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中国长江口潮滩梯度上种群的生理生态响应

Ecophysiological responses of populations to a tidal flat gradient in the Yangtze River Estuary, China.

作者信息

Jia Jing, Zhao Xiaochao, Jia Peng, Zhang Xin, Li Dezhi, Liu Yongfeng, Huang Liping

机构信息

East China Normal University, Shanghai, China.

GeneMind Biosciences, Shenzhen, China.

出版信息

Front Plant Sci. 2024 Apr 30;15:1326345. doi: 10.3389/fpls.2024.1326345. eCollection 2024.

Abstract

is a prevalent species in the Chongming Dongtan wetland and is capable of thriving in various tidal flat environments, including high salinity habitats. population displays inconsistent ecological performances, highlighting the need to uncover their survival strategies and mechanisms in tidal flats with diverse soil salinities. Upon comparing functional traits of at multiple tidal flats (low, middle, and high) and their responses to soil physicochemical properties, this study aimed to clarify the salt-tolerant strategy of and the corresponding mechanisms. These results showed that leaf characteristics, such as specific leaf area and leaf dry matter content, demonstrated more robust stability to soil salinity than shoot height and dry weight. Furthermore, as salt stress intensified, the activities of superoxide dismutase (SOD), catalase (CAT) and peroxisome (POD) in leaves at low tidal flat exhibited an increased upward trend compared to those at other tidal flats. The molecular mechanism of salt tolerance in across various habitats was investigated using transcriptome sequencing. Weighted correlation network analysis (WGCNA) combined with differentially expressed genes (DEGs) screened out 3 modules closely related to high salt tolerance and identified 105 core genes crucial for high salt tolerance. Further research was carried out on the few degraded populations at low tidal flat, and 25 core genes were identified by combining WGCNA and DEGs. A decrease in the activity of ferroptosis marker gonyautoxin-4 and an increase in the content of Fe in the degenerated group were observed, indicating that ferroptosis might participate in degradation. Furthermore, correlation analysis indicated a possible regulatory network between salt tolerance and ferroptosis. In short, this study provided new insights into the salt tolerance mechanism of population along tidal flats.

摘要

是崇明东滩湿地的优势物种,能够在包括高盐度栖息地在内的各种潮滩环境中茁壮成长。其种群表现出不一致的生态性能,凸显了揭示它们在不同土壤盐度潮滩中的生存策略和机制的必要性。通过比较多个潮滩(低、中、高)的功能性状及其对土壤理化性质的响应,本研究旨在阐明该物种的耐盐策略及相应机制。这些结果表明,叶特性,如比叶面积和叶干物质含量,对土壤盐度的稳定性比株高和干重更强。此外,随着盐胁迫加剧,低潮滩该物种叶片中的超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和过氧化物酶(POD)活性与其他潮滩相比呈现出上升趋势。利用转录组测序研究了该物种在不同栖息地的耐盐分子机制。加权基因共表达网络分析(WGCNA)结合差异表达基因(DEGs)筛选出3个与高耐盐性密切相关的模块,并鉴定出105个对高耐盐性至关重要的核心基因。对低潮滩少数退化种群进行了进一步研究,通过结合WGCNA和DEGs鉴定出25个核心基因。观察到退化组中细胞铁死亡标志物石房蛤毒素-4活性降低,铁含量增加,表明细胞铁死亡可能参与退化过程。此外,相关性分析表明耐盐性与细胞铁死亡之间可能存在调控网络。简而言之,本研究为潮滩沿线该物种种群的耐盐机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df06/11097105/718e1ccecfc6/fpls-15-1326345-g001.jpg

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