棘皮动物体腔细胞的研究进展
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  • 英文篇名:Research Advances on Coelomocyte of Echinodermata
  • 作者:任媛 ; 李强 ; 王轶南 ; 李振
  • 英文作者:REN Yuan;LI Qiang;WANG Yinan;LI Zhen;Key Laboratory of Mariculture & Stock Enhancement in North China's Sea,Ministry of Agriculture and Rural Affairs,Institute of Fisheries and Life Sciences,Dalian Ocean University;School of Marine and Biological Engineering,Yancheng Institute of Technology;
  • 关键词:棘皮动物 ; 体腔细胞 ; 类型 ; 功能 ; 发生
  • 英文关键词:echinoderm;;coelomocyte;;classification;;function;;origin
  • 中文刊名:NKDB
  • 英文刊名:Journal of Agricultural Science and Technology
  • 机构:大连海洋大学水产与生命学院农村农业部北方海水增养殖重点实验室;盐城工学院海洋与生物工程学院;
  • 出版日期:2018-12-25 14:01
  • 出版单位:中国农业科技导报
  • 年:2019
  • 期:v.21;No.138
  • 基金:国家自然科学基金项目(31872544);; 盐城工学院人才引进项目(XJ201725,XJ201726)资助
  • 语种:中文;
  • 页:NKDB201902012
  • 页数:7
  • CN:02
  • ISSN:11-3900/S
  • 分类号:97-103
摘要
棘皮动物是在脊索动物后分布在海洋中的第二大后口动物。体腔细胞是棘皮动物机体免疫防御的重要组成部分,发挥着重要的免疫防御作用,具有吞噬包裹、氧化杀灭、创伤修复和凝集等多种防御功能。从体腔细胞类型、功能和发生来源3个方面综述了海星、海胆和海参3种主要棘皮动物的体腔细胞研究进展,以期为棘皮动物体腔细胞免疫防御机制研究提供参考。
        Echinodermatas are the second largest family of deuterostomes in the ocean after chordate. Coelomic cells are an important part of the immune defense of echinodermatas,and possess phagocytic encapsulation,oxidative killing,wound repair and agglutination,which play crucial functions in immune responses. This paper summarized the classifications,functions and origins of echinodermatas' coelomocytes,such as starfish,sea urchins and sea cucumbers,in order to provide references for the cellular immune defense mechanisms of echinodermatas.
引文
[1]廖玉麟.中国动物志:棘皮动物门:海参纲[M].北京:科学出版社,1997.
    [2]Eliseikina M G,Magarlamov T Y.Coelomocyte morphology in the holothurians Apostichopus japonicus,(Aspidochirota:Stichopodidae)and Cucumaria japonica(Dendrochirota:Cucumariidae)[J].Russian J.Marine Biol.,2002,28(3):197-202.
    [3]Becher S.Rhabdomolgus ruber und Keferstein die Stammform der Holothurien[J].J.Sci.Zool.,1907,88(4):545-689.
    [4]刘晓云,谭金山,包振民,等.刺参体腔细胞的超微结构观察[J].电子显微学报,2005,24(6):613-615.Liu X Y,Tan J S,Bao Z M,et al..Ultrastructural study on coelomocyte of Apostichopus japonicus[J].J.Chin.Electron Microscopy Soc.,2005,24(6):613-615.
    [5]刘洪伟.刺参体腔细胞形态结构、吞噬功能及重金属对其影响的研究[D].辽宁大连:大连水产学院,硕士学位论文,2005.Liu H W.The study on morphology,phagocytic function and influence on heavy metal of Apostichopus japonicus coelomocyte[D].Liaoning Dalian:Dalian Fisheries College,Master Dissertation,2005.
    [6]金晶宇.刺参体腔细胞吞噬功能的初步研究[EB/OL].http://www.paper.edu.cn/releasepaper/content,2007-06-11.
    [7]Xing K,Yang H S.Morphological and ultrastructural characterization of the coelomocytes in Apostichopus japonicus[J].Aquatic Biol.,2008,2(1):85-92.
    [8]李华,陈静,陆佳,等.仿刺参体腔细胞和血细胞类型及体腔细胞数量研究[J].水生生物学报,2009,33(2):207-213.Li H,Chen J,Lu J,et al..Type and quantity of blood cells and coelomocytes in Apostichopus japonicus[J].Acta Hydrobiol.Sin.,2009,33(2):207-213.
