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首页> 外文期刊>American Journal of Potato Research >Adaptation of Potato to High Temperatures and Salinity - A Review
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Adaptation of Potato to High Temperatures and Salinity - A Review

机译:马铃薯对高温和盐分的适应性研究进展

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摘要

Because most commercial potato cultivars were developed in temperate regions, they are adapted, therefore producing the greatest yield under long photoperi-ods and moderate temperatures. Both heat and salinity stress reduce yield markedly. As potato production moves to areas of the globe where either or both heat and salinity stress are likely to be factors that affect production, our need increases for potato germplasm that can tolerate these adverse conditions. Genetic studies on germplasm variability have revealed species or even cultivars of potato that can resist abiotic stress. The inheritance of abiotic stress resistance is likely to be multigenic, a factor that may limit the utility of trans-genie approaches to stress tolerance. However, thedevelopment of new methodology, such as association genetics in conjunction with marker-assisted selection, offers promise that stress-tolerant germplasm can be developed as our need increases.
机译:由于大多数商品化马铃薯栽培品种都在温带地区开发,因此它们可以适应气候变化,因此在较长的光周期和适中的温度下产量最高。热量和盐分胁迫均显着降低产量。随着马铃薯生产移至全球范围内,热量和盐分胁迫或两者都可能成为影响产量的因素,我们对可忍受这些不利条件的马铃薯种质的需求增加。有关种质变异性的遗传研究表明,马铃薯具有抗非生物胁迫的物种甚至栽培品种。非生物胁迫抗性的遗传很可能是多基因的,这可能会限制转基因方法对胁迫耐受性的实用性。然而,新方法的发展,例如关联遗传学与标记辅助选择的结合,提供了可以随着我们需求的增长而发展耐胁迫种质的希望。

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