Research progress in the autolysis of aquatic animals
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摘要: 水产动物资源由于水分含量大、自身酶系非常丰富,极易发生自溶,给其储藏、运输和加工过程带来很大不便,是制约水产加工业快速发展的重要瓶颈。本文重点从自溶影响因素、自溶过程生化变化、自溶机理和自溶技术应用四个方面对水产动物自溶的研究现状进行综述,并对未来的发展趋势和研究方向进行了展望,旨在为水产动物自溶的进一步研究提供理论参考。Abstract: The aquatic animals are easily subjected to autolysis because of its high content of water and endogenous enzymes, and this phenomenon brings great difficulties to its storage, transportation and processing.It has become the bottleneck of aquatic products processing. In this paper, the research status of autolysis was summarized from the aspects of influence factors, biochemical changes, autolytic mechanism and autolysis technology applications.The developing trend was also prospected, and this may provide theoretic basis for the further studies of aquatic animals autolysis.
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Keywords:
- aquatic animals /
- autolysis /
- endogenous enzyme
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[1] 启航.海参体壁酶的研究[D].大连:大连轻工业学院, 2007. [2] 郑杰.海参自溶过程中生化变化及抗氧化活性寡肽的研究[D].镇江:江苏大学, 2012. [3] 郑杰, 吴海涛, 董秀萍, 等.基于主要化学成分变化建立的海参自溶评价指标[J].大连工业大学学报, 2010, 29 (6) :391-395. [4] Yarnpakdee S, Benjakul S, Visessanguan W, et al.Autolysis of goatfish (Mulloidichthys martinicus) mince:Characterisation and effect of washing and skin inclusion[J].Food Chemistry, 2009, 114 (4) :1339-1344.
[5] 章超桦, 邓尚贵, 杨丽明, 等.紫外线和温度对虾快速白溶的影响-水产品快速自溶影响因素探讨之一[J].湛江海洋大学学报, 1994, 14 (2) :51-56. [6] 章超桦, 邓尚贵.刀额新对虾的快速自溶技术[J].水产学报, 1999, 23 (4) :387-391. [7] 司伟兰, 辛绮婷, 余颖儿, 等.鱿鱼内脏成分分析及自溶条件的研究[J].农产品加工·学刊, 2010 (8) :11-14. [8] 黄冬香, 李林, 于新.罗非鱼蛋白自溶水解条件优化[J].西南大学学报:自然科学版, 2009, 31 (5) :93-97. [9] 黄冬香, 于新, 李林.食品添加剂对罗非鱼蛋白自溶作用的影响[J].食品科学, 2010, 31 (5) :73-77. [10] 孔美兰, 吉宏武, 章超桦.罗非鱼下脚料自溶条件的初步探讨[J].湛江海洋大学学报, 2005, 25 (4) :27-31. [11] Intarasirisawat R, Benjakul S, Visessanguan W, et al.Autolysis study of bigeye snapper (Priacanthus macracanthus) skin and its effect on gelatin[J].Food Hydrocolloids, 2007, 21 (4) :537-544.
[12] Yongsawatdigul J, Piyadhammaviboon P.Inhibition of autolytic activity of lizardfish surimi by proteinase inhibitors[J].Food Chemistry, 2004, 87 (3) :447-455.
[13] 曹文红, 章超桦, 洪鹏志, 等.响应面法优化南美白对虾虾头自溶工艺的研究[J].中国食品学报, 2009, 9 (1) :158-164. [14] 崔春, 赵谋明, 林伟锋.蓝园鲹快速自溶机理研究[J].食品工业科技, 2005, 26 (2) :85-87. [15] 薛勇, 赵明明, 王超, 等.响应面法优化南极磷虾蛋白自溶工艺的研究[J].食品工业科技, 2012 (4) :346-348, 373. [16] 郑丽, 汪秋宽, 谢智芬, 等.扇贝加工废弃物自溶技术的研究[J].大连水产学院学报, 2007, 22 (1) :49-52. [17] Rawdkuen S, Benjakul S, Visessanguan W, et al.Fractionation and characterization of cysteine proteinase inhibitor from chicken plasma[J].Journal of Food Biochemistry, 2005, 29 (5) :486-503.
[18] Oujifard A, Benjakul S, Ahmad M, et al.Effect of bambara groundnut protein isolate on autolysis and gel properties of surimi from threadfin bream (Nemipterus bleekeri) [J].LWT-Food Science and Technology, 2012, 47 (2) :261-266.
[19] Rawdkuen S, Benjakul S.Whey protein concentrate:Autolysis inhibition and effects on the gel properties of surimi prepared from tropical fish[J].Food Chemistry, 2008, 106 (3) :1077-1084.
[20] Yongsawatdigul J, Piyadhammaviboon P.Inhibition of autolytic activity of lizardfish surimi by proteinase inhibitors[J].Food Chemistry, 2004, 87 (3) :447-455.
