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Construction and EST sequencing of full-length, drought stress cDNA libraries for common beans (Phaseolus vulgaris L.)

机译:普通豆(Phaseolus vulgaris L.)全长干旱胁迫cDNA文库的构建和EST测序

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Background Common bean is an important legume crop with only a moderate number of short expressed sequence tags (ESTs) made with traditional methods. The goal of this research was to use full-length cDNA technology to develop ESTs that would overlap with the beginning of open reading frames and therefore be useful for gene annotation of genomic sequences. The library was also constructed to represent genes expressed under drought, low soil phosphorus and high soil aluminum toxicity. We also undertook comparisons of the full-length cDNA library to two previous non-full clone EST sets for common bean. Results Two full-length cDNA libraries were constructed: one for the drought tolerant Mesoamerican genotype BAT477 and the other one for the acid-soil tolerant Andean genotype G19833 which has been selected for genome sequencing. Plants were grown in three soil types using deep rooting cylinders subjected to drought and non-drought stress and tissues were collected from both roots and above ground parts. A total of 20,000 clones were selected robotically, half from each library. Then, nearly 10,000 clones from the G19833 library were sequenced with an average read length of 850 nucleotides. A total of 4,219 unigenes were identified consisting of 2,981 contigs and 1,238 singletons. These were functionally annotated with gene ontology terms and placed into KEGG pathways. Compared to other EST sequencing efforts in common bean, about half of the sequences were novel or represented the 5' ends of known genes. Conclusions The present full-length cDNA libraries add to the technological toolbox available for common bean and our sequencing of these clones substantially increases the number of unique EST sequences available for the common bean genome. All of this should be useful for both functional gene annotation, analysis of splice site variants and intron/exon boundary determination by comparison to soybean genes or with common bean whole-genome sequences. In addition the library has a large number of transcription factors and will be interesting for discovery and validation of drought or abiotic stress related genes in common bean.
机译:背景技术普通豆是一种重要的豆类作物,仅具有传统方法制成的中等数量的短表达序列标签(EST)。这项研究的目的是使用全长cDNA技术开发与开放阅读框的开头重叠的EST,因此可用于基因组序列的基因注释。该文库还被构建为代表在干旱,低土壤磷和高土壤铝毒性下表达的基因。我们还进行了全长cDNA文库与普通豆两个先前非完整克隆EST集的比较。结果构建了两个全长cDNA文库:一个用于耐旱的中美洲基因型BAT477,另一个用于耐酸碱的安第斯基因型G19833,已被选用于基因组测序。使用经受干旱和非干旱胁迫的深根圆筒在三种土壤类型上种植植物,并从根部和地上部分收集组织。机器人自动选择了20,000个克隆,每个文库的一半。然后,对G19833文库中的近10,000个克隆进行了测序,平均读取长度为850个核苷酸。共鉴定出4,219个单基因,包括2,981个重叠群和1,238个单子。这些都用基因本体术语进行功能注释,并置于KEGG途径中。与普通Bean的其他EST测序工作相比,大约一半的序列是新序列或代表已知基因的5'末端。结论当前的全长cDNA文库增加了普通豆可用的技术工具箱,我们对这些克隆的测序大大增加了普通豆基因组可用的独特EST序列的数量。通过与大豆基因或普通豆全基因组序列进行比较,所有这些功能对于功能基因注释,剪接位点变异分析和内含子/外显子边界确定均应有用。此外,该文库具有大量转录因子,对于发现和验证普通豆中与干旱或非生物胁迫相关的基因将是有趣的。

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