    [9]陈庭家,田景玉,丁月,等.刺参体腔细胞类型及其死亡率与温度的关系[J].大连工业大学学报,2016,35(6):407-410.Chen T J,Tian J Y,Ding Y,et al..Analysis on categories of coelomocytes in sea cucumber Apostichopus japonicus and its mortality with relation to temperature[J].J.Dalian Polytechnic Univ.,2016,35(6):407-410.
    [10]Taguchi M,Tsutsui S,Nakamura O.Differential count and time-course analysis of the cellular composition of coelomocyte aggregate of the Japanese sea cucumber Apostichopus japonicus[J].Fish Shellfish Immunol.,2016,58(11):203-209.
    [11]刘均玲,罗海容,黄勃.糙海参(Holothuria scabra)体腔细胞及其吞噬活性的初步研究[A].见:中国海洋湖沼学会.全球变化下的海洋与湖沼生态安全学术交流会论文摘要集[C].南京,2014.Liu J L,Luo H R,Huang B.Primary research on the phagocytosis activity of Holothuria scabra coelomocyte[A].In:Chinese Society for Oceanology and Limnology.A collection of paper summaries of marine and lake ecological security academic exchanges in global change[C].Nanjing,2014.
    [12]Ramírezgómez F,Aponterivera F,Méndezcastaner L,et al..Changes in holothurian coelomocyte populations following immune stimulation with different molecular patterns[J].Fish Shellfish Immunol.,2010,29(2):175-185.
    [13]Deveci R,Sener E,Izzetoglu S.Morphological and ultrastructural characterization of sea urchin immune cells[J].J.Morphol.,2015,1(5):583-588.
    [14]Hillier B J,Vacquier V D.Amassin,an olfactomedin protein,mediates the massive intercellular adhesion of sea urchin coelomocytes[J].J.Cell Biol.,2003,160(4):597-604.
    [15]Gross P S,Clow L A,Smith L C.SpC3,the complement homologue from the purple sea urchin,Strongylocentrotus purpuratus,is expressed in two subpopulations of the phagocytic coelomocytes[J].Immunogenetics,2000,51(12):1034-1044.
    [16]Liao W Y,Fugmann S D.Lectins identify distinct populations of coelomocytes in Strongylocentrotus purpuratus[J].PLoSONE,2017,12(11):e0187987.
    [17]Arizza V,Giaramita F T,Parrinello D,et al..Cell cooperation in coelomocyte cytotoxic activity of Paracentrotus lividus coelomocytes[J].Comparative Biochem.Physiol.Part A,2007,147(2):389-394.
    [18]De Faria M T,Da S J.Innate immune response in the sea urchin Echinometra lucunter(Echinodermata)[J].J.Invertebrate Pathol.,2008,98(1):58-62.
    [19]丁君,常亚青,王长海,等.不同种海胆体腔细胞类型及体液中的酶活力[J].中国水产科学,2006,13(1):33-38.Ding J,Chang Y Q,Wang C H,et al..Coelomocyte types and enzyme activities of coelomic fluid in sea urchines[J].J.Fish.Sci.China,2006,13(1):33-38.
    [20]Li X,Wang B,Liu J,et al..Type and function of coelomocyte in sea urchin,Strongylocentrotus intermedius[J].J.Fish.Sci.China,2003,10(5):381-385.
    [21]Gorshkov A N,Blinova M I,Pinaev G P.Ultrastructure of coelomic epithelium and coelomocytes of intact and wounded starfish Asterias rubens L.[J].Tsitologiia,2009,51(8):650.
    [22]Pinsino A,Thorndyke M C,Matranga V.Coelomocytes and post-traumatic response in the common sea star Asterias rubens[J].Cell Stress Chaperones,2007,12(4):331-341.
    [23]Sharlaimova N S,Petukhova O A.Characteristics of populations of the coelomic fluid and coelomic epithelium cells from the starfish Asterias rubens L.able attach to and spread on various substrates[J].Cell Tiss.Biol.,2012,6(2):176-188.
    [24]于明志,王婷,张峰.罗氏海盘车(Asterias rollestoni Bell)体腔细胞及免疫功能的初步研究[J].现代生物医学进展,2008,8(8):1452-1456.Yu M Z,Wang T,Zhang F.Preliminary study on the function of coelomocyte of the Roche sea jigger(Asterias rollestoni Bell)[J].Prog.Modern Biomed.,2008,8(8):1452-1456.
