Page 53 - 《水产学报》2023年第1期
P. 53
董在杰,等 水产学报, 2023, 47(1): 019604
Beijing: Science Press, 2007: 247 (in Chinese). 178-191.
[46] 孙效文. 几种简单的鱼类分子育种操作方案[J]. 水产 [54] Zhong Z M, Niu P F, Wang M Y, et al. Targeted disrup-
学杂志, 2015, 28(6): 1-5. tion of sp7 and myostatin with CRISPR-Cas9 results in
Sun X W. Several simple molecular breeding programs severe bone defects and more muscular cells in common
in fish[J]. Chinese Journal of Fisheries, 2015, 28(6): 1-5 carp[J]. Scientific Reports, 2016, 6: 22953.
(in Chinese). [55] Chen H L, Wang J, Du J X, et al. ASIP disruption via
[47] 张晓娟, 周莉, 桂建芳. 遗传育种生物技术创新与水产 CRISPR/Cas9 system induces black patches dispersion
养殖绿色发展[J]. 中国科学:生命科学, 2019, 49(11): in Oujiang color common carp[J]. Aquaculture, 2019,
1409-1429. 498: 230-235.
Zhang X J, Zhou L, Gui J F. Biotechnological innova- [56] Mandal B K, Chen H L, Si Z X, et al. Shrunk and
tion in genetic breeding and sustainable green develop- scattered black spots turn out due to MC1R knockout in a
ment in Chinese aquaculture[J]. Science China Life Sci- white-black Oujiang color common carp (Cyprinus car-
ences, 2019, 49(11): 1409-1429 (in Chinese). pio var. color)[J]. Aquaculture, 2020, 518: 734822.
[48] 鲁翠云. 鲤生长性状主效 QTL 育种潜力评估及其在染 [57] Xu X D, Chen H L, Mandal B K, et al. Duplicated Tyr
色体上的定位 [D]. 上海: 上海海洋大学, 2014. disruption using CRISPR/Cas9 reveals melanophore
Lu C Y. Breeding potentials and chromosome locations formation in Oujiang color common carp (Cyprinus car-
of the major QTLs affecting growth traits in common pio var. color)[J]. Reproduction and Breeding, 2022,
carp (Cyprinus carpio L. )[D]. Shanghai: Shanghai 2(2): 37-45.
Ocean University, 2014 (in Chinese). [58] Chen H, Wang J, Du J, et al. Analysis of recently duplic-
[49] Zhong C R, Song Y L, Wang Y P, et al. Growth hor- ated TYRP1 genes and their effect on the formation of
mone transgene effects on growth performance are black patches in Oujiang-color common carp (Cyprinus
inconsistent among offspring derived from different carpio var. color)[J]. Animal Genetics, 2021, 52(4): 451-
homozygous transgenic common carp (Cyprinus carpio 460.
L. )[J]. Aquaculture, 2012, 356-357: 404-411. [59] Yu L W, Chen H L, Hu X W, et al. SLC24A5 plays fun-
[50] 胡炜, 汪亚平, 朱作言. 转基因鱼生态风险评价及其对 damental roles in regulating melanophore development
策研究进展[J]. 中国科学:生命科学, 2007, 50(5): 573- in Cyprinidae fish[J]. Reproduction and Breeding, 2021,
579. 1(3): 167-173.
Hu W, Wang Y P, Zhu Z Y. Progress in the evaluation of [60] Jiang Y L, Li B J, Yu M H, et al. Genome-wide associ-
transgenic fish for possible ecological risk and its con- ation study and gene editing reveals the causal gene
tainment strategies[J]. Science China Life Sciences, responsible for abnormal red skin color in Yellow River
2007, 50(5): 573-579 (in Chinese). carp[J]. Aquaculture, 2022, 560: 738530.
[51] 于凡, 肖俊, 梁向阳, 等. 转生长激素基因三倍体鲤鱼 [61] Zhai G, Shu T T, Chen K X, et al. Successful produc-
的快速生长与不育特性[J]. 科学通报, 2011, 56(16): tion of an all-female common carp (Cyprinus carpio L. )
1679-1684. population using cyp17a1-deficient neomale carp[J].
Yu F, Xiao J, Liang X Y, et al. Rapid growth and steril- Engineering, 2022, 8: 181-189.
ity of growth hormone gene transgenic triploid carp[J]. [62] Zhao Y C, Wang T D, Yu Z, et al. Inhibiting cyprinid
Chinese Science Bulletin, 2011, 56(16): 1679-1684 (in herpesvirus-3 replication with CRISPR/Cas9[J]. Biotech-
Chinese). nology Letters, 2016, 38(4): 573-578.
[52] Khalil A M. The genome editing revolution: review[J]. [63] 陈红林. 基于基因组重测序和基因编辑技术的瓯江彩
Journal of Genetic Engineering and Biotechnology, 鲤黑斑体色遗传机制研究 [D]. 上海: 上海海洋大学,
2020, 18(1): 68. 2019.
[53] Yang Z T, Yu Y P, Tay Y X, et al. Genome editing and Chen H L. Genetic mechanism of black coloration in
its applications in genetic improvement in Oujiang color common carp based on genome resequen-
aquaculture[J]. Reviews in Aquaculture, 2022, 14(1): cing and CRISPR/Cas9 system[D]. Shanghai: Shanghai
https://www.china-fishery.cn 中国水产学会主办 sponsored by China Society of Fisheries
14