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Managing plant-environment-symbiont interactions to promote plant performance under low temperature stress

机译:管理植物环境 - Symbiont相互作用,以促进低温胁迫下的植物性能

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摘要

Low-temperature stresses, also referred to as cold temperature stresses, including chilling and freezing temperatures, are among the major abiotic stresses that severely reduce plant yield, quality, and marketability and pose a serious threat to plant production during whole plant life cycles. Plant-environment-symbiont interactions determine the symbiotic and crop performance and tolerance to biotic and abiotic stresses. To achieve the optimum outcome, it is essential to consider not only plant-symbiont relationships, but also symbiont adaptation and symbiont-symbiont interactions under changing environmental conditions and different plant growth stages. Improving multi-symbiotic component systems and symbiont breeding together can be a useful strategy to improve symbiosis and, thus, crop production. In this review article, the role of interactions between multi-symbiotic components and plant-environment-symbiont relationships and the related biotechnology approaches are discussed in order to find the most effective sustainable and environmentally friendly agricultural practices to improve crop performance and mitigate the adverse effects of low temperatures on plants.
机译:低温胁迫,也称为寒冷的温度胁迫,包括冷却和冷冻温度,是严重降低植物产量,质量和可销售性的主要非生物胁迫之一,并对整个植物生命周期进行严重威胁到植物生产。植物环境 - 共生相互作用决定了生物和非生物胁迫的共生和作物的性能和耐受性。为了实现最佳结果,不仅需要考虑植物 - 共生关系,还必须考虑改变环境条件和不同植物生长阶段的Symbiont适应和Symbiont-Symbiont相互作用。改善多共生成分系统和共生育种可以是改善共生的有用策略,从而产生作物生产。在这篇审查文章中,讨论了多共生成分和植物环境 - 共生关系与相关生物技术方法之间的相互作用的作用,以寻找最有效的可持续和环保的农业实践,以改善作物绩效并减轻不利影响植物的低温。

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