    [25]Chai F S,Xing J.Echinoderm coelomocytes[J].Zoological Stud.,1996,35(4):231-254.
    [26]Smith L C,Ghosh J,Buckley K M,et al..Echinoderm immunity[J].Adv.Exp.Med.Biol.,2010,708(2):260-301.
    [27]张峰.棘皮动物体内防御机制的研究进展[J].大连海洋大学学报,2005,20(4):340-344.Zhang F.Progresses in research on defence mechanism of echinoderms[J].J.Dalian Fish.Univ.,2005,20(4):340-344.
    [28]Mechnikov I I,Starling F A,Starling E H,et al..Lectures on the Comparative Pathology of Inflammation:Delivered at the Pasteur Institute in 1891[M].New York:Silverstein Dover Publications,1968.
    [29]马洪明,麦康森.贝类血细胞的吞噬作用和非我识别[J].海洋科学,2003,27(2):16-18.Ma H M,Mai K S.Phagocytosis and non-self recognition of molluscan blood cells:A review[J].Marine Sci.,2003,27(2):16-18.
    [30]吴芳丽,王月,尚跃勇,等.水生无脊椎动物血淋巴细胞分类及免疫研究进展[J].大连海洋大学学报,2016,31(6):696-704.Wu F L,Wang Y,Shang Y Y,et al..Current progress of research on classification and immunity of hemocytes in aquatic invertebrates:A review[J].J.Dalian Fish.Univ.,2016,31(6):696-704.
    [31]Ito T,Matsutani T,Mori K,et al..Phagocytosis and hydrogen peroxide production by phagocytes of the sea urchin Strongylocentrotus nudus[J].Dev.Comparative Immunol.,1992,16(4):287-294.
    [32]李华,陈静,李强,等.仿刺参体腔细胞吞噬与凝集功能及其与温度的关系[J].大连海洋大学学报,2009,24(3):189-194.Li H,Chen J,Li Q,et al..Phagocytosis and agglutination of coelomocytes in sea cucumber Apostichopus japonicus with relation to water temperature[J].J.Dalian Fish.Univ.,2009,24(3):189-194.
    [33]Xing J.Phagocytosis by amoebocytes in a sea cucumber,Holothuria leucospilota[D].Hong Kong:Hong Kong University of Science and Technology,Doctor Dissertation,1997.
    [34]赵爽,袁超,万籁声,等.壳寡糖对热带糙海参(Holothuria scabra)体腔细胞吞噬活性影响[J].基因组学与应用生物学,2017,36(8):3237-3240.Zhao S,Yuan C,Wan L S,et al..Effect of COS on phagocytic activity of coelomic cell of tropical sea cucumber(Holothuria scabra)[J].Genomics Appl.Biol.,2017,36(8):3237-3240.
    [35]张峰,李光友.贝类血细胞活性氧体内防御作用的研究进展[J].海洋科学,1999,23(2):16-19.Zhang F,Li G Y.Progress on research of reactive oxygen intermediates of molluscs hemocytes in internal defense[J].Marine Sci.,1999,23(2):16-19.
    [36]Dyrynda E A,Pipe R K,Burt G R,et al..Modulations in the immune defences of mussels(Mytilus edulis)from contaminated sites in the UK[J].Aquatic Toxicol.,1998,42(3):169-185.
    [37]Bai N,Gu M.Roles of zinc and selenium in protecting sea cucumber Apostichopus japonicus,coelomocytes against lipopolysaccharide-induced oxidative stress in vitro[J].Aquacult.Res.,2016,4(4):1856-1865.
    [38]李明,张思,张建清,等.温度、盐度和p H对仿刺参体腔细胞活性氧产生的影响[J].水产科学,2016,35(4):346-351.Li M,Zhang S,Zhang J Q,et al..Effects of water temperature,salinity and p H on production of ROS by coelomocytes of sea cucumber(Apostichopus japonicus)[J].Fish.Sci.,2016,35(4):346-351.
    [39]Li C,Zhao M,Zhang C,et al..MiR210 modulates respiratory burst in Apostichopus japonicus,coelomocytes via targeting Tolllike receptor[J].Dev.Comparative Immunol.,2016,65(12):377-381.
