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Integrating genes and phenotype: a wheat-Arabidopsis-rice glycosyltransferase database for candidate gene analyses

机译:整合基因和表型:小麦-拟南芥-水稻糖基转移酶数据库,用于候选基因分析

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摘要

Glycosyltransferases (GTs) constitute a very large multi-gene superfamily, containing several thousand members identified in sequenced organisms especially in plants. GTs are key enzymes involved in various biological processes such as cell wall formation, storage polysaccharides biosynthesis, and glycosylation of various metabolites. GTs have been identified in rice (Oryza sativa) and Arabidopsis thaliana, but their precise function has been demonstrated biochemically for only a few. In this work we have established a repertoire of virtually all the wheat (Triticum aestivum) GT sequences, using the large publicly available banks of expressed sequences. Based on sequence similarity with Arabidopsis and rice GTs compiled in the carbohydrate active enzyme database (CAZY), we have identified and classified these wheat sequences. The results were used to feed a searchable database available on the web (http://wwwappli.nantes.inra.fr:8180/GTIDB http://wwwappli.nantes.inra.fr:8180/GTIDB" ) that can be used for initiating an exhaustive candidate gene survey in wheat applied to a particular biological process. This is illustrated through the identification of GT families which are expressed during cell wall formation in wheat grain maturation.
机译:糖基转移酶(GTs)构成了一个非常大的多基因超家族,其中包含数千个在测序生物中,尤其是植物中鉴定的成员。 GTs是参与各种生物过程(如细胞壁形成,储存多糖的生物合成以及各种代谢物的糖基化)的关键酶。在水稻和拟南芥中均已鉴定出GTs,但仅在生化方面证明了其精确的功能。在这项工作中,我们使用了大型的公开表达序列库,建立了几乎所有小麦(Triticum aestivum)GT序列的库。基于与碳水化合物活性酶数据库(CAZY)中编译的拟南芥和水稻GT的序列相似性,我们鉴定并分类了这些小麦序列。结果被用于提供可用于网络(http://wwwappli.nantes.inra.fr:8180/GTIDB http://wwwappli.nantes.inra.fr:8180/GTIDB“)的可搜索数据库。通过在小麦籽粒成熟过程中细胞壁形成过程中表达的GT家族的鉴定来说明在特定生物过程中启动小麦的详尽候选基因调查的方法。

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