盐度胁迫对三疣梭子蟹肌肉和血淋巴中游离氨基酸含量的影响
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中国水产科学研究院 黄海水产研究所与大连海洋大学联合培养,中国水产科学研究院 黄海水产研究所,中国水产科学研究院 黄海水产研究所,中国水产科学研究院 黄海水产研究所,中国水产科学研究院 黄海水产研究所

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国家自然科学基金面上项目(41576147);国家自然科学基金青年基金(41306177);泰山领军人才工程高效生态农业创新类计划(LJNY2015002)


Effects of different salinity level on free amino acid composition in muscle and hemolymph of the swimming crab Portunus trituberculatus
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Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences,Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences,Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences,Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences,Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences

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    摘要:

    为探究不同盐度环境下三疣梭子蟹肌肉和血淋巴中游离氨基酸(free amino acids,FAAs)的含量及浓度的变化规律,明确FAAs的组成以及在盐度适应中发挥的作用,丰富FAAs在甲壳动物盐度适应领域的研究,为后续分子机理的研究提供依据,实验设定胁迫盐度分别为10、20、40、50,以正常海水(盐度33)为对照,用日立835-50型氨基酸自动分析仪测定三疣梭子蟹血淋巴与肌肉组织中游离氨基酸的组分,分析不同盐度环境下三疣梭子蟹肌肉和血淋巴中FAAs的含量及变化规律。结果显示,在正常海水中三疣梭子蟹血淋巴和肌肉中含量较高的FAAs主要为牛磺酸(Tau)、精氨酸(Arg)、甘氨酸(Gly)、脯氨酸(Pro)和丙氨酸(Ala)。盐度为10~50,梭子蟹肌肉和血淋巴总游离氨基酸(total free amino acid,TOFAA)的含量随盐度的增加而显著升高,非必需氨基酸(non-essentical free amino acid,NEAA)的含量随盐度的升高而上升,而必需氨基酸(essentical free amino acid,EAA)的含量变化不显著,因此,TOFAA在渗透压调节方面的作用主要取决于NEAA。发挥主要渗透压调节作用的FAAs为脯氨酸(Pro)、丙氨酸(Ala)、甘氨酸(Gly)、天冬氨酸(Asp)、谷氨酸(Glu)。Ala、Gly、Asp、Glu属于鲜味氨基酸(taste amino acid,TAA),研究表明,NEAA中的TAA在渗透压调节方面作用显著,Pro含量的升高对TOFAA含量的增加作用显著,盐度为40~50尤甚,表明Pro在梭子蟹高渗调节中发挥重要作用。

    Abstract:

    Salinity is one of the most important factors influencing distribution, abundance and the physiology of aquatic animals. Changes in ambient salinity are directly related to osmoregulation capacity. During acclimation to salinity, the main challenge for aquatic animals is to regulate their osmotic pressure to maintain normal life activities. As the predominant aquatic animal, crustaceans can dwell in seawater and fresh water due to their various osmoregulatory mechanisms. The two forms of osmoregulatory mechanisms are anisosmotic extracellular regulation (AER) and intracellular isosmotic regulation (IIR). AER can mainly control the osmolality of the body fluid through regulation of gills and antennal glands, while IIR maintains intracellular osmolality and maintain the balance between tissues and the hemolymph primarily by regulating amino acids (FAAs) especially non-essential amino acids (NEAA). Under excessive changes in environmental salinity, it's difficult for body fluid osmolality to be maintained at a completely stable level through AER. At that point, it's believed that IIR compensates for AER by accumulating or degrading some particular NEAA as osmolytes, effectivley moderating fluctuations in extracellular osmolality and facilitating volume readjustment. Hemolymph is directly involved in responding to salinity exposure and muscle is the major tissue for protein deposition and possibly represents the main pool of amino acids. Therefore muscle tissue and hemolymph are very important to study FAAs's involvement in osmotic pressure regulation.The experiment analyses the free amino acids content and concentration variation in muscle and hemolymph of Portunus trituberculatus at different salinities. Clarify the composition of FAAs and its function in the salinity adaptation.Enrich the FAAs in the field of salinity adaptation and provide the basis for further study of the molecular mechanism. The contents of FAAs were measured at salinities and the experiment lasted for 5 days.Determination of FAAs extraction solution of muscle and hemolymph with Hitachi 835-50 automatic amino acid analyzer.Results showed that the highest amounts of individual FAA in seawater-adapted P. trituberculatus was exhibited by Tauine, Arg, Gly, Pro and Ala. As salinity increased, the total free amino acids (TOFAA) of the hemolymph and muscle increased significantly. NEAA increased significantly when the salinity varied from 10 to 50 while Essential FAA (EAA) was not affected by external salinity change. The result showed that FAAs played an important role in salinity adaptation, especially Pro, Ala, Gly, Asp and Glu.Because Ala, Gly, Asp, Glu belong to the taste amino acids (TAA), so TAA played an important role in osmoregulation.The content of Pro increased significantly both in muscle and hemolymph, especially from 40 to 50 period. Therefore Pro played the most important role in hyperosmotic stress.

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付萍,吕建建,刘萍,李健,高保全.盐度胁迫对三疣梭子蟹肌肉和血淋巴中游离氨基酸含量的影响[J].水产学报,2017,41(3):374~381

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  • 收稿日期:2016-02-14
  • 最后修改日期:2016-09-08
  • 录用日期:2016-11-15
  • 在线发布日期: 2017-03-17
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