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Integrating plant-to-plant communication and rhizosphere microbial dynamics: ecological and evolutionary implications and a call for experimental rigor.整合植物间的通讯和根际微生物动态:生态和进化意义,以及对实验严谨性的呼吁。
ISME J. 2022 Jan;16(1):5-9. doi: 10.1038/s41396-021-01063-0. Epub 2021 Jul 31.
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Herbivory-induced green leaf volatiles increase plant performance through jasmonate-dependent plant-soil feedbacks.食草动物诱导产生的绿叶挥发物通过茉莉酸依赖的植物-土壤反馈提高植物性能。
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Volatile-mediated interspecific plant interaction promotes root colonization by beneficial bacteria via induced shifts in root exudation.挥发性物质介导的种间植物相互作用通过诱导根系分泌物的变化促进有益细菌的根定植。
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Volatile methyl jasmonate from roots triggers host-beneficial soil microbiome biofilms.根部分泌的挥发性茉莉酸甲酯触发了有利于宿主的土壤微生物生物膜。
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Functional Endophytes Regulating Plant Secondary Metabolism: Current Status, Prospects and Applications.功能内生菌调控植物次生代谢:现状、前景与应用。
Int J Mol Sci. 2023 Jan 6;24(2):1153. doi: 10.3390/ijms24021153.

整合植物间的通讯和根际微生物动态:生态和进化意义,以及对实验严谨性的呼吁。

Integrating plant-to-plant communication and rhizosphere microbial dynamics: ecological and evolutionary implications and a call for experimental rigor.

机构信息

Department of Biology, Indiana University, Bloomington, IN, USA.

Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, NY, USA.

出版信息

ISME J. 2022 Jan;16(1):5-9. doi: 10.1038/s41396-021-01063-0. Epub 2021 Jul 31.

DOI:10.1038/s41396-021-01063-0
PMID:34333553
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8692333/
Abstract

The perception of airborne chemical signals by plants can trigger reconfigurations of their metabolism that alter their biotic interactions. While plant-to-plant chemical communication has primarily been studied in the context of eliciting defenses to herbivores and pathogens, recent work suggests that it can also affect plants’ interactions with their rhizosphere microbiomes. In this perspective, we discuss the potential for integrating the fields of plant-to-plant communication and microbial ecology to understand the chemical ecology of plant−microbiome interactions. As an introduction for microbial ecologists, we highlight mechanistic knowledge gaps in plant volatile organic compound (VOC) perception and provide recommendations for avoiding common experimental errors that have plagued the plant communication field. Lastly, we discuss potential implications of plant VOCs structuring rhizosphere microbiomes, particularly effects on plant community and evolutionary dynamics. As we continue to discover links between plant metabolism and their microbiomes—from molecular to community scales—we hope that this perspective will provide both motivation and words of caution for researchers working at the intersection of these two fields.

摘要

植物对空气化学信号的感知可以触发其代谢的重新配置,从而改变它们的生物相互作用。虽然植物间的化学通讯主要是在研究如何引发对草食动物和病原体的防御机制,但最近的研究表明,它也可以影响植物与其根际微生物组的相互作用。在这个观点中,我们讨论了整合植物间通讯和微生物生态学领域的潜力,以了解植物-微生物组相互作用的化学生态学。作为微生物生态学家的入门介绍,我们强调了植物挥发性有机化合物(VOC)感知的机制知识差距,并提供了避免困扰植物通讯领域的常见实验错误的建议。最后,我们讨论了植物 VOC 构建根际微生物组的潜在影响,特别是对植物群落和进化动态的影响。随着我们继续从分子到群落尺度发现植物代谢与其微生物组之间的联系,我们希望这个观点将为在这两个领域交叉工作的研究人员提供动力和警示。