Page 130 - 《渔业研究》2026年第3期
P. 130
第 3 期 温杰文等: 养殖仿刺参营养需求及其饲料原料开发研究进展 423
物的探究 [D]. 大连:大连海洋大学,2023. 2545 − 2553.
Li H. Construction of recirculating aquaculture system [38] Luo Z Y, Wang B J, Liu M, et al. Effect of dietary sup-
for Apostichopus japonicus and exploration of carbo- plementation of vitamin C on growth, reactive oxygen
hydrates in feed[D]. Dalian: Dalian Ocean University, species, and antioxidant enzyme activity of Apostichopus
2023. japonicus (Selenka) juveniles exposed to nitrite[J].
[32] 夏斌,王际英,李培玉,等. 饲料中不同碳水化合物 Chinese Journal of Oceanology and Limnology, 2014,
水平对刺参幼参生长和能量收支的影响 [J]. 中国水 32(4): 749 − 763.
产科学,2015,22(4) :645 − 653. [39] 骆作勇. 仿刺参幼参对不同刺激的应激机制及维生素
Xia B, Wang J Y, Li P Y, et al. Effects of dietary carbo- C、E 抗应激作用研究 [D]. 青岛:中国科学院研究生
hydrate intake on the growth and energy budget of juven- 院(海洋研究所) ,2014.
ile Apostichopus japonicus (Selenka) sea cucumbers[J]. Luo Z Y. Study on stress mechanism and the anti-stress
Journal of Fishery Sciences of China, 2015, 22(4): 645 − effect of vitamins C and E in Apostichopus japonicus
653. (Selenka) Juveniles[D]. Qingdao: Graduate School of
[33] Li Z Q, Xue X Q, Yang H, et al. Effect of dietary carbo- Chinese Academy of Sciences (Institute of Oceanology,
hydrate levels on growth performance, non-specific im- Chinese Academy of Sciences), 2014.
mune enzymes and acute response to low salinity and [40] Okorie O E, Ko S H, Go S, et al. Preliminary study of
high temperature of juvenile sea cucumber Apostichopus the optimum dietary riboflavin level in sea cucumber,
japonicus[J]. Aquaculture Nutrition, 2020, 26(3): 683 − Apostichopus japonicus (Selenka)[J]. Journal of the
692. World Aquaculture Society, 2011, 42(5): 657 − 666.
[34] 王吉桥,苏久旺,姜玉声,等. 不同剂型和剂量的维 [41] Ko S H, Go S, Okorie O E, et al. Preliminary study of
生素 C 对幼刺参生长的影响 [J]. 海洋科学,2009, the dietary α-tocopherol requirement in sea cucumber,
33(12) :56 − 63. Apostichopus japonicus[J]. Journal of the World Aqua-
Wang J Q, Su J W, Jiang Y S, et al. The effects of diet- culture Society, 2009, 40(5): 659 − 666.
ary vitamin C sources and levels on growth in juvenile [42] 王开来. 维生素 C 对刺参生长和非特异性免疫的影响
sea cucumber (Apostichopus japonicus)[J]. Marine Sci- [D]. 大连:大连理工大学,2009.
ences, 2009, 33(12): 56 − 63. Wang K L. Effect of vitamin C on growth and non-spe-
[35] 汪将. 维生素 E 对环境胁迫下刺参生长和免疫的影响 cific immunology of sea cucumber, Apostichopus ja-
[D]. 大连:大连理工大学,2014. ponicus[D]. Dalian: Dalian University of Technology,
Wang J. Effects of vitamin E on growth and immunity of 2009.
sea cucumber (Apostichopus japonicus) under environ- [43] 柏 雨 岑 . 不 同 色 型 仿 刺 参 Apostichopus japonicus
mental stresses[D]. Dalian: Dalian University of Tech- (Selenka)环境适应性与营养需求的比较研究 [D].
nology, 2014. 青岛:中国科学院研究生院(海洋研究所) ,2016.
[36] 王丽丽,李宝山,王际英,等. 维生素 D 3 对仿刺参 Bai Y C. Research of differences in environmental adapt-
幼参生长、体组成及抗氧化能力的影响 [J]. 渔业科 ability, and nutritional requirements of three color
学进展,2019,40(1) :110 − 118. morphs of sea cucumber, Apostichopus japonicus (Selen-
Wang L L, Li B S, Wang J Y, et al. Effects of dietary ka)[D].Qingdao: Graduate School of Chinese Academy
vitamin D 3 on growth performance, body composition, of Sciences (Institute of Oceanology, Chinese Academy
and antioxidant capacity of the juvenile sea cucum- of Sciences), 2016.
ber[J]. Progress in Fishery Sciences, 2019, 40(1): 110 − [44] 朱珏,王敏,李石强. 水产养殖中微量元素的作用
118. [J]. 饲料博览,2012(6) :41 − 43.
[37] 李宝山,王际英,王成强,等. 仿刺参幼参对饲料中维 Zhu J, Wang M, Li S Q. Effects of trace minerals in
生素 B 6 需求量的研究 [J]. 水产学报,2019,43(12) : aquiculture[J]. Feed Review, 2012(6): 41 − 43.
2545 − 2553. [45] 张琴. 刺参(Apostichopus japonicus Selenka)高效免
疫增强剂的筛选与应用 [D]. 青岛:中国海洋大学,
Li B S, Wang J Y, Wang C Q, et al. Dietary vitamin B 6
requirement of juvenile sea cucumber (Apostichopus ja- 2010.
ponicus)[J]. Journal of Fisheries of China, 2019, 43(12): Zhang Q. The selection and application of high-effective

