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Tolerance, Oxygen Consumption and Ammonia Excretion of Ophiopholis sarsii vadicola in Different Temperatures and Salinities
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作者 FANG Jinghui ZHANG Jihong +5 位作者 JIANG Zengjie ZHAO Xuewei JIANG Xu DU Meirong GAO Yaping FANG Jianguang 《Journal of Ocean University of China》 SCIE CAS 2015年第3期549-556,共8页
There are more than 2000 species of brittle stars in the world. For most of them, many scientific questions including basic characteristics of eco-physiology are still unknown. In the present study, Ophiopholis sarsii... There are more than 2000 species of brittle stars in the world. For most of them, many scientific questions including basic characteristics of eco-physiology are still unknown. In the present study, Ophiopholis sarsii vadicola acclimated at 15 ℃, salinity 31, were assessed for temperature monia excretion were studied at different temperatures (5, 10, and salinity tolerance. Its oxygen consumption and am- 15, 20, 25℃) and salinities (25, 30, 35). O. sarsii vadi- cola could tolerate 0-24℃ and no brittle star was dead in the salinity range of 19-48 in the experimental situation. Two-way ANOVA showed that the oxygen consumption and ammonia excretion normalized with both dry mass and wet mass, Q10, which is used to describe the temperature sensitivity of respiration, and moisture content were significantly affected by temperature and salinity, and the combined effects of the two factors were significant. Stepwise multiple regression analysis revealed that logarithmic oxygen consumption and ammonia excretion showed a significant positive relationship with logarithmic temperature and salinity. The logarithmic moisture content of the brittle stars showed an inverse relationship with logarithmic salinity, but a positive relationship with logarithmic temperature. This suggests that the tolerance of temperature and salinity of brittle stars is closely related to their living environment, and that the effects of temperature on oxygen consumption are more significant at higher salinity, and that the ammonia excretion is less affected by salinity at lower temperatures. 展开更多
关键词 Ophiopholis sarsii vadicola TOLERANCE oxygen consumption ammonia excretion TEMPERATURE SALINITY
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北极地区萨氏真蛇尾(Ophiura sarsii)群体遗传多样性研究
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作者 史文阁 李一璇 +4 位作者 NAZAROVA Sophia A 赵磊 郭健 范士亮 徐勤增 《海洋科学进展》 CAS CSCD 北大核心 2021年第3期441-451,共11页
为了解萨氏真蛇尾(Ophiura sarsii)群体遗传特性,本研究采用线粒体控制区(CR)、NADH脱氢酶亚基2(nad 2)和NADH脱氢酶亚基6(nad 6)三个标记对白令海、楚科奇海、巴伦支海萨氏真蛇尾进行群体遗传多样性、系统发育以及群体遗传结构分析。... 为了解萨氏真蛇尾(Ophiura sarsii)群体遗传特性,本研究采用线粒体控制区(CR)、NADH脱氢酶亚基2(nad 2)和NADH脱氢酶亚基6(nad 6)三个标记对白令海、楚科奇海、巴伦支海萨氏真蛇尾进行群体遗传多样性、系统发育以及群体遗传结构分析。结果显示,CR、nad 2和nad 6三个分子标记经扩增后分别获得322、598 bp和449 bp的序列,并在59个个体中依次检测出15、27和24个单倍型。研究分析可知:①3个分子标记显示3个群体单倍型多样性与核苷酸多样性较高,表明该种类在北极海域有较高的遗传多样性;②nad 2与nad 6揭示的单倍型多样性明显高于控制区片段;③遗传分化分析(F st和AMOVA)与系统发育分析结果一致。白令海与楚科奇海萨氏真蛇尾分化不明显,而巴伦支海萨氏真蛇尾群体形成明显不同的谱系,与上述两海域萨氏真蛇尾分化较为明显,显示了巴伦支海与白令海、楚科奇海萨氏真蛇尾出现明显的分化。综上所述,本文研究了北极海域萨氏真蛇尾的群体遗传结构,丰富了北极地区大型底栖生物的群体研究。 展开更多
关键词 萨氏真蛇尾 蛇尾 群体遗传结构 白令海 楚科奇海 巴伦支海
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北黄海3种常见蛇尾的主要营养成分分析 被引量:1
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作者 房景辉 张继红 +3 位作者 蒋增杰 毛玉泽 臧元奇 方建光 《渔业科学进展》 CSCD 北大核心 2015年第6期17-21,共5页
采用常规分析方法,对我国北黄海3种常见蛇尾种类[紫蛇尾(Ophiopholis mirabilis)、史氏盖蛇尾(Stegophiura sladeni)和浅水萨氏真蛇尾(Ophiura sarsii vadicola)]的主要营养成分进行了分析比较。将鲜活蛇尾样品超低温(?70℃)冷冻后,在... 采用常规分析方法,对我国北黄海3种常见蛇尾种类[紫蛇尾(Ophiopholis mirabilis)、史氏盖蛇尾(Stegophiura sladeni)和浅水萨氏真蛇尾(Ophiura sarsii vadicola)]的主要营养成分进行了分析比较。将鲜活蛇尾样品超低温(?70℃)冷冻后,在冷冻干燥机中干燥至恒重,用于成分分析。结果显示,3种蛇尾的水分含量均未超过50%,其中史氏盖蛇尾的水分含量最低,为41.61%(P<0.05),而其灰分含量最高,为80.70%(P<0.05)。3种蛇尾的氨基酸总量较低,其中紫蛇尾氨基酸总量最高,为14.90%(P<0.05)。紫蛇尾、史氏盖蛇尾和浅水萨氏真蛇尾必需氨基酸占总氨基酸的比值(EAA/TAA)依次为35.37%、29.58%和34.97%,紫蛇尾的必需氨基酸和呈味氨基酸总量均显著高于其他两种蛇尾(P<0.05),其氨基酸评分(AAS)、化学评分(CS)和必需氨基酸指数(EAAI)均是3种蛇尾中最高的。紫蛇尾、史氏盖蛇尾和浅水萨氏真蛇尾的不饱和脂肪酸含量分别为52.91%、50.03%和64.31%,其中浅水萨氏真蛇尾的不饱和脂肪酸含量显著高于其他两种蛇尾(P<0.05),而其饱和脂肪酸含量最低,仅为13.32%,显著低于其他两种蛇尾(P<0.05)。3种蛇尾富含矿物质元素,其中浅水萨氏真蛇尾的Ca、Mg含量最高,分别达到了348000 mg/kg和28500 mg/kg(P<0.05)。研究表明,这3种蛇尾不适合作为优质蛋白源,而可能用于补钙功能食品的开发,同时其体内较高的碳酸盐含量表明其可能对海洋碳汇具有重要意义。 展开更多
关键词 紫蛇尾 史氏盖蛇尾 浅水萨氏真蛇尾 营养成分
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