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首页> 外文期刊>Journal of Experimental Botany >Analysis of cellulose synthase genes from domesticated apple identifies collinear genes WDR53 and CesA8A: partial co-expression, bicistronic mRNA, and alternative splicing of CESA8A.
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Analysis of cellulose synthase genes from domesticated apple identifies collinear genes WDR53 and CesA8A: partial co-expression, bicistronic mRNA, and alternative splicing of CESA8A.

机译:对来自家养苹果的纤维素合酶基因的分析确定了共线基因WDR53和CesA8A:部分共表达,双顺反子mRNA和CESA8A的可变剪接。

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Cellulose synthase (CesA) genes constitute a complex multigene family with six major phylogenetic clades in angiosperms. The recently sequenced genome of domestic apple, Malus x domestica, was mined for CesA genes, by blasting full-length cellulose synthase protein (CESA) sequences annotated in the apple genome against protein databases from the plant models Arabidopsis thaliana and Populus trichocarpa. Thirteen genes belonging to the six angiosperm CesA clades and coding for proteins with conserved residues typical of processive glycosyltransferases from family 2 were detected. Based on their phylogenetic relationship to Arabidopsis CESAs, as well as expression patterns, a nomenclature is proposed to facilitate further studies. Examination of their genomic organization revealed that MdCesA8-A is closely linked and co-oriented with WDR53, a gene coding for a WD40 repeat protein. The WDR53 and CesA8 genes display conserved collinearity in dicots and are partially co-expressed in the apple xylem. Interestingly, the presence of a bicistronic WDR53-CesA8A transcript was detected in phytoplasma-infected phloem tissues of apple. The bicistronic transcript contains a spliced intergenic sequence that is predicted to fold into hairpin structures typical of internal ribosome entry sites, suggesting its potential cap-independent translation. Surprisingly, the CesA8A cistron is alternatively spliced and lacks the zinc-binding domain. The possible roles of WDR53 and the alternatively spliced CESA8 variant during cellulose biosynthesis in M. x domestica are discussed.
机译:纤维素合酶(CesA)基因组成一个复杂的多基因家族,在被子植物中有六个主要的系统发育进化枝。针对植物模型拟南芥和毛果杨的蛋白质数据库,通过对苹果基因组中注释的全长纤维素合酶蛋白(CESA)序列进行爆破,为CesA基因挖掘了国内苹果最近测序的基因组。检测到属于六个被子植物CesA进化枝的13个基因,该基因编码带有保守残基的蛋白质,这些残基典型地来自家族2的过程性糖基转移酶。基于它们与拟南芥CESA的系统发育关系以及表达模式,提出了一个命名法以促进进一步的研究。对他们的基因组组织的检查表明,MdCesA8-A与WDR53(一种编码WD40重复蛋白的基因)紧密相连并共同定向。 WDR53和CesA8基因在双子叶植物中显示保守的共线性,并且在苹果木质部中部分共表达。有趣的是,在苹果的植原体感染的韧皮部组织中检测到双顺反子WDR53-CesA8A转录本的存在。双顺反子转录物包含一个剪接的基因间序列,预计将折叠成内部核糖体进入位点的典型发夹结构,表明其潜在的不依赖帽的翻译。令人惊讶地,CesA8A顺反子被选择性剪接并且缺乏锌结合域。讨论了WDR53和选择性剪接的CESA8变体在家蝇(M. x domestica)纤维素生物合成过程中的可能作用。

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