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国家级大连刺参原种场核心区生态环境质量和微生物群落结构周年变化及其相关性分析

朱晓彤 施国军 荣小军 李彬 王印庚 葛建龙 廖梅杰 王锦锦 吴岩强 赵欣涛

渔业科学进展2025,Vol.46Issue(1):1-14,14.
渔业科学进展2025,Vol.46Issue(1):1-14,14.DOI:10.19663/j.issn2095-9869.20240123001

国家级大连刺参原种场核心区生态环境质量和微生物群落结构周年变化及其相关性分析

Annual Changes in the Ecological Environment and Microbial Community Structure and Their Correlation Analyses in the Core Area of Dalian National Sea Cucumber Stock Field of China

朱晓彤 1施国军 2荣小军 3李彬 3王印庚 3葛建龙 3廖梅杰 3王锦锦 3吴岩强 4赵欣涛4

作者信息

  • 1. 大连海洋大学 辽宁 大连 116023||海水养殖生物育种与可持续产出全国重点实验室(中国水产科学研究院黄海水产研究所)山东 青岛 266071
  • 2. 东营市河口区科学技术局 山东 东营 257200
  • 3. 海水养殖生物育种与可持续产出全国重点实验室(中国水产科学研究院黄海水产研究所)山东 青岛 266071
  • 4. 大连棒棰岛海产股份有限公司 辽宁 大连 116699
  • 折叠

摘要

Abstract

Aquatic stock is the basis of cultivation of good strains and the core of biodiversity conservation.To comprehensively grasp of the core Breed Conservation area of China's first national sea cucumber native species farm,this study conducted an annual survey of the water body and sediment environment of the core breed conservation area from July 2022 to May 2023.Simultaneously,the annual change in microbial community structure in seawater and sediment was analyzed using high-throughput sequencing,and the correlation between ecological environment quality and microbial community structure was further completed.The results showed that the water quality of seawater was good,except for the reactive phosphate content in spring and the lead content in summer,autumn,and winter,which reached the water quality standard of Class Ⅱ and the heavy metal nickel,which met the water quality standard of ClassⅡ in autumn.All other water quality indices met the water quality standard of Class Ⅰ and the water body of the Breed Conservation area belongs to the poor trophic level.In the sediments,except for the chromium content in autumn which did not reach the standard of Class Ⅰ,all other indices met the standard of Class Ⅰ,indicating that the ecological environment of the core area is good.The results of microbial community structure analysis of seawater and sediments in four seasons showed that 3 796 OTUs were obtained in the water body of the core area and the Shannon index of the water body in the four seasons ranged from 5.90±0.04 to 6.84±0.01,with the highest in autumn and the lowest in summer;4 151 OTUs were obtained in the sediment,and the Shannon index of the sediment in the four seasons was between 6.06±1.44 and 7.88±0.22,with the highest in summer and the lowest in spring.PcoA showed that the microbial community structure of the water body and sediments differed in the four seasons and the microbial community structure of the water body varied more by seasonal influences than that of sediments.The results of LEfSe analyses of water and sediment flora in different seasons showed that 73 and 66 significantly different bacteria were screened in water and sediment samples in different seasons,respectively(P<0.05),among which the representative bacteria in the winter sediment contained Vibrionaceae and Psychromonadaceae,which highlights the potential threat of vibrio to the health of sea cucumber in winter.The correlation analysis between environmental factors and microbial community structure showed that temperature,pH,and salinity were the major environmental factors affecting the microbial community structure in the water body,whereas organic carbon,sulfide,heavy metal copper,and lead were the chief environmental factors affecting the microbial community structure in the sediments.These results provide support for assessing the ecological environment of the core area for Breed Conservation,analyzing its risk factors and influencing factors,and providing scientific basis for the efficient preservation of the native sea cucumber in China.

关键词

刺参/原种场核心区/生态环境质量/微生物群落结构周年变化/相关性分析

Key words

Apostichopus japonicus/Core area of the natural farm/Ecological environmental quality/Annual changes in microbial community structure/Correlation analysis

分类

水产学

引用本文复制引用

朱晓彤,施国军,荣小军,李彬,王印庚,葛建龙,廖梅杰,王锦锦,吴岩强,赵欣涛..国家级大连刺参原种场核心区生态环境质量和微生物群落结构周年变化及其相关性分析[J].渔业科学进展,2025,46(1):1-14,14.

基金项目

山东省农业良种工程重大课题(2023LZGC019)、中国水产科学研究院中央级公益性科研院所基本科研业务费专项资金(2020TD40)和青岛市重点研发计划(22-3-3-hygg-1-hy)共同资助. (2023LZGC019)

渔业科学进展

OA北大核心

2095-9869

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