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鉴定和转录谱分析与黄瓜抗霜霉病相关的差异表达基因。

Identification and transcriptional profiling of differentially expressed genes associated with resistance to Pseudoperonospora cubensis in cucumber.

机构信息

Key Laboratory of Horticultural Plant Biology, Huazhong Agricultural University, Ministry of Education, Wuhan, 430070 Hubei, China.

出版信息

Plant Cell Rep. 2011 Mar;30(3):345-57. doi: 10.1007/s00299-010-0959-9. Epub 2010 Dec 9.

DOI:10.1007/s00299-010-0959-9
PMID:21153027
Abstract

To identify genes induced during Pseudoperonospora cubensis (Berk. and Curk.) Rostov. infection in cucumber (Cucumis sativus L.), the suppression subtractive hybridization (SSH) was performed using mixed cDNAs prepared from cucumber seedlings inoculated with the pathogen as a tester and cDNA from uninfected cucumber seedlings as a driver. A forward subtractive cDNA library (FSL) and a reverse subtractive cDNA library (RSL) were constructed, from which 1,416 and 1,128 recombinant clones were isolated, respectively. Differential screening of the preferentially expressed recombinant clones identified 58 unique expressed sequence tags (ESTs) from FSL and 29 from RSL. The ESTs with significant protein homology were sorted into 13 functional categories involved in nearly the whole process of plant defense such as signal transduction and cell defense, transcription, cell cycle and DNA processing, protein synthesis, protein fate, proteins with binding functions, transport, metabolism and energy. The expressions of twenty-five ESTs by real-time quantitative RT-PCR confirmed that differential gene regulation occurred during P. cubensis infection and inferred that higher and earlier expression of transcription factors and signal transduction associated genes together with ubiquitin/proteasome and polyamine biosynthesis pathways may contribute to the defense response of cucumber to P. cubensis infection. The transcription profiling of selected down-regulated genes revealed that suppression of the genes in reactive oxygen species scavenging system and photosynthesis pathway may inhibit disease development in the host tissue.

摘要

为了鉴定黄瓜疫霉菌(Berk. and Curk.)感染过程中诱导的基因,采用抑制性消减杂交(SSH)技术,以接种病原菌的黄瓜幼苗混合 cDNA 作为测试子,未感染的黄瓜幼苗 cDNA 作为驱动子,构建了正向消减 cDNA 文库(FSL)和反向消减 cDNA 文库(RSL)。分别从文库中分离出 1416 个和 1128 个重组克隆。对差异表达克隆的筛选,从 FSL 中鉴定出 58 个独特的表达序列标签(EST),从 RSL 中鉴定出 29 个。具有显著蛋白同源性的 EST 被归类为 13 个功能类别,几乎涉及植物防御的全过程,如信号转导和细胞防御、转录、细胞周期和 DNA 处理、蛋白质合成、蛋白质命运、具有结合功能的蛋白质、运输、代谢和能量。通过实时定量 RT-PCR 对 25 个 EST 的表达验证,证实了 P. cubensis 感染过程中的差异基因调控,并推断转录因子和信号转导相关基因以及泛素/蛋白酶体和多胺生物合成途径的较高和较早表达可能有助于黄瓜对 P. cubensis 感染的防御反应。对选定下调基因的转录谱分析表明,对活性氧清除系统和光合作用途径基因的抑制可能会抑制宿主组织中的病害发展。

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