    [40]Lu M,Zhang P,Li C,et al..MiR-31 modulates coelomocytes ROS production via targeting p105 in Vibrio splendidus challenged sea cucumber Apostichopus japonicus in vitro and in vivo[J].Fish Shellfish Immunol.,2015,45(2):293-299.
    [41]Werner S,Grose R.Regulation of wound healing by growth factors and cytokines[J].Physiol.Rev.,2003,83(3):835-870.
    [42]Lv Z,Zhang Z,Wei Z,et al..HMGB3 modulates ROSproduction via activating TLR cascade in Apostichopus japonicus[J].Dev.Comparative Immunol.,2017,77:128-137.
    [43]樊廷俊,杜玉堂,丛日山,等.罗氏海盘车腕再生过程的组织学研究[J].中国海洋大学学报,2005,35(4):559-563.Fan T J,Du Y T,Cong R S,et al..Histological examination of arm regeneration process in starfish Asterias rollestoni[J].Periodical Ocean Univ.China,2005,35(4):559-563.
    [44]García-Arrarás J E,San M J E.Common cellular events occur during wound healing and organ regeneration in the sea cucumber Holothuria glaberrima[J].BMC Dev.Biol.,2007,7(1):1-19.
    [45]Bossche J P,Jangoux M.Epithelial origin of starfish coelomocytes[J].Nature,1976,261(5557):227-228.
    [46]Matranga V,Pinsino A,Celi M,et al..Monitoring chemical and physical stress using sea urchin immune cells[J].Prog.Mol.Subcellular Biol.,2005,39(2):85-110.
    [47]Hatanaka M.A study of the caudate holothurian,Molpadia roretzii(V.Marenzeller)[J].Sci.Rep.Tohoku Univ.,1939,14(3):155-190.
    [48]Prosser C L,Judson C L.Pharmacology of Haemal vessels of Stichopus californicus[J].Biol.Bull.,1952,102(3):249-251.
    [49]Hetzel H R.Studies on Holothurian coelomocytes.II.The origin of coelomocytes and the formation of brown bodies[J].Biol.Bull.,1965,128(1):102-111.
    [50]Hérouard E.Recherches sur les holothuries des còtes de France[J].Archives Zoologie Exp.Générale,1889,7(2):573-704.
    [51]Endean R.The coelomocytes of Holothuria leucospilota[J].J.Cell Sci.,1958,99(45):47-60.
    [52]Hausmann M M.Entstehung und funktion von gefassystem und blut auf cellular-physiologischer Grundlage[J].Acta Zoologica,2010,12(2-3):265-483.
    [53]Cuénot L.Etudes sur le sang et les glandes lymphatiques dans la serie animale(2 partie:Invertebres)[J].Archives Zoologie Exp.Générale,1891,2(9):13-19.
    [54]Smith A C.A proposed phylogenetic relationship between sea cucumber polian vesicles and the vertebrate lymphoreticular system[J].J.Invertebrate Pathol.,1978,31(3):353-357.
    [55]Liebman E.The leucocytes of Arbacia Punctulata[J].Biol.Bull.,1950,98(1):46-59.
    [56]Millott N.Injury and the axial organ of echinoids[J].Experientia,1969,25(7):756-757.
    [57]Bachmann S,Goldschmid A.Fine structure of the axial complex of Sphaerechinus granularis(Lam.)(Echinodermata:Echinoidea)[J].Cell Tiss.Res.,1978,193(1):107-123.
    [58]Wang Y,Meng S,Zhang J,et al..Production,characterization and application of monoclonal antibodies to the coelomocytes of sea urchin Strongylocentrotus intermedius[J].Fish Shellfish Immunol.,2018,75(4):301-307.
    [59]Leclerc M,Bajelan M.Homologous antigen for T cell receptor in axial organ cells from the asterid Asterias rubens[J].Cell Biol.Int.Rep.,1992,16(5):487-490.
    [60]Sharlaimova N,Shabelnikov S,Petukhova O.Small coelomic epithelial cells of the starfish Asterias rubens L.that are able to proliferate in vivo and in vitro[J].Cell Tiss.Res.,2014,356(1):83-95.
    [61]Holm K,Dupont S,Sk9ld H,et al..Induced cell proliferation in putative haematopoietic tissues of the sea star,Asterias rubens(L.)[J].J.Exp.Biol.,2008,211(16):2551-2558.

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