Page 125 - 《水产学报》2026年第04期
P. 125
4 期 水 产 学 报 50 卷
[ 5 ] Takahashi M, Saccò M, Kestel J H, et al. Aquatic environ- [17] Lyu S, Tong J F, Wu J H, et al. Towards a comprehensive
mental DNA: a review of the macro-organismal biomonitoring assessment of ichthyofaunal diversity in the Yangtze River
revolution[J]. Science of the Total Environment, 2023, 873: Estuary: leveraging environmental DNA technology and bot-
162322. tom trawl surveys[J]. Heliyon, 2024, 10(14): e34761.
[ 6 ] Miya M. Environmental DNA metabarcoding: a novel method [18] 赵度宾, 陆天宇, 陈锦辉, 等. 长江口鲚属鱼类鱼卵、仔稚鱼
for biodiversity monitoring of marine fish communities[J]. 的分布与环境因子的关系 [J]. 上海海洋大学学报, 2025,
Annual Review of Marine Science, 2022, 14: 161-185. 34(6): 1292-1307.
[ 7 ] Miya M, Sato Y, Fukunaga T, et al. MiFish, a set of universal Zhao D B, Lu T Y, Chen J H, et al. Distribution of eggs, larvae
PCR primers for metabarcoding environmental DNA from
and juveniles of Coilia fish and its relationship with environ-
fishes: detection of more than 230 subtropical marine
mental factors in the Yangtze River estuary[J]. Journal of
species[J]. Royal Society Open Science, 2015, 2(7): 150088.
Shanghai Ocean University, 2025, 34(6): 1292-1307 (in Chinese).
[ 8 ] Bohmann K, Evans A, Gilbert M T P, et al. Environmental
[19] 水利部黄河水利委员会. 黄河流域综合规划-2012—2030 年
DNA for wildlife biology and biodiversity monitoring[J].
[M]. 郑州: 黄河水利出版社, 2013.
Trends in Ecology & Evolution, 2014, 29(6): 358-367.
Ministry of Water Resources, Yellow River Conservancy Com-
[ 9 ] Bolger A M, Lohse M, Usadel B. Trimmomatic: a flexible trim-
mission. Master planning of Yellow River Basin (2012-
mer for Illumina sequence data[J]. Bioinformatics, 2014,
2030)[M]. Zhengzhou: Yellow River Water Conservancy Press,
30(15): 2114-2120.
2013 (in Chinese).
[10] Magoč T, Salzberg S L. FLASH: fast length adjustment of short
[20] 杨艳艳, 朱明明, 宋泉清, 等. 黄河调水调沙对河口及邻近海
reads to improve genome assemblies[J]. Bioinformatics, 2011,
域鱼卵、仔稚鱼群落结构的影响 [J]. 水生生物学报, 2024,
27(21): 2957-2963.
48(3): 488-503.
[11] Callahan B J, McMurdie P J, Rosen M J, et al. DADA2: high-
Yang Y Y, Zhu M M, Song Q Q, et al. The Water-sediment
resolution sample inference from Illumina amplicon data[J].
regulation scheme on the community structure of ichthyoplank-
Nature Methods, 2016, 13(7): 581-583.
ton in the Yellow River Estuary[J]. Acta Hydrobiologica Sinica,
[12] The R Core Team. R: a language and environment for statist-
2024, 48(3): 488-503(in Chinese).
ical computing[R]. Vienna, Austria: R Foundation for Statist-
[21] 石长岑, 何雨楠, 张晶, 等. 长江口邻近海域不同来源营养盐
ical Computing, 2013.
对初级生产的作用 [J]. 海洋与湖沼, 2025, 56(4): 817-832.
[13] 孙雅妮, 王蕾, 王志杨, 等. 黄河口及邻近海域游泳生物群落
Shi C C, He Y N, Zhang J, et al. The role of nutrients from dif-
结构变化及其与环境因子的关系 [J]. 烟台大学学报 (自然科
ferent sources in primary production adjacent to the Yangtze
学与工程版), 2023, 36(2): 186-195.
river Estuary[J]. Oceanologia et Limnologia Sinica, 2025,
Sun Y N, Wang L, Wang Z Y, et al. Changes of community
56(4): 817-832 (in Chinese).
structure of swimming organisms in the Yellow River Estuary
[22] 晏然, 范江涛, 陈作志, 等. 南海北部近海竹荚鱼资源密度的
and adjacent waters and its relationship with environmental
概率分布型特征 [J]. 中国水产科学, 2019, 26(1): 91-98.
factors[J]. Journal of Yantai University (Natural Science and
Yan R, Fan J T, Chen Z Z, et al. The probability distribution of
Engineering Edition), 2023, 36(2): 186-195(in Chinese).
the jack mackerel (Trachurus japonicus) density in the offshore
[14] Lyu D, Qian T Y, Li F, et al. Monitoring and assessing the spe-
of the northern South China Sea[J]. Journal of Fishery Sciences
cies diversity and abundance of marine teleost around the Yel-
of China, 2019, 26(1): 91-98(in Chinese).
low River Estuary in June using environmental DNA[J]. Fronti-
[23] 赵峰, 杨琴, 宋超, 等. 长江口凤鲚生物学特征及其资源利用
ers in Marine Science, 2023, 10: 1123831.
研究进展 [J]. 海洋渔业, 2020, 42(1): 110-119.
[15] Wang X Y, Li F, Shao F, et al. Exploring seasonal variations in
fish communities: a study of the Yellow River Estuary and its Zhao F, Yang Q, Song C, et al. Biological characteristics and
adjacent waters using eDNA and trawl surveys[J]. Fishes, 2024, resource utilization of Coilia mystus in the Yangtze Estuary[J].
9(6): 192. Marine Fisheries, 2020, 42(1): 110-119(in Chinese).
[16] 王汝贤, 杨刚, 耿智, 等. 环境 DNA 技术在长江口鱼类多样性 [24] Lyu D, Xu R H, Jin Y, et al. Monitoring fish biodiversity in the
分析中的应用 [J]. 水生生物学报, 2023, 47(3): 365-375. pelagic zone of the western Indian Ocean using environmental
Wang R X, Yang G, Geng Z, et al. Application of environ- DNA metabarcoding[J]. Biology, 2025, 14(9): 1194.
mental DNA technology in fish diversity analysis in the [25] Jarman S, Ackermann F, Marnane M, et al. Research horizons
Yangtze River Estuary[J]. Acta Hydrobiologica Sinica, 2023, for invasive marine species detection with eDNA/eRNA[J].
47(3): 365-375(in Chinese). Biological Invasions, 2024, 26(11): 3715-3731.
https://www.china-fishery.cn 中国水产学会主办 sponsored by China Society of Fisheries
10

