growth and metabolism of Arabidopsis thaliana shoots. However, only a slight inhibitory effect was induced by nanotubes or glyphosate alone at the tested concentrations. Several intermediate metabolites of nitrogen metabolism and fatty acid synthesis pathways were upregulated under the combined treatment, which increased the amount of energy required to alleviate the disruption caused by the combined treatment. Additionally, compared with the two individual treatments, the glyphosate/nanotube combination treatment induced greater fluctuations in the phyllosphere bacterial community members with low abundance (relative abundance (RA) <1%) at both the family and genus levels, and among these bacteria some plant growth promotion and nutrient supplement related bacteria were markable increased. Strikingly, strong correlations between phyllosphere bacterial diversity and metabolites suggested a potential role of leaf metabolism, particularly nitrogen and carbohydrate metabolism, in restricting the range of leaf microbial taxa. These correlations between phyllosphere bacterial diversity and leaf metabolism will improve our understanding of plant-microbe interactions and the extent of their drivers of variation and the underlying causes of variability in bacterial community composition.

摘要

化学暴露会间接影响叶片微生物群落,但这一现象背后的驱动机制在很大程度上仍不清楚。研究结果表明,草甘膦和多壁碳纳米管(CNTs)的共同暴露对拟南芥 shoot 的生长和代谢产生了协同抑制作用。然而,在测试的浓度下,纳米管或草甘膦单独处理仅引起轻微的抑制作用。在联合处理下,氮代谢和脂肪酸合成途径的几种中间代谢物上调,这增加了缓解联合处理造成的破坏所需的能量。此外,与两种单独处理相比,草甘膦/纳米管联合处理在科和属水平上诱导了具有低丰度(相对丰度(RA)<1%)的叶际细菌群落成员更大的波动,在这些细菌中,一些与植物生长促进和营养补充相关的细菌明显增加。值得注意的是,叶际细菌多样性与代谢物之间存在很强的相关性,这表明叶片代谢,特别是氮和碳水化合物代谢,可能在限制叶片微生物类群的范围方面发挥作用。这些叶际细菌多样性与叶片代谢之间的相关性将提高我们对植物-微生物相互作用以及其变化驱动因素和细菌群落组成变异性的潜在原因的理解。

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