Page 136 - 《水产学报》2023年第1期
P. 136
郑卫卫,等 水产学报, 2023, 47(1): 019109
[12] Liu Z Q, Shi L P, Liu Y Y, et al. Genome-wide identific- & Shellfish Immunology, 2022, 122: 153-161.
ation and transcriptional expression analysis of mitogen- [21] Robledo D, Ronza P, Harrison P W, et al. RNA-seq ana-
activated protein kinase and mitogen-activated protein lysis reveals significant transcriptome changes in turbot
kinase kinase genes in Capsicum annuum[J]. Frontiers in (Scophthalmus maximus) suffering severe
Plant Science, 2015, 6: 780. enteromyxosis[J]. BMC Genomics, 2014, 15: 1149.
[13] Zhang S Z, Xu R R, Luo X C, et al. Genome-wide iden- [22] Ronza P, Robledo D, Losada A P, et al. The teleost
tification and expression analysis of MAPK and thymus in health and disease: new insights from tran-
MAPKK gene family in Malus domestica[J]. Gene, scriptomic and histopathological analyses of turbot, Sco-
2013, 531(2): 377-387. phthalmus maximus[J]. Biology, 2020, 9(8): 221.
[14] Su Y L, Chen J P, Mo Z Q, et al. A novel MKK gene [23] Huang Z H, Ma A J, Yang S S, et al. Transcriptome ana-
(EcMKK6) in Epinephelus coioides: identification, char- lysis and weighted gene co-expression network reveals
acterization and its response to Vibrio alginolyticus and potential genes responses to heat stress in turbot Scoph-
SGIV infection[J]. Fish & Shellfish Immunology, 2019, thalmus maximus[J]. Comparative Biochemistry and
92: 500-507. Physiology Part D:Genomics and Proteomics, 2020, 33:
[15] Fan H D, Li Y D, Yang Q B, et al. Isolation and charac- 100632.
terization of a MAPKK gene from Penaeus monodon in [24] Nie X B, Zhang C F, Jiang C X, et al. Characterizing
response to bacterial infection and low-salinity chal- transcriptome changes in gill tissue of turbot (Scophthal-
lenge[J]. Aquaculture Reports, 2021, 20: 100671. mus maximus) for waterless preservation[J]. Aquacul-
[16] Wang Y, Chen G, Li K Q, et al. A novel MKK gene ture, 2020, 518: 734830.
(AjMKK3/6) in the sea cucumber Apostichopus [25] Cui W X, Ma A J, Wang X N. Response of the PI3K-
japonicus: identification, characterization and its AKT signalling pathway to low salinity and the effect of
response to pathogenic challenge[J]. Fish & Shellfish its inhibition mediated by wortmannin on ion channels in
Immunology, 2017, 61: 24-33. turbot Scophthalmus maximus[J]. Aquaculture Research,
[17] Yu J J, Li Y, Zhang Z H, et al. Genome-wide identifica- 2020, 51(7): 2676-2686.
tion of MKK and MAPK gene families and their expres- [26] Xu X W, Zheng W W, Meng Z, et al. Identification of
sion analysis under abiotic stress in largemouth bass stress-related genes by co-expression network analysis
(Micropterus salmoides)[J]. Aquaculture, 2022, 561: based on the improved turbot genome[J]. Scientific Data,
738688. 2022, 9(1): 374.
[18] Yang X D, Hou Z S, Liu M Q, et al. Identification and [27] Tamura K, Stecher G, Kumar S. MEGA11: molecular
characterization of mkk genes and their expression pro- evolutionary genetics analysis version 11[J]. Molecular
files in rainbow trout (Oncorhynchus mykiss) sympto- Biology and Evolution, 2021, 38(7): 3022-3027.
matically or asymptomatically infected with Vibrio [28] He Z L, Zhang H K, Gao S H, et al. Evolview v2: an
anguillarum[J]. Fish & Shellfish Immunology, 2022, online visualization and management tool for custom-
121: 1-11. ized and annotated phylogenetic trees[J]. Nucleic Acids
[19] 雷霁霖, 刘新富, 关长涛. 中国大菱鲆养殖20年成就和 Research, 2016, 44(W1): W236-W241.
展望——庆祝大菱鲆引进中国20周年[J]. 渔业科学进 [29] Chen C J, Chen H, Zhang Y, et al. TBtools: an integrat-
展, 2012, 33(4): 123-130. ive toolkit developed for interactive analyses of big bio-
Lei J L, Liu X F, Guan C T. Turbot culture in China for logical data[J]. Molecular Plant, 2020, 13(8): 1194-1202.
two decades: achievements and prospect[J]. Progress in [30] Bailey T L, Johnson J, Grant C E, et al. The MEME
Fishery Sciences, 2012, 33(4): 123-130 (in Chinese). suite[J]. Nucleic Acids Research, 2015, 43(W1): W39-
[20] Xu X D, Liu L, Feng J X, et al. Comparative transcrip- W49.
tome analysis reveals potential anti-viral immune path- [31] Ronza P, Álvarez-Dios J A, Robledo D, et al. Blood
ways of turbot (Scophthalmus maximus) subverted by transcriptomics of turbot Scophthalmus maximus: a tool
megalocytivirus RBIV-C1 for immune evasion[J]. Fish for health monitoring and disease studies[J]. Animals,
中国水产学会主办 sponsored by China Society of Fisheries https://www.china-fishery.cn
11