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利用人工构建生态系统(EcoFABs)评估根际中的水平基因转移。

Assessing horizontal gene transfer in the rhizosphere of using fabricated ecosystems (EcoFABs).

机构信息

Biological Systems and Engineering Division, Lawrence Berkeley National Laboratory, Berkeley, California, USA.

Department of Biological Sciences, Western Michigan University, Kalamazoo, Michigan, USA.

出版信息

Appl Environ Microbiol. 2024 Nov 20;90(11):e0150524. doi: 10.1128/aem.01505-24. Epub 2024 Nov 4.

Abstract

Horizontal gene transfer (HGT) is a major process by which genes are transferred between microbes in the rhizosphere. However, examining HGT remains challenging due to the complexity of mimicking conditions within the rhizosphere. Fabricated ecosystems (EcoFABs) have been used to investigate several complex processes in plant-associated environments. Here we show that EcoFABs are efficient tools to examine and measure HGT frequency in the rhizosphere. We provide the first demonstration of gene transfer via a triparental conjugation system in the rhizosphere in an EcoFAB using KT2440 as both donor and recipient bacterial strain with the donor containing a mobilizable and non-self-transmissible plasmid. We observed that the frequency of plasmid transfer in the rhizosphere is potentially dependent on the plant developmental stage and the composition and amount of root exudates. The frequency of plasmid transfer also increased with higher numbers of donor cells. We demonstrate the transfer of plasmid from to another root colonizer, sp. OAS925, showing HGT within a rhizosphere microbial community. Environmental stresses also influenced the rate and efficiency of HGT in the rhizosphere between different species and genera. This study provides a robust workflow to evaluate transfer of engineered plasmids in the rhizosphere when such plasmids are potentially introduced in a field or other plant-associated environments.IMPORTANCEWe report the use of EcoFABs to investigate the HGT process in a rhizosphere environment. It highlights the potential of EcoFABs in recapitulating the dynamic rhizosphere conditions as well as their versatility in studying plant-microbe interactions. This study also emphasizes the importance of studying the parameters impacting the HGT frequency. Several factors such as plant developmental stages, nutrient conditions, number of donor cells, and environmental stresses influence gene transfer within the rhizosphere microbial community. This study paves the way for future investigations into understanding the fate and movement of engineered plasmids in a field environment.

摘要

水平基因转移 (HGT) 是微生物在根际之间转移基因的主要过程。然而,由于根际条件的复杂性,对 HGT 的研究仍然具有挑战性。人工生态系统 (EcoFAB) 已被用于研究植物相关环境中的几个复杂过程。在这里,我们展示了 EcoFAB 是研究和测量根际中 HGT 频率的有效工具。我们首次在 EcoFAB 中展示了三亲接合系统在根际中进行基因转移,其中 KT2440 既是供体又是受体细菌菌株,供体含有可移动和非自我传输的质粒。我们观察到,质粒在根际中的转移频率可能取决于植物的发育阶段以及根分泌物的组成和数量。供体细胞数量的增加也会增加质粒的转移频率。我们证明了质粒从 转移到另一个 根定殖者 sp. OAS925,表明 HGT 发生在根际微生物群落中。环境胁迫也会影响不同物种和属之间根际中 HGT 的速率和效率。本研究提供了一种稳健的工作流程,可在这些质粒可能在田间或其他与植物相关的环境中引入时,评估工程质粒在根际中的转移。

重要性

我们报告了使用 EcoFAB 来研究根际环境中的 HGT 过程。它突出了 EcoFAB 在重现动态根际条件方面的潜力,以及它们在研究植物-微生物相互作用方面的多功能性。本研究还强调了研究影响 HGT 频率的参数的重要性。几个因素,如植物发育阶段、营养条件、供体细胞数量和环境胁迫,都会影响根际微生物群落中的基因转移。本研究为未来在田间环境中研究工程质粒的命运和运动奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/499e/11577780/ce23beb60f55/aem.01505-24.f001.jpg

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