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Sorghum Expressed Sequence Tags Identify Signature Genes for Drought Pathogenesis and Skotomorphogenesis from a Milestone Set of 16801 Unique Transcripts

机译:高粱表达的序列标签从里程碑集16801个独特的转录本中识别干旱发病机制和拟形态发生的签名基因

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摘要

Improved knowledge of the sorghum transcriptome will enhance basic understanding of how plants respond to stresses and serve as a source of genes of value to agriculture. Toward this goal, Sorghum bicolor L. Moench cDNA libraries were prepared from light- and dark-grown seedlings, drought-stressed plants, Colletotrichum-infected seedlings and plants, ovaries, embryos, and immature panicles. Other libraries were prepared with meristems from Sorghum propinquum (Kunth) Hitchc. that had been photoperiodically induced to flower, and with rhizomes from S. propinquum and johnsongrass (Sorghum halepense L. Pers.). A total of 117,682 expressed sequence tags (ESTs) were obtained representing both 3′ and 5′ sequences from about half that number of cDNA clones. A total of 16,801 unique transcripts, representing tentative UniScripts (TUs), were identified from 55,783 3′ ESTs. Of these TUs, 9,032 are represented by two or more ESTs. Collectively, these libraries were predicted to contain a total of approximately 31,000 TUs. Individual libraries, however, were predicted to contain no more than about 6,000 to 9,000, with the exception of light-grown seedlings, which yielded an estimate of close to 13,000. In addition, each library exhibits about the same level of complexity with respect to both the number of TUs preferentially expressed in that library and the frequency with which two or more ESTs is found in only that library. These results indicate that the sorghum genome is expressed in highly selective fashion in the individual organs and in response to the environmental conditions surveyed here. Close to 2,000 differentially expressed TUs were identified among the cDNA libraries examined, of which 775 were differentially expressed at a confidence level of 98%. From these 775 TUs, signature genes were identified defining drought, Colletotrichum infection, skotomorphogenesis (etiolation), ovary, immature panicle, and embryo.
机译:对高粱转录组的进一步了解将增强人们对植物如何应对压力以及作为农业价值基因来源的基本了解。为了实现这一目标,从浅色和深色生长的幼苗,干旱胁迫的植物,受炭疽菌感染的幼苗和植物,卵巢,胚胎和未成熟的圆锥花序中制备了高粱双色L. Moench cDNA文库。其他库是用来自高粱(Kunth)Hitchc的分生组织制备的。被光周期诱导开花,并带有来自S. propinquum和Johnsongrass(高粱halepense L. Pers。)的根茎。从大约一半的cDNA克隆中获得了总共117,682个表达的序列标签(EST),它们代表3'和5'序列。从55,783个3'EST中鉴定出总共16,801个代表临时UniScript(TU)的独特转录本。在这些TU中,有9,032个由两个或多个EST代表。预计这些库总共包含大约31,000 TU。但是,单个库预计包含不超过6,000到9,000个,轻种苗除外,后者估计接近13,000。另外,关于在该库中优先表达的TU数量和仅在该库中发现两个或多个EST的频率,每个库都表现出大约相同的复杂度。这些结果表明,高粱基因组以高度选择性的方式在各个器官中表达,并响应此处调查的环境条件。在所检查的cDNA文库中鉴定出近2,000个差异表达的TU,其中有775个差异表达的TU的置信度为98%。从这775个TU中,鉴定出标志性基因,这些基因定义了干旱,炭疽菌感染,变态发生(雌黄化),卵巢,未成熟的圆锥花序和胚胎。

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