Page 86 - 《水产学报》2025年第8期
P. 86
王一航,等 水产学报, 2025, 49(8): 089307
[22] 张继红, 吴文广, 徐东, 等. 虾夷扇贝动态能量收支模型参数 (in Chinese).
的测定 [J]. 水产学报, 2016, 40(5): 703-710. [31] 孙闻婧, 陈传悦, 梁泽玮, 等. 长期饥饿胁迫下厚壳贻贝的生
Zhang J H, Wu W G, Xu D, et al. The estimation of dynamic 理生化响应及性腺转录组 [J]. 水产学报, 2024, 48(4): 147-
energy budget (DEB) model parameters for scallop Patinopec- 158.
ten yessoensis[J]. Journal of Fisheries of China, 2016, 40(5): Sun W J, Chen C Y, Liang Z W, et al. Physiological and bio-
703-710 (in Chinese). chemical responses and gonad transcriptome analysis of Mytilus
[23] 张继红, 吴文广, 刘毅, 等. 虾夷扇贝动态能量收支生长模型 coruscus under long-term starvation[J]. Journal of Fisheries of
[J]. 中国水产科学, 2017, 24(3): 497-506.
China, 2024, 48(4): 147-158 (in Chinese).
Zhang J H, Wu W G, Liu Y, et al. A dynamic energy budget
[32] 张义浩, 赵盛龙. 嵊山列岛贻贝养殖种类生长发育调查 [J].
(DEB) growth model for Japanese scallop Patinopecten yes-
浙江海洋学院学报 (自然科学版), 2003, 22(1): 67-73.
soensis cultured in China[J]. Journal of Fishery Sciences of
Zhang Y H, Zhao S L. Mussel species and growth developing
China, 2017, 24(3): 497-506 (in Chinese).
investigation around Shengshan archipelago[J]. Journal of
[24] Gnaiger E. Calculation of energetic and biochemical equival-
Zhejiang Ocean University (Natural Science Edition), 2003,
ents of respiratory oxygen consumption[M]//Gnaiger E, Forst-
22(1): 67-73 (in Chinese).
ner H. Polarographic oxygen sensors: aquatic and physiological
[33] Ren J S, Ragg N L C, Cummings V J, et al. Ocean acidification
applications. Berlin: Springer, 1983: 337-345.
and dynamic energy budget models: parameterisation and simu-
[25] 尚跃勇. 海水酸化和缺氧及其昼夜节律变化对厚壳贻贝发育、
lations for the green-lipped mussel[J]. Ecological Modelling,
酸碱调节及能量收支的影响 [D]. 上海: 上海海洋大学, 2020.
2020, 426: 109069.
Shang Y Y. Effects of diel-cycling seawater acidification and
[34] Noor N M, Nursyam H, Widodo M S, et al. Biological aspects
hypoxia on development, acid-base regulation and energy
of green mussels Perna viridis cultivated on raft culture in Pas-
budget of thick shell mussel Mytilus coruscus[D]. Shanghai:
aran coastal waters, Indonesia[J]. Aquaculture, Aquarium, Con-
Shanghai Ocean University, 2020 (in Chinese).
servation & Legislation, 2019, 12(2): 448-456.
[26] 常亚青. 贝类增养殖学 [M]. 北京: 中国农业出版社, 2005.
[35] 陈清满, 章守宇, 林军, 等. 枸杞岛紫贻贝生长状况及其与环
Chang Y Q. Mollusc culture[M]. Beijing: China Agriculture
境因子关系 [J]. 上海海洋大学学报, 2012, 21(5): 809-815.
Press, 2005 (in Chinese).
Chen Q M, Zhang S Y, Lin J, et al. Growth conditions of
[27] Saraiva S, van der Meer J, Kooijman SALM, et al. Validation
Mytilus edulis Linnaeus and its relationship with environmental
of a Dynamic Energy Budget (DEB) model for the blue mussel
factors in Gouqi Island[J]. Journal of Shanghai Ocean Uni-
Mytilus edulis[J]. Marine Ecology Progress Series, 2012, 463:
versity, 2012, 21(5): 809-815 (in Chinese).
141-158.
[36] Smaal A, van Stralen M, Schuiling E. The interaction between
[28] Ren J S, Ross A H. Environmental influence on mussel growth:
shellfish culture and ecosystem processes[J]. Canadian Journal
a dynamic energy budget model and its application to the green-
of Fisheries and Aquatic Sciences, 2001, 58(5): 991-1002.
shell mussel Perna canaliculus[J]. Ecological Modelling, 2005,
[37] Duarte P, Alvarez-Salgado X A, Fernández-Reiriz M J, et al. A
189(3-4): 347-362.
[29] 何田妹, 晁敏. 文蛤动态能量收支模型参数的测定 [J]. 海洋 modeling study on the hydrodynamics of a coastal embayment
occupied by mussel farms (Ria de Ares-Betanzos, NW Iberian
渔业, 2020, 42(2): 225-232.
Peninsula)[J]. Estuarine, Coastal and Shelf Science, 2014, 147:
He T M, Chao M. Estimation of dynamic energy budget (DEB)
model parameters for Meretrix meretrix[J]. Marine Fisheries, 42-55.
2020, 42(2): 225-232 (in Chinese). [38] 梁君, 虞宝存, 毕远新, 等. 中街山列岛海域厚壳贻贝生物学
[30] 马占飞. 海州湾紫贻贝 DEB 模型构建及不同养殖区的营养 特征及生长规律 [J]. 生态学杂志, 2015, 34(2): 471-476.
特征 [D]. 上海: 上海海洋大学, 2022. Liang J, Yu B C, Bi Y X, et al. The biological characteristics
Ma Z F. Dynamic energy budget of Mytilus galloprovincialis and growth patterns of Mytilus coruscus in the waters of
and the nutrient characteristics in different aquaculture area in Zhongjieshan Islands[J]. Chinese Journal of Ecology, 2015,
Haizhou Bay[D]. Shanghai: Shanghai Ocean University, 2022 34(2): 471-476 (in Chinese).
https://www.china-fishery.cn 中国水产学会主办 sponsored by China Society of Fisheries
12