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首页> 外文期刊>Current opinion in biotechnology >Salt resistant crop plants. (Special Issue: Food Biotechnology (edited by Koffas, M. A. G. & Marienhagen, J.) and Plant Biotechnology (edited by Moller, B. L. & Ratcliffe, R. G.).)
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Salt resistant crop plants. (Special Issue: Food Biotechnology (edited by Koffas, M. A. G. & Marienhagen, J.) and Plant Biotechnology (edited by Moller, B. L. & Ratcliffe, R. G.).)

机译:抗盐作物。 (特刊:食品生物技术(由Koffas,M. A. G.和Marienhagen,J.编辑)和植物生物技术(由Moller,B. L.&Ratcliffe,R. G.编辑)。)

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摘要

Soil salinity is a major constraint to agriculture. To improve salinity tolerance of crops, various traits can be incorporated, including ion exclusion, osmotic tolerance and tissue tolerance. We review the roles of a range of genes involved in salt tolerance traits. Different tissues and cells are adapted for specific and often diverse function, so it is important to express the genes in specific cell-types and to pyramid a range of traits. Modern biotechnology (marker-assisted selection or genetic engineering) needs to be increasingly used to introduce the correct combination of genes into elite crop cultivars. Importantly, the effects of introduced genes need to be evaluated in the field to determine their effect on salinity tolerance and yield improvement.
机译:土壤盐分是农业的主要制约因素。为了提高农作物的耐盐性,可以结合各种特性,包括离子排斥,渗透性耐性和组织耐性。我们审查了一系列与耐盐性状有关的基因的作用。不同的组织和细胞适合于特定的功能(通常是多样化的功能),因此以特定的细胞类型表达基因并形成一系列特征非常重要。现代生物技术(标记辅助选择或基因工程)需要越来越多地用于将基因的正确组合引入优良作物品种。重要的是,需要在现场评估引入基因的作用,以确定它们对盐度耐受性和产量提高的影响。

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