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浙江沿岸日本鳀幼鱼渔业兼捕鱼类的DNA条形码鉴定

王乙婷 朱文斌 张亚洲 王业辉 贾程豪 陈治 高天翔

水产学报2024,Vol.48Issue(10):94-106,13.
水产学报2024,Vol.48Issue(10):94-106,13.DOI:10.11964/jfc.20221113788

浙江沿岸日本鳀幼鱼渔业兼捕鱼类的DNA条形码鉴定

DNA barcoding identification of by-catch in juvenile anchovy(Engraulis japonicus)fishery along the Zhejiang coast

王乙婷 1朱文斌 2张亚洲 2王业辉 3贾程豪 4陈治 5高天翔1

作者信息

  • 1. 浙江海洋大学水产学院,浙江舟山 316022
  • 2. 浙江省海洋水产研究所,浙江舟山 316021
  • 3. 中国海洋大学水产学院,山东青岛 266003
  • 4. 海南大学生态与环境学院,海南海口 570228
  • 5. 海南热带海洋学院水产与生命学院,海南三亚 572022
  • 折叠

摘要

Abstract

The coast of Zhejiang has the most extensive fishing grounds in China and is rich in fish resources.Juvenile Engraulis japonicus is one of the key fish species in the area.However,due to over fishing and other human factors,which resources are less than they used to be.The Ministry of Agriculture and Rural Affairs approved juvenile E.japonicus fishery along the coast of Zhejiang in 2018 to achieve a sustainable harvest of this species juvenile.Meanwhile,there were no studies report using DNA barcoding to identify species of the fishery presently.To comprehensively understand the bycatch species of juvenile anchovy fishery and investigate the effectiveness of mitochondrial cytochrome oxidase subunit Ⅰ(CO Ⅰ)gene in the identification of fish,this study adopted the method of DNA barcode-assisted morphological classification,taking 192 juvenile fishes from the by-catch of juvenile E.japonicus fishery.Finally,we identified 48 species,belonging to 46 genera of 2 classes 11 orders 36 families,of which 46 species were identified to the level of species,2 to the level of genera,and 11 spe-cies of morphology misidentifies were successfully identified.The average length of 152 CO Ⅰ sequences was 654 bp(634-656 bp),and conserved sites accounted for 47.21%,informative sites accounted for 45.25%and variable sites accounted for 51.89%.The content of C+G(47.66%)was significantly lower than that of A+T(52.34%),showing at AT bias,and the highest AT content was found at the site 3.The average interspecific genetic distance(0.252 3)was 74 times higher than the average intraspecific genetic distance(0.003 4).The largest genetic dis-tance between genera was between Salanx and Pampus(0.339 5),and the smallest was between Trachurus and Alectis(0.119 7).The largest genetic distance between the families was between Salangidae and Stromateidae(0.339 5),and the smallest was between Atherinidae and Carangidae(0.192 1).The largest genetic distance was between Perciformes and Osmeriformes(0.276 2),and the smallest was between Scorpaeniformes and Atherini-formes(0.212 2).The ABGD analysis resulted in 48 OTUs,consistent with the morphological classification.The phylogenetic tree was constructed based on CO Ⅰ gene,and individuals of the same species could be clustered in the same branch.The species could be effectively distinguished,but the clustering relationships at the family and order levels were not clear.The DNA barcoding identification results were basically consistent with the morpholo-gical identification results.The above results indicated that DNA barcoding could be used as an effective method of identification of juvenile E.japonicus fishery in Zhejiang coast,which made up for the limitations and short-comings of traditional morphological identification methods.The findings of this study can lay the foundation for the study of fish diversity and spawning migration along the Zhejiang coast,as well as provide a scientific basis for the sustainable development and utilization of juvenile Engraulis japonicus fishery.

关键词

日本鳀/幼鱼/DNA条形码/兼捕鱼类/线粒体CO Ⅰ基因

Key words

Engraulis japonicus/juvenile/DNA barcoding/by-catch/mitochondrial CO Ⅰ gene

分类

农业科技

引用本文复制引用

王乙婷,朱文斌,张亚洲,王业辉,贾程豪,陈治,高天翔..浙江沿岸日本鳀幼鱼渔业兼捕鱼类的DNA条形码鉴定[J].水产学报,2024,48(10):94-106,13.

基金项目

浙江省重点研发计划(2021C2047) (2021C2047)

国家自然科学基金(41776171) (41776171)

农业农村部"限额捕捞关键技术研究与制度探索"(农财发[2017]36号) Key Research & Development Project of Zhejiang Province(2021C2047) (农财发[2017]36号)

National Natural Science Foundation of China(41776171) (41776171)

Ministry of Agriculture and Rural Affairs"Research on Key Techno-logy and System Exploration of Limit Fishing"([2017]36) ([2017]36)

水产学报

OA北大核心CSTPCD

1000-0615

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