[21] Benjakul S, Visessanguan W, Tueksuban J, et al.Effect of some protein additives on proteolysis and gel-forming ability of lizardfish (Saurida tumbil) [J].Food Hydrocolloids, 2004, 18 (3) :395-401.
[22] Eakpetch P, Benjakul S, Visessanguan W, et al.Autolysis of pacific white shrimp (Litopenaeus vannamei) meat:characterization and the effects of protein additives[J].Journal of Food Science, 2008, 73 (2) :S95-S103.
[23] 仪淑敏, 王雪琦, 纪晓林, 等.刺参自溶过程中水分变化规律的研究[J].食品工业科技, 2014, 35 (11) :49-51, 56. [24] 徐伟, 于刚, 薛勇.鳀鱼自溶水解过程的生化变化[J].食品科技, 2010 (4) :136-139. [25] 李树红, 张楠, 刘欢, 等.鲢鱼背肌肌原纤维蛋白自溶与内源组织蛋白酶B, L, H的关系[J].中国农业大学学报, 2004, 9 (5) :71-75. [26] Yamashita M, Konagaya S.Differentiation and localization of catheptic proteinases responsible for extensive autolysis of mature chum salmon muscle (Oncorhynchus keta) [J].Comparative Biochemistry and Physiology Part B:Comparative Biochemistry, 1992, 103 (4) :999-1003.
[27] Aoki T, Ueno R.Involvement of cathepsins B and L in the post-mortem autolysis of mackerel muscle[J].Food Research International, 1997, 30 (8) :585-591.
[28] Kubota M, Kinoshita M, Kubota S, et al.Possible implication of metalloproteinases in post-mortem tenderization of fish muscle[J].Fisheries Science, 2001, 67 (5) :965-968.
[29] Delbarre-Ladrat C, Cheret R, Taylor R, et al.Trends in postmortem aging in fish:Understanding of proteolysis and disorganization of the myofibrillar structure[J].Critical Reviews in Food Science and Nutrition, 2006, 46 (5) :409-421.
[30] Sun L M, Zhu B W, Wu H T, et al.Purification and characterization of cathepsin B from the gut of the sea cucumber (Stichopus japonicas) [J].Food Science and Biotechnology, 2011, 20:919-925.
[31] Qi H, Dong X P, Cong L N, et al.Purification and characterization of a cysteine-like protease from the body wall of the sea cucumber Stichopus japonicus[J].Fish Physiology and Biochemistry, 2007, 33:181-188.
[32] Zhou D Y, Chang X N, Bao S S, et al.Purification and partial characterisation of a cathepsin L-like proteinase from sea cucumber (Stichopus japonicus) and its tissue distribution in body wall[J].Food Chemistry, 2014, 158:192-199.
[33] 郝更新, 章超桦, 曹文红.对虾蛋白自溶制备ACE抑制肽的工艺条件优化[J].湛江海洋大学学报, 2006, 26 (4) :59-62. [34] 郑杰, 吴海涛, 朱蓓薇, 等.海参肠自溶水解物抗氧化活性的研究[J].大连工业大学学报, 2011, 30 (5) :313-317. [35] Samaranayaka A G P, Li-Chan E C Y.Autolysis-assisted production of fish protein hydrolysates with antioxidant properties from Pacific hake (Merluccius productus) [J].Food Chemistry, 2008, 107 (2) :768-776.
[36] 侯佰立, 吉宏武, 王燕, 等.凡纳滨对虾虾头制备甲壳素工艺的研究[J].食品工业科技, 2011, (10) :273-276. [37] 姜淼, 杨贤庆, 李来好, 等.内源酶辅助提取虾壳虾青素的研究[J].南方水产科学, 2011, 7 (2) :55-60. [38] 钱俊青, 单昱东, 廖启元.黄鲇鱼内脏自溶酶解提取鱼油的工艺[J].食品与发酵工业, 2009, 35 (12) :66-69. [39] Liu C C, Morioka K, Itoh Y, et al.Autolysis:An effective way to recover protein from fish solid wast[J].Journal of Shanghai Fisheries University, 2003, 12 (suppl) :71-77.
[40] Senphan T, Benjakul S.Compositions and yield of lipids extracted from hepatopancreas of Pacific white shrimp (Litopenaeus vannamei) as affected by prior autolysis[J].Food Chemistry, 2012, 134 (2) :829-835.
[41] 章超桦, 邓尚贵.虾组织快速自溶技术在海鲜调味料生产上的应用研究[J].食品与发酵工业, 2000, 26 (2) :36-39. [42] Zhu B W, Zheng J, Zhang Z S, et al.Autophagy plays a potential role in the process of sea cucumber body wall“melting”induced by UV irradiation[J].Wuhan University Journal of Natural Sciences, 2008, 13 (2) :232-238.
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