三种扇贝种间血液生理指标比较及热胁迫对栉孔扇贝血液生理指标的影响

Comparison of blood physiological parameters between three species of scallops and the effect of heat stress on blood physiological parameters in Chlamys farreri

  • 摘要: 为了比较3种扇贝血液中的K+、Na+、Ca2+和Cl浓度,血氧(pO2)和血二氧化碳(pCO2)气体分压及血液酸碱度(pH)的差异情况,实验利用血气分析仪对栉孔扇贝、虾夷扇贝和海湾扇贝的血液生理指标进行测定。结果显示,扇贝的血液生理指标呈现显著的物种差异,其中栉孔扇贝血液的K+浓度(15.74±1.47) mmol/L、Na+浓度(388.07±11.38) mmol/L、Cl浓度(462.43±6.88) mmol/L和pO2 (140.13±15.35) mmHg最高。此外,栉孔扇贝和虾夷扇贝的Ca2+浓度和pCO2含量较高,而海湾扇贝的pH最高。对相同月龄不同大小栉孔扇贝血液指标进行比较,发现栉孔扇贝的血液pH值与其壳高呈正相关(r=0.611),而生理指标与壳高呈负相关。随着温度的升高,栉孔扇贝血液的Ca2+浓度显著增加,而pO2显著下降,K+、Na+和Cl浓度先升高后恢复到初始水平,而pH和pCO2保持相对稳定。研究结果为贝类血液生理研究提供参考,也为贝类生理状态的评估提供了一种新的思路与方法。

     

    Abstract: Blood physiological parameters reflect the acid-base balance status and oxygen supply of organism by the ion concentration and partial pressure of gas in blood, and play an important role in the animal physiology and pathology. In order to compare three scallop species in terms of blood concentrations of K+, Na+, Ca2+ and Cl, partial blood pressures of O2 (pO2) and CO2 (pCO2), and blood acidity (pH), a blood gas analyzer was used to measure the blood physiological parameters of Chlamys farreri, Patinopecten yessoensis and Argopecten irradias. The results revealed that there were significant differences in blood physiological parameters between different species of scallops. Specifically, the values of K+ (15.74±1.47) mmol/L, Na+ (388.07±11.38) mmol/L, Cl concentrations (462.43±6.88) mmol/L and pO2 (140.13±15.35) mmHg were higher in the blood of C. farreri than other two scallops. The values of Ca2+ and pCO2 of P. yessoensis and C. farreri were higher than those of A. irradias, and the pH of A. irradias was highest among the three scallops. In addition, the blood pH of C. farreri was significantly positively correlated with shell height (r=0.611, P<0.05), while other physiological parameters were negatively correlated with it. With the increase of temperature, the concentration of Ca2+ increased significantly in the blood of C. farreri while pO2 decreased significantly. During the temperature change, the concentrations of K+, Na+ and Cl in C. farreri increased firstly and then recovered to the initial levels, while the values of pH and pCO2 remained relatively stable. The results provide basic information for blood physiology research and a new approach to the assessment of the physiological states of bivalves.

     

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