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Xyloglucan endotransglycosylase/hydrolase genes in cotton and their role in fiber elongation

机译:棉花木葡聚糖内转糖基化酶/水解酶基因及其在纤维伸长中的作用

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摘要

Plant cell wall extensibility is mediated, in part, by xyloglucan endotransglycosylases/hydrolases (XTH) that are able to cleave and reattach xyloglucan polymers that make up the hemicelluloses matrix of type I cell walls. In Arabidopsis and other plants, XTHs are encoded by relatively large gene families that are regulated in specific spatial and temporal patterns. In silico screening of a cotton expressed sequence tag (EST) database identified 23 sequences with close sequence similarity to Arabidopsis XTH coding sequences. Analysis of full-length cotton cDNAs derived from these ESTs allow for the identification of three distinct GhXTH cDNAs (denoted GhXTH1, GhXTH2 and GhXTH3) based primarily on their 3′ untranslated sequences. The three GhXTH genes were expressed differently with GhXTH1 predominantly expressed in elongating cotton fibers. The function of GhXTH1 in mediating cotton fiber elongation was analyzed in transgenic cotton plants that express a transgene consisting of the GhXTH1 coding sequence under transcriptional control of the CaMV 35S promoter. Plants that over-expressed GhXTH1 had increased XTH activity and produced mature cotton fibers that were between 15 and 20% longer than wild-type cotton plants under both greenhouse and field growth conditions. Segregation analysis showed that the 35S::GhXTH1 transgene acts as a dominant fiber length allele in transgenic cotton. These results confirm that GhXTH1 is the predominant XTH in elongating fibers and its expression limits cotton fiber elongation.
机译:植物细胞壁的延伸性部分地由木葡聚糖内切糖基化酶/水解酶(XTH)介导,所述木糖葡聚糖内切糖基化酶/水解酶能够切割并重新附着构成I型细胞壁的半纤维素基质的木葡聚糖聚合物。在拟南芥和其他植物中,XTH由相对较大的基因家族编码,这些家族以特定的时空模式调控。在计算机上筛选棉花表达序列标签(EST)数据库时,鉴定出23个与拟南芥XTH编码序列具有相似序列相似性的序列。从这些EST衍生的全长棉花cDNA的分析可以主要基于其3'非翻译序列来鉴定三个不同的GhXTH cDNA(表示为GhXTH1,GhXTH2和GhXTH3)。三个GhXTH基因的表达与GhXTH1主要在延长的棉纤维中表达不同。在转基因棉花植物中分析了GhXTH1在介导棉花纤维伸长中的功能,该植物表达在CaMV 35S启动子的转录控制下由GhXTH1编码序列组成的转基因。在温室和田间生长条件下,过量表达GhXTH1的植物具有更高的XTH活性,并且产生的成熟棉纤维比野生型棉植物长15%至20%。分离分析表明,35S :: GhXTH1转基因在转基因棉花中作为主要的纤维长度等位基因。这些结果证实,GhXTH1是伸长纤维中的主要XTH,其表达限制了棉纤维的伸长。

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