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首页> 外文期刊>BMC Plant Biology >Identification of tissue-specific, abiotic stress-responsive gene expression patterns in wine grape (Vitis vinifera L.) based on curation and mining of large-scale EST data sets
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Identification of tissue-specific, abiotic stress-responsive gene expression patterns in wine grape (Vitis vinifera L.) based on curation and mining of large-scale EST data sets

机译:根据大型EST数据集的整理和挖掘,确定酿酒葡萄(Vitis vinifera L.)中组织特异性的非生物胁迫响应基因表达模式

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Background Abiotic stresses, such as water deficit and soil salinity, result in changes in physiology, nutrient use, and vegetative growth in vines, and ultimately, yield and flavor in berries of wine grape, Vitis vinifera L. Large-scale expressed sequence tags (ESTs) were generated, curated, and analyzed to identify major genetic determinants responsible for stress-adaptive responses. Although roots serve as the first site of perception and/or injury for many types of abiotic stress, EST sequencing in root tissues of wine grape exposed to abiotic stresses has been extremely limited to date. To overcome this limitation, large-scale EST sequencing was conducted from root tissues exposed to multiple abiotic stresses. Results A total of 62,236 expressed sequence tags (ESTs) were generated from leaf, berry, and root tissues from vines subjected to abiotic stresses and compared with 32,286 ESTs sequenced from 20 public cDNA libraries. Curation to correct annotation errors, clustering and assembly of the berry and leaf ESTs with currently available V. vinifera full-length transcripts and ESTs yielded a total of 13,278 unique sequences, with 2302 singletons and 10,976 mapped to V. vinifera gene models. Of these, 739 transcripts were found to have significant differential expression in stressed leaves and berries including 250 genes not described previously as being abiotic stress responsive. In a second analysis of 16,452 ESTs from a normalized root cDNA library derived from roots exposed to multiple, short-term, abiotic stresses, 135 genes with root-enriched expression patterns were identified on the basis of their relative EST abundance in roots relative to other tissues. Conclusions The large-scale analysis of relative EST frequency counts among a diverse collection of 23 different cDNA libraries from leaf, berry, and root tissues of wine grape exposed to a variety of abiotic stress conditions revealed distinct, tissue-specific expression patterns, previously unrecognized stress-induced genes, and many novel genes with root-enriched mRNA expression for improving our understanding of root biology and manipulation of rootstock traits in wine grape. mRNA abundance estimates based on EST library-enriched expression patterns showed only modest correlations between microarray and quantitative, real-time reverse transcription-polymerase chain reaction (qRT-PCR) methods highlighting the need for deep-sequencing expression profiling methods.
机译:背景非生物胁迫(例如水分不足和土壤盐分)会导致葡萄藤的生理变化,养分利用和营养生长,最终导致酿酒葡萄(Vitis vinifera L)浆果的产量和风味。大规模表达的序列标签( ESTs)的产生,整理和分析,以鉴定引起压力适应性反应的主要遗传决定因素。尽管根部成为许多类型的非生物胁迫的感知和/或伤害的首要场所,但迄今为止,暴露于非生物胁迫的酿酒葡萄根部组织中的EST测序极为有限。为了克服这一限制,从暴露于多种非生物胁迫的根部组织进行了大规模EST测序。结果从遭受非生物胁迫的葡萄树的叶子,浆果和根组织中产生了总共62,236个表达序列标签(EST),并与从20个公共cDNA文库中测序的32,286个EST进行了比较。纠正注解错误,使用当前可用的葡萄树全长转录本和EST对浆果和叶EST进行聚类和组装的处理产生了总共13,278个独特序列,其中2302个单子和10,976个映射到了V. vinifera基因模型。其中,发现739个转录本在受胁迫的叶子和果实中具有明显的差异表达,包括先前未描述为非生物胁迫响应的250个基因。在对来自暴露于多种短期非生物胁迫的根的归一化根cDNA文库的16,452个EST进行的第二次分析中,根据根中相对于其他根的相对EST丰度,鉴定了135个具有根富集表达模式的基因组织。结论暴露于多种非生物胁迫条件下的酿酒葡萄叶片,浆果和根组织的23种不同cDNA文库的不同集合中,对EST相对频率的计数进行了大规模分析,揭示了以前无法识别的独特的组织特异性表达模式。胁迫诱导的基因,以及许多具有富含根的mRNA表达的新基因,可增进我们对酿酒葡萄根生物学和根茎性状的了解。基于EST库富集的表达模式的mRNA丰度估计表明,微阵列与定量,实时逆转录聚合酶链反应(qRT-PCR)方法之间仅存在适度的相关性,从而凸显了对深度测序表达谱分析方法的需求。

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