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首页> 外文期刊>Comptes rendus. Biologies >Rapid identification of potential drought tolerance genes from Solanum tuberosum by using a yeast functional screening method.
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Rapid identification of potential drought tolerance genes from Solanum tuberosum by using a yeast functional screening method.

机译:通过使用酵母功能筛选方法快速鉴定马铃薯的潜在耐旱基因。

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摘要

Identification of major stress tolerance genes of a crop plant is important for the rapid development of its stress-tolerant cultivar. Here, we used a yeast functional screen method to identify potential drought-tolerance genes from a potato plant. A cDNA expression library was constructed from hyperosmotic stressed potato plants. The yeast transformants expressing different cDNAs were selected for their ability to survive in hyperosmotic stress conditions. The relative tolerances of the selected yeast transformants to multiple abiotic stresses were also studied. Specific potato cDNAs expressed in the tolerant yeast transformants were identified. Sixty-nine genes were found capable of enhancing hyperosmotic stress tolerance of yeast. Based on the relative tolerance data generated, 12 genes were selected, which could be most effective in imparting higher drought tolerance to potato with better survival in salt and high-temperature stresses. Orthologues of few genes identified here are previously known to increase osmotic stress tolerance of yeast and plants; however, specific studies are needed to confirm their role in the osmotic stress tolerance of potato.
机译:鉴定作物植物的主要胁迫耐受性基因对于其胁迫耐受性品种的快速发展很重要。在这里,我们使用酵母功能筛选方法从马铃薯植株中鉴定潜在的耐旱基因。从高渗胁迫的马铃薯植物构建cDNA表达文库。选择表达不同cDNA的酵母转化体,以使其在高渗胁迫条件下存活的能力。还研究了所选酵母转化体对多种非生物胁迫的相对耐受性。鉴定了在耐性酵母转化体中表达的特定马铃薯cDNA。发现有69个基因能够增强酵母的高渗胁迫耐受性。根据产生的相对耐受性数据,选择了12个基因,它们可能最有效地赋予马铃薯更高的耐旱性,并在盐和高温胁迫下具有更好的存活率。以前已知在此鉴定出的几个基因的直向同源物可增加酵母和植物的渗透胁迫耐受性。但是,需要进行具体的研究以确认其在马铃薯的渗透胁迫耐性中的作用。

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