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生理和转录组学分析为柳树应对钴胁迫提供了新的见解。

Physiological and transcriptomic analysis provide novel insight into cobalt stress responses in willow.

机构信息

College of Biological Sciences and Biotechnology, Beijing Forestry University, Beijing, 100083, China.

Umeå Plant Science Centre, Department of Plant Physiology, Umeå University, SE 901 87, Umeå, Sweden.

出版信息

Sci Rep. 2020 Feb 11;10(1):2308. doi: 10.1038/s41598-020-59177-y.

Abstract

Cobalt (Co) is an essential component of several enzymes and coenzymes in living organisms. Excess Co is highly toxic to plants. The knowledge of molecular response mechanisms to cobalt stress in plants is still limited, especially in woody plants. The responses of weeping willow (Salix babylonica) seedlings to Co stress were studied using morphological and physiochemical measurements and RNA-seq analysis. The physiological and biochemical indexes such as growth rate, the content of chlorophyll and soluble sugar, photosynthesis and peroxidase activity were all changed in willow seedlings under Co stress. The metal ion concentrations in willow including Cu, Zn and Mg were disturbed due to excess Co. Of 2002 differentially expressed genes (DEGs), 1165 were root-specific DEGs and 837 were stem and leaf-specific DEGs. Further analysis of DEGs showed there were multiple complex cascades in the response network at the transcriptome level under Co stress. Detailed elucidation of responses to oxidative stress, phytohormone signaling-related genes and transcription factors (TFs), and detoxification of excess cellular Co ion indicated the various defense mechanisms in plants respond to cobalt stress. Our findings provide new and comprehensive insights into the plant tolerance to excess Co stress.

摘要

钴(Co)是生物体中几种酶和辅酶的必需组成部分。过量的钴对植物有剧毒。目前,植物对钴胁迫的分子响应机制的知识仍然有限,特别是在木本植物中。本研究采用形态学、生理生化指标和 RNA-seq 分析,研究了垂柳(Salix babylonica)幼苗对 Co 胁迫的响应。Co 胁迫下柳树幼苗的生长速度、叶绿素和可溶性糖含量、光合作用和过氧化物酶活性等生理生化指标均发生变化。由于过量的 Co,柳树中的金属离子浓度(如 Cu、Zn 和 Mg)受到干扰。在 2002 个差异表达基因(DEGs)中,1165 个是根特异 DEGs,837 个是茎和叶特异 DEGs。对 DEGs 的进一步分析表明,在 Co 胁迫下,转录组水平的响应网络中存在多个复杂的级联。对与氧化应激、植物激素信号转导相关基因和转录因子(TFs)以及过量细胞 Co 离子解毒相关基因的详细阐明表明,植物的各种防御机制对钴胁迫有响应。本研究结果为植物耐受过量 Co 胁迫提供了新的全面认识。

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