首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Physiological and Proteomic Responses of Mulberry Trees (Morus alba. L.) to Combined Salt and Drought Stress
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Physiological and Proteomic Responses of Mulberry Trees (Morus alba. L.) to Combined Salt and Drought Stress

机译:桑树对盐和干旱胁迫的生理和蛋白质组学响应

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摘要

Intensive investigations have been conducted on the effect of sole drought or salinity stress on the growth of plants. However, there is relatively little knowledge on how plants, particularly woody species, respond to a combination of these two stresses although these stresses can simultaneously occur in the field. In this study, mulberry, an economically important resource for traditional medicine, and the sole food of domesticated silkworms was subjected to a combination of salt and drought stress and analyzed by physiological methods and TMT-based proteomics. Stressed mulberry exhibited significant alteration in physiological parameters, including root/shoot ratio, chlorophyll fluorescence, total carbon, and ion reallocation. A total of 577 and 270 differentially expressed proteins (DEPs) were identified from the stressed leaves and roots, respectively. Through KEGG analysis, these DEPs were assigned to multiple pathways, including carbon metabolism, photosynthesis, redox, secondary metabolism, and hormone metabolism. Among these pathways, the sucrose related metabolic pathway was distinctly enriched in both stressed leaves and roots, indicating an important contribution in mulberry under stress condition. The results provide a comprehensive understanding of the adaptive mechanism of mulberry in response to salt and drought stress, which will facilitate further studies on innovations in terms of crop performance.
机译:已经对单一干旱或盐分胁迫对植物生长的影响进行了深入研究。但是,关于植物,尤其是木本物种如何应对这两种压力的组合的知识相对很少,尽管这些压力可能在田地同时发生。在这项研究中,对桑树(一种传统医学上具有重要经济意义的资源)以及家蚕的唯一食物进行了盐分和干旱胁迫的组合,并通过生理方法和基于TMT的蛋白质组学进行了分析。胁迫的桑physiological在生理参数上表现出显着变化,包括根/茎比,叶绿素荧光,总碳和离子再分配。从受胁迫的叶和根中分别鉴定出总共577和270个差异表达蛋白(DEP)。通过KEGG分析,将这些DEP分配到多个途径,包括碳代谢,光合作用,氧化还原,二次代谢和激素代谢。在这些途径中,蔗糖相关的代谢途径在胁迫的叶和根中均明显富集,表明在胁迫条件下桑树具有重要作用。研究结果提供了对桑树适应盐和干旱胁迫的适应机制的全面理解,这将有助于进一步研究作物性能方面的创新。

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