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首页> 外文期刊>Asian Journal of Agriculture and Biology >GENETIC IMPROVEMENT OF CANOLA AGAINST ABIOTIC STRESS THROUGH INCORPORATION OF DREB GENE
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GENETIC IMPROVEMENT OF CANOLA AGAINST ABIOTIC STRESS THROUGH INCORPORATION OF DREB GENE

机译:通过掺入DREB基因来改良卡诺拉对生物胁迫的遗传改良

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Salinity, sodicity, drought and water logging are serious problems of agriculture in Pakistan that add to poverty in the country. Pakistan, in spite of being a large agricultural country, imports huge amounts of edible oil. Brassica species in general, have good agronomic characteristics and under favorable conditions can give reasonable yields; however, under stress conditions their productivity is severely compromised. The main focus of this study is to develop salt and drought tolerant germplasm of Brassica napus var. wester by incorporating DREB gene that induces expression of stress tolerance genes which ultimately result in salt and drought tolerance of the variety. The paper describes the successful incorporation of DREB factor into Brassica napus var. wester genome that does seem to have regulated the expression of stress inducible genes as evidenced by increased content of proline in transformed plants when subjected to high salt level.
机译:盐碱化,干旱,干旱和涝灾是巴基斯坦农业的严重问题,加剧了该国的贫困。巴基斯坦尽管是一个农业大国,但仍进口了大量的食用油。芸苔属植物一般具有良好的农艺特性,在有利的条件下可提供合理的产量;然而,在压力条件下,它们的生产率严重受损。这项研究的主要重点是开发甘蓝型油菜的耐盐和耐旱种质。通过掺入诱导胁迫耐受性基因表达的DREB基因来实现韦斯特分离,最终导致该品种对盐和干旱的耐受性。本文描述了将DREB因子成功整合到甘蓝型油菜中的成功案例。韦斯特基因组似乎已经调节了胁迫诱导基因的表达,这在高盐水平下可通过转化植物中脯氨酸含量的增加来证明。

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