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首页> 外文期刊>Genes & Genetic Systems >Identification of salt-induced genes from Salicornia brachiata, an extreme halophyte through expressed sequence tags analysis
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Identification of salt-induced genes from Salicornia brachiata, an extreme halophyte through expressed sequence tags analysis

机译:通过表达序列标签分析鉴定盐生植物盐芥的盐诱导基因

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References(49) Cited-By(27) Salinity severely affects plant growth and development causing crop loss worldwide. We have isolated a large number of salt-induced genes as well as unknown and hypothetical genes from Salicornia brachiata Roxb. (Amaranthaceae). This is the first description of identification of genes in response to salinity stress in this extreme halophyte plant. Salicornia accumulates salt in its pith and survives even at 2 M NaCl under field conditions. For isolating salt responsive genes, cDNA subtractive hybridization was performed between control and 500 mM NaCl treated plants. Out of the 1200 recombinant clones, 930 sequences were submitted to the NCBI database (GenBank accession: EB484528 to EB485289 and EC906125 to EC906292). 789 ESTs showed matching with different genes in NCBI database. 4.8% ESTs belonged to stress-tolerant gene category and approximately 29% ESTs showed no homology with known functional gene sequences, thus classified as unknown or hypothetical. The detection of a large number of ESTs with unknown putative function in this species makes it an interesting contribution. The 90 unknown and hypothetical genes were selected to study their differential regulation by reverse Northern analysis for identifying their role in salinity tolerance. Interestingly, both up and down regulation at 500 mM NaCl were observed (21 and 10 genes, respectively). Northern analysis of two important salt tolerant genes, ASR1 (Abscisic acid stress ripening gene) and plasma membrane H+ATPase, showed the basal level of transcripts in control condition and an increase with NaCl treatment. ASR1 gene is made full length using 5’ RACE and its potential role in imparting salt tolerance is being studied.
机译:参考文献(49)被引用(27)盐度严重影响植物的生长发育,导致世界范围内的农作物损失。我们从腕带Salicornia brachiata Roxb中分离了许多盐诱导的基因以及未知和假设的基因。 (A菜科)。这是这种极端盐生植物中响应盐分胁迫的基因鉴定的首次描述。 Salicornia在髓中积累盐分,即使在野外条件下甚至在2 M NaCl中也能生存。为了分离盐反应性基因,在对照和500mM NaCl处理的植物之间进行cDNA减性杂交。在1200个重组克隆中,有930个序列已提交给NCBI数据库(GenBank登录号:EB484528至EB485289,EC906125至EC906292)。 789个ESTs在NCBI数据库中显示出与不同基因的匹配。 4.8%的ESTs属于耐压基因类别,大约29%的ESTs与已知的功能基因序列没有同源性,因此分类为未知或假设的。在该物种中检测到大量具有未知推定功能的EST使其成为一个有趣的贡献。选择了90个未知和假设的基因,通过反向Northern分析研究其差异调节,以鉴定其在盐度耐受性中的作用。有趣的是,观察到在500 mM NaCl上调和下调(分别为21和10个基因)。对两个重要的耐盐基因ASR1(脱落酸胁迫成熟基因)和质膜H + ATPase的Northern分析显示,对照条件下转录本的基础水平随NaCl处理而增加。使用5'RACE将ASR1基因全长,目前正在研究其在赋予耐盐性中的潜在作用。

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