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棉花液泡H⁺-ATP酶亚基C基因GhDET3的克隆与表达分析

Cloning and expression analysis of GhDET3, a vacuolar H+ -ATPase subunit C gene, from cotton.

作者信息

Xiao Zhongyi, Tan Kunling, Hu Mingyu, Liao Peng, Chen Kuijun, Luo Ming

机构信息

Key Laboratory of Biotechnology and Crop Quality Improvement, Ministry of Agriculture; Biotechnology Research Center, Southwest University, Chongqing 400716, China.

出版信息

J Genet Genomics. 2008 May;35(5):307-12. doi: 10.1016/S1673-8527(08)60044-2.

Abstract

Vacuolar H(+)-ATPase was regarded as a key enzyme promoting the fiber cell elongation in cotton (Gossypium hirsuturm L.) through regulating turgor-driven pressure involved in polarity expansion of single cell fiber. The DET3, a V-ATPase subunit C, plays an important role in assembling subunits and regulating the enzyme activity, and is involved in Brassinosteroid-induced cell elongation. To analyze the function of GhDET3 on the elongation of cotton fibers, seven candidates of ESTs were screened and contigged for a 5'-upstream sequence, and the 3'-RACE technique was used to clone the 3'-downstream sequence for the full length of GhDET3 gene. The full length of the target clone was 1,340 bp, including a 10 bp 5'-UTR, an ORF of 1,134 bp, and a 196 bp 3'-UTR. This cDNA sequence encoded a polypeptide of 377 amino acid residues with a predicted molecular mass of 43 kDa and a basic isoelectric point of 5.58. Furthermore, a length of 3,410 bp sequence from genomic DNA of GhDET3 was also cloned by PCR. The deduced amino acid sequence had a high homology with DET3 from Arabidopsis, rice, and maize. Quantitative real-time PCR (qRT-PCR) analysis showed that the GhDET3 expression pattern was ubiquitous in all the tissues and organs detected. The result also revealed that the accumulation of GhDET3 mRNA reached the highest profile at the fiber elongation stage in 12 DPA (days post anthesis) fibers, compared with the lowest level at the fiber initiation stage in 0 DPA ovules (with fibers). The transcript accumulation in fibers and ovules shared the similar variation tendency. In addition, in vitro ovule culture experiment demonstrated that exogenous 24-EBL treatment to 4 DPA ovules (with fibers) was capable of increasing the expression level of GhDET3, and the mRNA accumulation of GhDET3 increased in transgenic FBP7::GhDET2 cotton fibers in vivo. These results indicate that GhDET3 gene plays a crucial role in cotton fiber elongation.

摘要

液泡H(+)-ATP酶被认为是通过调节参与单细胞纤维极性扩展的膨压驱动压力来促进棉花(陆地棉)纤维细胞伸长的关键酶。DET3是V-ATP酶亚基C,在亚基组装和调节酶活性方面发挥重要作用,并参与油菜素内酯诱导的细胞伸长。为了分析GhDET3对棉花纤维伸长的功能,筛选了7个EST候选序列并拼接成5'-上游序列,采用3'-RACE技术克隆GhDET3基因全长的3'-下游序列。目标克隆的全长为1340 bp,包括10 bp的5'-UTR、1134 bp的开放阅读框和196 bp的3'-UTR。该cDNA序列编码一个由377个氨基酸残基组成的多肽,预测分子量为43 kDa,碱性等电点为5.58。此外,还通过PCR从GhDET3的基因组DNA中克隆了一段3410 bp的序列。推导的氨基酸序列与拟南芥、水稻和玉米的DET3具有高度同源性。实时定量PCR(qRT-PCR)分析表明,GhDET3在所有检测的组织和器官中均普遍表达。结果还显示,与0 DPA胚珠(带纤维)纤维起始阶段的最低水平相比,GhDET3 mRNA的积累在12 DPA(开花后天数)纤维伸长阶段达到最高水平。纤维和胚珠中的转录本积累具有相似的变化趋势。此外;体外胚珠培养实验表明,对4 DPA胚珠(带纤维)进行外源24-EBL处理能够提高GhDET3的表达水平,并且在体内转基因FBP7::GhDET2棉花纤维中GhDET3的mRNA积累增加。这些结果表明,GhDET3基因在棉花纤维伸长中起关键作用。

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