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本文引用的文献

1
Plant Growth-Promoting Rhizobacterial Mediated Protection in Tomato Against Tomato mottle virus.植物促生根际细菌介导的番茄对番茄斑驳病毒的保护作用
Plant Dis. 2000 Jul;84(7):779-784. doi: 10.1094/PDIS.2000.84.7.779.
2
Plants respond to pathogen infection by enhancing the antifungal gene expression of root-associated bacteria.植物通过增强与根系相关的细菌的抗真菌基因表达来应对病原体感染。
Mol Plant Microbe Interact. 2011 Mar;24(3):352-8. doi: 10.1094/MPMI-09-10-0208.
3
Airborne induction and priming of plant defenses against a bacterial pathogen.空气传播诱导和启动植物防御抵御细菌病原体。
Plant Physiol. 2009 Dec;151(4):2152-61. doi: 10.1104/pp.109.144782. Epub 2009 Oct 7.
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Regulation and function of root exudates.根系分泌物的调控与功能
Plant Cell Environ. 2009 Jun;32(6):666-81. doi: 10.1111/j.1365-3040.2008.01926.x.
5
Root-secreted malic acid recruits beneficial soil bacteria.根系分泌的苹果酸能吸引有益土壤细菌。
Plant Physiol. 2008 Nov;148(3):1547-56. doi: 10.1104/pp.108.127613. Epub 2008 Sep 26.
6
Long-distance signalling in plant defence.植物防御中的长距离信号传导。
Trends Plant Sci. 2008 Jun;13(6):264-72. doi: 10.1016/j.tplants.2008.03.005. Epub 2008 May 17.
7
Indirect defence via tritrophic interactions.通过三级营养相互作用的间接防御。
New Phytol. 2008;178(1):41-61. doi: 10.1111/j.1469-8137.2007.02330.x. Epub 2007 Dec 15.
8
Pseudomonas-induced defence molecules in rice plants against leaffolder (Cnaphalocrocis medinalis) pest.水稻植株中由假单胞菌诱导产生的抗稻纵卷叶螟(Cnaphalocrocis medinalis)害虫的防御分子。
Pest Manag Sci. 2007 Jul;63(7):714-21. doi: 10.1002/ps.1381.
9
The plant immune system.植物免疫系统。
Nature. 2006 Nov 16;444(7117):323-9. doi: 10.1038/nature05286.
10
Linking aboveground and belowground interactions via induced plant defenses.通过诱导植物防御将地上与地下相互作用联系起来。
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从叶到根的呼救:地上的昆虫取食会招募根际微生物来保护植物免受随后的多种攻击。

A cry for help from leaf to root: above ground insect feeding leads to the recruitment of rhizosphere microbes for plant self-protection against subsequent diverse attacks.

机构信息

Laboratory of Microbial Genomics, Industrial Biotechnology and Bioenergy Research Center, Daejeon, South Korea.

出版信息

Plant Signal Behav. 2011 Aug;6(8):1192-4. doi: 10.4161/psb.6.8.15780. Epub 2011 Aug 1.

DOI:10.4161/psb.6.8.15780
PMID:21822064
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3260719/
Abstract

Plants have evolved general and specific defense mechanisms to protect themselves from diverse enemies, including herbivores and pathogens. To maintain fitness in the presence of enemies, plant defense mechanisms are aimed at inducing systemic resistance: in response to the attack of pathogens or herbivores, plants initiate extensive changes in gene expression to activate "systemic acquired resistance" against pathogens and "indirect defense" against herbivores. Recent work revealed that leaf infestation by whiteflies, stimulated systemic defenses against both an airborne pathogen and a soil-borne pathogen, which was confirmed by the detection of the systemic expression of pathogenesis-related genes in response to salicylic acid and jasmonic acid-signaling pathway activation. Further investigation revealed that plants use self protection mechanisms against subsequent herbivore attacks by recruiting beneficial microorganisms called plant growth-promoting rhizobacteria/fungi, which are capable of reducing whitefly populations. Our results provide new evidence that plant-mediated aboveground to belowground communication and vice versa are more common than expected.

摘要

植物已经进化出了一般和特定的防御机制来保护自己免受各种敌人的侵害,包括食草动物和病原体。为了在有敌人存在的情况下保持适应性,植物防御机制旨在诱导系统性抗性:植物对病原体或食草动物的攻击做出反应,启动广泛的基因表达变化,以激活对病原体的“系统获得性抗性”和对食草动物的“间接防御”。最近的研究表明,粉虱对叶片的侵害会刺激对空气传播病原体和土壤传播病原体的系统性防御,这可以通过检测到与水杨酸和茉莉酸信号通路激活相关的与发病机制相关的基因的系统性表达来证实。进一步的研究表明,植物通过招募有益的微生物(称为植物促生根际细菌/真菌)来利用自我保护机制来抵御随后的食草动物的攻击,这些微生物能够降低粉虱的数量。我们的研究结果提供了新的证据,表明植物介导的地上到地下的通讯以及反之亦然比预期的更为常见。