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转录组和代谢组分析揭示了外源尿囊素诱导水稻耐盐性的复杂分子机制。

Transcriptome and Metabolome Analyses Reveal Complex Molecular Mechanisms Involved in the Salt Tolerance of Rice Induced by Exogenous Allantoin.

作者信息

Wang Juan, Li Yingbo, Wang Yinxiao, Du Fengping, Zhang Yue, Yin Ming, Zhao Xiuqin, Xu Jianlong, Yang Yongqing, Wang Wensheng, Fu Binying

机构信息

Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

College of Life Sciences, China Agricultural University, Beijing 100193, China.

出版信息

Antioxidants (Basel). 2022 Oct 18;11(10):2045. doi: 10.3390/antiox11102045.

Abstract

Allantoin is crucial for plant growth and development as well as adaptations to abiotic stresses, but the underlying molecular mechanisms remain unclear. In this study, we comprehensively analyzed the physiological indices, transcriptomes, and metabolomes of rice seedlings following salt, allantoin, and salt + allantoin treatments. The results revealed that exogenous allantoin positively affects the salt tolerance by increasing the contents of endogenous allantoin with antioxidant activities, increasing the reactive oxygen species (ROS)-scavenging capacity, and maintaining sodium and potassium homeostasis. The transcriptome analysis detected the upregulated expression genes involved in ion transport and redox regulation as well as the downregulated expression of many salt-induced genes related to transcription and post-transcriptional regulation, carbohydrate metabolism, chromosome remodeling, and cell wall organization after the exogenous allantoin treatment of salt-stressed rice seedlings. Thus, allantoin may mitigate the adverse effects of salt stress on plant growth and development. Furthermore, a global metabolite analysis detected the accumulation of metabolites with antioxidant activities and intermediate products of the allantoin biosynthetic pathway in response to exogenous allantoin, implying allantoin enhances rice salt tolerance by inducing ROS scavenging cascades. These results have clarified the transcript-level and metabolic processes underlying the allantoin-mediated salt tolerance of rice.

摘要

尿囊素对植物生长发育以及适应非生物胁迫至关重要,但其潜在的分子机制仍不清楚。在本研究中,我们全面分析了盐、尿囊素以及盐 + 尿囊素处理后水稻幼苗的生理指标、转录组和代谢组。结果表明,外源尿囊素通过增加具有抗氧化活性的内源性尿囊素含量、提高活性氧(ROS)清除能力以及维持钠钾稳态,对耐盐性产生积极影响。转录组分析检测到,在外源尿囊素处理盐胁迫水稻幼苗后,参与离子转运和氧化还原调节的基因表达上调,而许多与转录和转录后调节、碳水化合物代谢、染色体重塑以及细胞壁组织相关的盐诱导基因表达下调。因此,尿囊素可能减轻盐胁迫对植物生长发育的不利影响。此外,全局代谢物分析检测到,响应外源尿囊素,具有抗氧化活性的代谢物以及尿囊素生物合成途径的中间产物积累,这意味着尿囊素通过诱导ROS清除级联反应增强水稻耐盐性。这些结果阐明了尿囊素介导水稻耐盐性的转录水平和代谢过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cad/9598814/80d1cc69429d/antioxidants-11-02045-g001.jpg

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