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Climatic changes and potatoes: How can we cope with the abiotic stresses?

机译:气候变化和土豆:我们如何应对非生物胁迫?

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Climate change triggers increases in temperature, drought, and/or salinity that threaten potato production, because they necessitate specific amounts and quality of water, meanwhile lower temperatures generally support stable crop yields. Various cultivation techniques have been developed to reduce the negative effects of drought, heat and/or salinity stresses on potato. Developing innovative varieties with relevant tolerance to abiotic stress is absolutely necessary to guarantee competitive production under sub-optimal environments. Commercial varieties are sensitive to abiotic stresses, and substantial changes to their higher tolerance levels are not easily achieved because their genetic base is narrow. Nonetheless, there are several other possibilities for genetic enhancement using landraces and wild relatives. The complexity of polysomic genetics and heterozygosity in potato hamper the phenotype evaluation over abiotic stresses and consequent conventional introgression of tolerance traits, which are more challenging than previous successes shown over diseases and insects resistances. Today, potatoes face more challenges with severe abiotic stresses. Potato wild relatives can be explored further using innovative genomic, transcriptomic, proteomic, and metabolomic approaches. At the field level, appropriate cultivation techniques must be applied along with precision farming technology and tolerant varieties developed from various breeding techniques, in order to realize high yield under multiple stresses.
机译:气候变化触发器的温度,干旱和/或盐度增加,威胁马铃薯生产,因为它们需要特定的量和水的水,同时较低的温度通常支持稳定的作物产量。已经开发出各种栽培技术,以减少土豆盐的干旱,热和/或盐度应力的负面影响。在次最优环境下,绝对必要,在潜在的环境下制定具有相关耐性胁迫的创新品种。商业品种对非生物胁迫敏感,因为它们的遗传碱狭窄,不容易实现其较高耐受性水平的大量变化。尽管如此,遗传增强的其他可能性使用车站和野生亲属的其他可能性。 Potato遗传学和杂合性的复杂性阻碍了非生物胁迫的表型评估,随之而来的耐受性传统的常规,这比以前的疾病和昆虫抗性的成功更具挑战性。今天,土豆面临着严重的非生物胁迫的更多挑战。可以进一步使用创新的基因组,转录组,蛋白质组学和代谢物方法进一步探索马铃薯野生亲属。在现场等级,必须与各种育种技术产生的精密养殖技术和耐腐害品种一起应用适当的栽培技术,以实现多重应力下的高产量。

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