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首页> 外文期刊>Functional & integrative genomics >Linkage of cold acclimation and disease resistance through plant-pathogen interaction pathway in Vitis amurensis grapevine
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Linkage of cold acclimation and disease resistance through plant-pathogen interaction pathway in Vitis amurensis grapevine

机译:植物病原菌互作途径的冷适应与抗病性的联系

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摘要

Low temperatures cause severe damage to none cold hardy grapevines. A preliminary survey with Solexa sequencing technology was used to analyze gene expression profiles of cold hardy Vitis amurensis 'Zuoshan-1' after cold acclimation at 4 A degrees C for 48 h. A total of 16,750 and 18,068 putative genes were annotated for 4 A degrees C-treated and control library, respectively. Among them, 393 genes were upregulated for at least 20-fold, while 69 genes were downregulated for at least 20-fold under the 4 A degrees C treatment for 48 h. A subset of 101 genes from this survey was investigated further using reverse transcription polymerase chain reaction (RT-PCR). Genes associated with signaling events in pathogen-associated molecular pattern (PAMP)-triggered immunity (PTI), including generation of calcium signals (CNGC, CMLs), jasmonic acid signal (JAZ1), oxidative burst (Rboh), and phosphorylation (FLS2, BAK, MEKK1, MKKs) cascades, were upregulated after cold acclimation. Disease resistance genes (RPM1, RPS5, RIN4, PBS1) in the process of effector-triggered immunity (ETI) were also upregulated in the current condition. Defense-related genes (WRKYs, PR1, MIN7) involved in both PTI and ETI processes were abundantly expressed after cold acclimation. Our results indicated that plant-pathogen interaction pathways were linked to the cold acclimation in V. amurensis grapevine. Other biotic- and abiotic-related genes, such as defense (protein phosphatase 2C, U-box domain proteins, NCED1, stilbene synthase), transcription (DREBs, MYBs, ERFs, ZFPs), signal transduction (kinase, calcium, and auxin signaling), transport (ATP-binding cassette (ABC) transporters, auxin:hydrogen symporter), and various metabolism, were also abundantly expressed in the cold acclimation of V. Amurensis 'Zuoshan-1' grapevine. This study revealed a series of critical genes and pathways to delineate important biological processes affected by low temperature in 'Zuoshan-1'.
机译:低温会对耐寒的葡萄藤造成严重损害。利用Solexa测序技术进行初步调查,以分析在4 A摄氏度下进行48 h的冷驯化后的冷耐寒葡萄“ Zuoshan-1”的基因表达谱。对于经4 A C处理和对照的文库,分别注释了总共16750个和18068个假定的基因。其中,在4 A摄氏度处理48小时后,393个基因被上调了至少20倍,而69个基因被下调了至少20倍。使用逆转录聚合酶链反应(RT-PCR)进一步研究了该调查的101个基因的子集。与病原体相关分子模式(PAMP)触发的免疫(PTI)触发信号事件相关的基因,包括钙信号的产生(CNGC,CML),茉莉酸信号(JAZ1),氧化爆发(Rboh)和磷酸化(FLS2,冷驯化后,BAK,MEKK1,MKKs级联反应被上调。在当前条件下,效应触发免疫(ETI)过程中的疾病抗性基因(RPM1,RPS5,RIN4,PBS1)也被上调。冷驯化后大量参与了PTI和ETI过程的与防御相关的基因(WRKYs,PR1,MIN7)表达。我们的结果表明,植物-病原体的相互作用途径与V. amurensis葡萄的冷驯化有关。其他生物和非生物相关基因,例如防御(蛋白质磷酸酶2C,U-box域蛋白,NCED1,二苯乙烯合成酶),转录(DREB,MYB,ERF,ZFP),信号转导(激酶,钙和生长素信号传导) ),运输(ATP结合盒(ABC)转运蛋白,植物生长素:氢同向转运蛋白)和各种新陈代谢,在V.Amurensis'Zuoshan-1'葡萄的冷驯化中也大量表达。这项研究揭示了一系列关键基因和途径来描绘“左山-1”中受低温影响的重要生物过程。

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