[1]Bai J J,Lutz-Carrillo D J,Quan Y C,et al. Taxonomic status and genetic diversity of cultured largemouth bass Micropterus salmoides in China[J]. Aquaculture,2008,278(1/2/3/4):27-30.
[2]农业部渔业局. 中国渔业年鉴[M]. 北京:中国农业出版社,2002.
[3]王裕玉,徐跑,聂志娟,等. 池塘工程化循环水养殖模式下养殖密度对大口黑鲈生长性能和生理指标的影响[J]. 淡水渔业,2019,49(3):90-95.
[4]贾丽,潘勇,刘帅. 池塘内循环流水养殖模式:美国的一种新型养殖模式[J]. 中国水产,2011(1):40-42.
[5]张振东,肖友红,范玉华,等. 池塘工程化循环水养殖模式发展现状简析[J]. 中国水产,2019(5):34-37.
[6]何玉明,周凤建,陈文永,等. 池塘工业化生态养殖系统排出水槽集污区污物处理方式探讨[J]. 科学养鱼,2017(8):18-19.
[7]Aggarwal K,Choe L H,Lee K H. Shotgun proteomics using the iTRAQ isobaric tags[J]. Briefings in Functional Genomics,2006,5(2):112-120.
[8]Lei T,Zhao X H,Jin S,et al. Discovery of potential bladder cancer biomarkers by comparative urine proteomics and analysis[J]. Clinical Genitourinary Cancer,2013,11(1):56-62.
[9]Kambiranda D,Katam R,Basha S M,et al. iTRAQ-based quantitative proteomics of developing and ripening muscadine grape berry[J]. Journal of Proteome Research,2014,13(2):555-569.
[10]雷波,秦嘉,廖成松,等. 基于iTRAQ技术分析两个不同生态区烟草叶片蛋白组的表达差异[J]. 三峡生态环境监测,2016,1(3):25-31.
[11]刘原志,章强强. iTRAQ技术在真菌研究中的应用进展[J]. 中国真菌学杂志,2015,10(3):185-189.
[12]Wang Y F,Zhou Y P,Zhang J H,et al. iTRAQ-based proteomic analysis of Mycoplasma bovis NM-28 strain from two generations for vaccine screening[J]. Vaccine,2020,38(3):549-561.
[13]李雅婷,杨静,颜鲁军,等. egr-miR-71过表达对绵羊PBMCs蛋白组的差异表达分析[J]. 中国兽医科学,2020,50(4):459-466.
[14]Guarnieri M T,Nag A,Smolinski S L,et al. Examination of triacylglycerol biosynthetic pathways via de novo transcriptomic and proteomic analyses in an unsequenced microalga[J]. PLoS One,2011,6(10):e25851.
[15]Schmid R,Blaxter M L. annot8r:GO,EC and KEGG annotation of EST datasets[J]. BMC Bioinformatics,2008,9:180.
[16]Franceschini A,Szklarczyk D,Frankild S,et al. STRING v9.1:protein-protein interaction networks,with increased coverage and integration[J]. Nucleic Acids Research,2012,41(D1):D808-D815.
[17]华愉教,王胜男,邹立思,等. 野生型与栽培型太子参的iTRAQ定量蛋白质组学研究[J]. 药学学报,2016,51(3):475-485.
[18]明浩,赵金,周光现,等. 蛋白质组学在动物科学研究中的应用[J]. 家畜生态学报,2015,36(3):10-17,24.
[19]侯然,卢士玲,王庆玲,等. 蛋白质组学在肉类研究中的应用研究进展[J]. 肉类研究,2018,32(11):53-57.
[20]Ayala M D,López-Albors O,Gil F,et al. Red muscle development of gilthead sea bream Sparus aurata (L.):structural and ultrastructural morphometry[J]. Anatomia,Histologia,Embryologia,1999,28(1):17-21.
[21]Landon D N. Development and specialisation of skeletal muscle[J]. Journal of Anatomy,1982,135:447.
[22]Blanchoin L,Boujemaa-Paterski R,Sykes C,et al. Actin dynamics,architecture,and mechanics in cell motility[J]. Physiological Reviews,2014,94(1):235-263.
[23]Polesello C,Payre F. Small is beautiful:what flies tell us about ERM protein function in development[J]. Trends in Cell Biology,2004,14(6):294-302.
[24]Geeves M A,Fedorov R,Manstein D J. Molecular mechanism of actomyosin-based motility[J]. Cellular and Molecular Life Sciences:CMLS,2005,62(13):1462-1477.
[25]魏燕超. 基于iTRAQ技术的秦川牛肉和横山羊肉高、低品质差异研究[D]. 西安:陕西师范大学,2019.
[26]尹丽卿,苏琳,靳烨. 肌纤维特性与鱼肉品质的关系及其调控技术的研究进展[J]. 食品工业,2015,36(2):231-234.
[27]Sun L C,Zhou L G,Du C H,et al. Glucose-6-phosphate isomerase is an endogenous inhibitor to myofibril-bound serine proteinase of crucian carp (Carassius auratus)[J]. Journal of Agricultural and Food Chemistry,2009,57(12):5549-5555.
[28]查锡良,药立波. 生物化学与分子生物学[M]. 8版.北京:人民卫生出版社,2013.
[29]李连之,黄仲贤. 细胞色素c氧化酶研究新进展[J]. 无机化学学报,2001,17(6):761-774.
[30]Tang J L,Faustman C,Hoagland T A,et al. Postmortem oxygen consumption by mitochondria and its effects on myoglobin form and stability[J]. Journal of Agricultural and Food Chemistry,2005,53(4):1223-1230.
[31]Bachs O,Agell N,Carafoli E. Calcium and calmodulin function in the cell nucleus[J]. Biochimica et Biophysica Acta (BBA)-Reviews on Biomembranes,1992,1113(2):259-270.
[32]田兴国,陈瑶生,凌飞,等. 猪骨骼肌快肌肌钙蛋白C2基因的cDNA克隆与表达分析[J]. 遗传,2006,28(8):949-955.
[33]陈韬. 宰后肌肉蛋白质和组织结构变化与冷却猪肉持水性的关系研究[D]. 南京:南京农业大学,2005.
[34]Panaretou B,Zhai C. The heat shock proteins:their roles as multi-component machines for protein folding[J]. Fungal Biology Reviews,2008,22(3/4):110-119.
[35]Picard B,Gagaoua M,Micol D,et al. Inverse relationships between biomarkers and beef tenderness according to contractile and metabolic properties of the muscle[J]. Journal of Agricultural and Food Chemistry,2014,62(40):9808-9818.
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