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Marine drugs. 2025 May 8;23(5):203. doi: 10.3390/md23050203 Q14.92024

Metabolic Responses of Pyropia haitanensis to Dehydration-Rehydration Cycles Revealed by Metabolomics

基于代谢组学的海苔(Pyropia haitanensis)干湿循环代谢响应研究 翻译改进

Jian Wen  1  2  3, Jianzhi Shi  1  2  3, Muhan Meng  1  2  3, Kai Xu  1  2  3, Yan Xu  1  2  3, Dehua Ji  1  2  3, Wenlei Wang  1  2  3, Chaotian Xie  1  2  3

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作者单位

  • 1 Fisheries College, Jimei University, Xiamen 361021, China.
  • 2 Fujian Engineering Research Center of Aquatic Breeding and Healthy Aquaculture, Xiamen 361021, China.
  • 3 State Key Laboratory of Mariculture Breeding, Fisheries College, Jimei University, Ningde 352100, China.
  • DOI: 10.3390/md23050203 PMID: 40422793

    摘要 中英对照阅读

    Pyropia haitanensis (T.J. Chang and B.F. Zheng) undergoes periodic dehydration and rehydration cycles, necessitating robust adaptive mechanisms. Despite extensive research on its physiological responses to desiccation stress, the comprehensive metabolic pathways and recovery mechanisms post-rehydration remain poorly understood. This study investigated the metabolic responses of P. haitanensis to varying degrees of desiccation stress using LC-MS and UPLC-MS/MS. Under mild dehydration, the thallus primarily accumulated sugars and proline, while moderate and severe dehydration triggered the accumulation of additional osmoprotectants like alanine betaine and trehalose to maintain turgor pressure and water retention. Concurrently, the alga activated a potent antioxidant system, including enzymes and non-enzymatic antioxidants, to counteract the increased reactive oxygen species levels and prevent oxidative damage. Hormonal regulation also plays a crucial role in stress adaptation, with salicylic acid and jasmonic acid upregulating under mild dehydration and cytokinins and gibberellin GA15 accumulating under severe stress. Rehydration triggered the recovery process, with indole acetic acid, abscisic acid, and jasmonic acid promoting rapid cell recovery. Additionally, arachidonic acid, acting as a signaling molecule, induced general stress resistance, facilitating the adaptation of the thallus to the dynamic intertidal environment. These findings reveal P. haitanensis' metabolic adaptation strategies in intertidal environments, with implications for enhancing cultivation and stress resistance in this economically important seaweed.

    Keywords: LC-MS based metabolomics; Pyropia haitanensis; antioxidant system; desiccation tolerance; osmotic adjustment; plant hormones; rehydration.

    Keywords:Pyropia haitanensis; dehydration-rehydration cycles; metabolomics

    Pyropia haitanensis(T.J. Chang 和 B.F. Zheng)经历周期性的脱水和再水化循环,需要强大的适应机制。尽管对其对干燥胁迫的生理反应进行了广泛研究,但其全面的代谢途径及再水化后的恢复机制仍不清楚。本研究利用 LC-MS 和 UPLC-MS/MS 研究了 P. haitanensis 对不同程度脱水压力的代谢响应。在轻度脱水情况下,叶状体主要积累糖类和脯氨酸;而中度和重度脱水则触发额外渗透保护剂如甜菜碱和海藻糖的累积,以维持膨压和水分保留。同时,该藻激活了一套强大的抗氧化系统,包括酶和非酶抗氧化物质,以对抗增加的活性氧水平并防止氧化损伤。激素调节在压力适应中也发挥重要作用,在轻度脱水条件下,水杨酸和茉莉酸上调;而在重度压力下,细胞分裂素和赤霉素 GA15 积累。再水化触发了恢复过程,吲哚乙酸、脱落酸和茉莉酸促进快速的细胞恢复。此外,花生四烯酸作为信号分子,诱导了一般的胁迫抵抗性,有助于叶状体适应动态潮间带环境。P. haitanensis 在潮间带环境中的代谢适应策略揭示了其经济重要海藻栽培和抗逆境能力提升的潜在途径。

    关键词:基于 LC-MS 的代谢组学;Pyropia haitanensis;抗氧化系统;脱水耐受性;渗透调节;植物激素;再水化。

    关键词:_pyropia haitanensis_; 脱水-复水循环; 代谢组学

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    期刊名:Marine drugs

    缩写:MAR DRUGS

    ISSN:1660-3397

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    IF/分区:4.9/Q1

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