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陆地棉中一个花特异性III类过氧化物酶基因的分子克隆与特性分析

Molecular cloning and characterization of a flower-specific class III peroxidase gene in G. hirsutum.

作者信息

Chen Dongyan, Ding Yezhang, Guo Wangzhen, Zhang Tianzhen

机构信息

National Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing, Jiangsu Province, PR China.

出版信息

Mol Biol Rep. 2009 Mar;36(3):461-9. doi: 10.1007/s11033-007-9202-3. Epub 2007 Dec 23.

Abstract

A fundamental focus of plant biology is to understand the relationship between flowering and plant reproduction, but it is also of practical interest in agriculture. To investigate the genes involved in flowering, reproduction and male sterility, DDRT-PCR was performed in vegetative and reproductive tissues of the cotton genic male sterile line LangA. A 683 bp partial peroxidase cDNA was amplified from cotton (G. hirsutum) pollen, using degenerate oligonucleotide primers and arbitrary primers in DDRT-PCR. The full-length cDNA clone, designated Ghpod (cDNA GenBank accession number: EU196676), was isolated using 5'-RACE strategy and a partial 5'-UTR was isolated applying TAIL-PCR. Ghpod was characterized as a mature 330 amino acid protein, containing all evolutionarily conserved residues present in different members of the plant peroxidase family. The molecular mass of this unprocessed and unmodified deduced protein was estimated to be 35.54 kDa, and the pI value was 4.34. According to the Ghpod protein localization prediction by PSORT, Ghpod may be secreted extracellularly. Unlike other cotton class III peroxidases, Ghpod was expressed exclusively in reproductive organs, particularly pollen. A genomic DNA fragment encoding Ghpod was also cloned and fully sequenced, revealing a "three intron" structural organization in a category of genes belonging to a normal class III plant secretory peroxidase. In conclusion, the flower-specific expression of Ghpod, predominantly in pollen, suggested that the peroxidase is involved in the male reproductive processes of angiosperms.

摘要

植物生物学的一个基本重点是了解开花与植物繁殖之间的关系,但这在农业中也具有实际意义。为了研究参与开花、繁殖和雄性不育的基因,在棉花基因雄性不育系朗A的营养组织和生殖组织中进行了DDRT-PCR。在DDRT-PCR中,使用简并寡核苷酸引物和随机引物从棉花(陆地棉)花粉中扩增出一个683 bp的部分过氧化物酶cDNA。利用5'-RACE策略分离出全长cDNA克隆,命名为Ghpod(cDNA GenBank登录号:EU196676),并应用TAIL-PCR分离出部分5'-UTR。Ghpod被鉴定为一种成熟的330个氨基酸的蛋白质,包含植物过氧化物酶家族不同成员中所有进化上保守的残基。该未加工和未修饰的推导蛋白质的分子量估计为35.54 kDa,pI值为4.34。根据PSORT对Ghpod蛋白的定位预测,Ghpod可能分泌到细胞外。与其他棉花III类过氧化物酶不同,Ghpod仅在生殖器官中表达,特别是在花粉中。还克隆并对编码Ghpod的基因组DNA片段进行了全序列测定,揭示了属于正常III类植物分泌过氧化物酶的一类基因中的“三个内含子”结构组织。总之,Ghpod在花中特异性表达,主要在花粉中,表明该过氧化物酶参与被子植物的雄性生殖过程。

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