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根结线虫 Meloidogyne incognita 对拟南芥根信号的转录变化。

Transcriptional changes of the root-knot nematode Meloidogyne incognita in response to Arabidopsis thaliana root signals.

机构信息

Rothamsted Research, Harpenden, Herts, United Kingdom.

出版信息

PLoS One. 2013 Apr 12;8(4):e61259. doi: 10.1371/journal.pone.0061259. Print 2013.

Abstract

Root-knot nematodes are obligate parasites that invade roots and induce the formation of specialized feeding structures. Although physiological and molecular changes inside the root leading to feeding site formation have been studied, very little is known about the molecular events preceding root penetration by nematodes. In order to investigate the influence of root exudates on nematode gene expression before plant invasion and to identify new genes potentially involved in parasitism, sterile root exudates from the model plant Arabidopsis thaliana were produced and used to treat Meloidogyne incognita pre-parasitic second-stage juveniles. After confirming the activity of A. thaliana root exudates (ARE) on M. incognita stylet thrusting, six new candidate genes identified by cDNA-AFLP were confirmed by qRT-PCR as being differentially expressed after incubation for one hour with ARE. Using an in vitro inoculation method that focuses on the events preceding the root penetration, we show that five of these genes are differentially expressed within hours of nematode exposure to A. thaliana roots. We also show that these genes are up-regulated post nematode penetration during migration and feeding site initiation. This study demonstrates that preceding root invasion plant-parasitic nematodes are able to perceive root signals and to respond by changing their behaviour and gene expression.

摘要

根结线虫是专性寄生生物,它们会入侵植物根系并诱导形成专门的取食结构。尽管已经研究了导致形成取食部位的根系内部的生理和分子变化,但对于线虫穿透根系之前的分子事件知之甚少。为了研究根系分泌物在植物侵染前对线虫基因表达的影响,并鉴定可能参与寄生的新基因,我们从模式植物拟南芥中产生了无菌根分泌物并用其处理拟南芥根结线虫的预寄生 2 龄幼虫。在确认拟南芥根分泌物(ARE)对根结线虫刺探行为的活性后,我们通过 qRT-PCR 确认了 cDNA-AFLP 鉴定的六个新候选基因在孵育 1 小时后表达水平有差异。通过一种关注根穿透前事件的体外接种方法,我们发现这 5 个基因在线虫暴露于拟南芥根系数小时内表达水平有差异。我们还发现这些基因在线虫迁移和取食部位起始后,在穿透根后被上调表达。本研究表明,在根穿透之前,植物寄生线虫能够感知根信号,并通过改变其行为和基因表达来做出响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f5b/3625231/ca1d20d90317/pone.0061259.g001.jpg

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