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木葡聚糖内转糖基酶/水解酶基因对棉纤维伸长的调控

Regulation of cotton fiber elongation by xyloglucan endotransglycosylase/hydrolase genes.

作者信息

Shao M Y, Wang X D, Ni M, Bibi N, Yuan S N, Malik W, Zhang H P, Liu Y X, Hua S J

机构信息

Department of Agronomy, Zhejiang University, Hangzhou, PR China.

出版信息

Genet Mol Res. 2011 Oct 27;10(4):3771-82. doi: 10.4238/2011.October.27.1.

Abstract

Ligon lintless mutant (li1li1) with super-short fibers (5-8 mm in length) and its wild type (Li1Li1) with normal fibers (30 mm in length) were used to study the function of xyloglucan endotransglycosylase/hydrolase (XTH) genes during fiber elongation in cotton. Wild-type cotton attained the fiber elongation stage earlier (5 days post-anthesis, DPA), than the Ligon lintless mutant (12 DPA) with a higher fiber elongation velocity of about 1.76 mm/day. Xyloglucan contents in Ligon lintless mutant fibers were 5-fold higher than the wild type during 9-15 DPA. It was also observed that the activity of XTH in wild-type cotton fibers was about 2-fold higher than that of the Ligon lintless mutant with a peak at 12 DPA. DNA blot analysis indicated that the XTH gene in the Ligon lintless mutant and its wild type belonged to a multiple allelic series. However, RNA blot analysis and quantitative real-time PCR exhibited an earlier expression (10 DPA) of XTH in wild type as compared to delayed (15 DPA) expression in the Ligon lintless mutant. The study also revealed that 9-15 DPA might be a key phase for upregulation of fiber elongation via increasing XTH activity. Higher XTH activity can cleave down the xyloglucan-cellulose chains thus loosening fiber cell wall and promoting fiber cell elongation in wild type as compared to its mutant.

摘要

利用纤维超短(长度为5 - 8毫米)的无绒棉突变体(li1li1)及其纤维正常(长度为30毫米)的野生型(Li1Li1),研究木葡聚糖内转糖基酶/水解酶(XTH)基因在棉花纤维伸长过程中的功能。野生型棉花比无绒棉突变体更早进入纤维伸长阶段(开花后5天,DPA),且其纤维伸长速度更高,约为1.76毫米/天(无绒棉突变体在开花后12天进入纤维伸长阶段)。在9 - 15天的开花后天数期间,无绒棉突变体纤维中的木葡聚糖含量比野生型高5倍。还观察到,野生型棉花纤维中XTH的活性比无绒棉突变体高约2倍,在开花后12天达到峰值。DNA印迹分析表明,无绒棉突变体及其野生型中的XTH基因属于一个复等位基因系列。然而,RNA印迹分析和定量实时PCR显示,与无绒棉突变体延迟表达(开花后15天)相比,野生型中XTH的表达更早(开花后10天)。该研究还表明,9 - 15天的开花后天数可能是通过增加XTH活性上调纤维伸长的关键阶段。与突变体相比,野生型中较高的XTH活性可切割木葡聚糖 - 纤维素链,从而使纤维细胞壁松弛并促进纤维细胞伸长。

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