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温度和盐度对菲律宾蛤仔消化和呼吸代谢的综合影响。

The combined effects of temperature and salinity on the digestion and respiration metabolism of Pinctada fucata.

机构信息

Tropical Aquaculture Research and Development Center, South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Sanya, Hainan, People's Republic of China.

Key Laboratory of South China Sea Fishery Resources Exploitation and Utilization, Ministry of Agriculture and Rural Affairs, Guangzhou, Guangdong, People's Republic of China.

出版信息

Sci Rep. 2022 Dec 14;12(1):21644. doi: 10.1038/s41598-022-26168-0.

Abstract

The combined effects of temperature and salinity on the digestion and respiration metabolism of Pinctada fucata were evaluated via response surface methodology and box-benhnken design under laboratory condition. Results indicated that the primary and secondary effects of salinity and temperature had significant effects on amylase (AMS) of P. fucata (P < 0.05)., The digestive enzyme reached the maximum activity when temperature was 26 °C. The AMS and trypsin (TRYP) increased at first, and then decreased with increasing temperature. The Lipase (LPS) was positively correlated with either salinity or temperature. Salinity had no significant effect on TRYP as a primary effect (P > 0.05), but had a significant effect on TRYP as a secondary effect (P < 0.01). These effects were completely opposite to the effect of temperature on pepsin (PEP) as primary and secondary effects. The combined effects of salinity and temperature on AMS, TRYP and PEP were significant (P < 0.01), but had no significant effect on LPS (P > 0.05). The primary, secondary and interaction effects of salinity had significant effects on NKA (Na-K-ATPase) of P. fucata (P < 0.05), and NKA presented a U-shaped distribution with increasing salinity. The quadratic and interactive effects of temperature had a significant effect on AKP (P < 0.05), and AKP showed a U-shaped distribution with increasing temperature. Lactate dehydrogenase (LDH) activity decreased at first, and then increased when temperature and salinity changed from 20 to 30 °C and 23-33 ‰, respectively. The expression of GPX gene affected by temperature in gills may be delayed compared with that in hepatopancreas, and its expression is tissue-specific. The appropriate digestion and respiratory metabolism index models were established under the combined temperature and salinity conditions. The optimization results showed that the optimal combination of temperature and salinity was 26.288 °C/28.272‰. The desirability was 0.832. Results from the present study will provide a theoretical reference for shellfish culture affected by environmental interactions and the establishment of related index models.

摘要

采用响应面法和 Box-Behnken 设计,在实验室条件下评价了温度和盐度对菲律宾蛤仔(Pinctada fucata)消化和呼吸代谢的综合影响。结果表明,盐度和温度的主次效应对菲律宾蛤仔的淀粉酶(AMS)有显著影响(P<0.05)。当温度为 26°C 时,消化酶达到最大活性。AMS 和胰蛋白酶(TRYP)先升高,然后随温度升高而降低。脂肪酶(LPS)与盐度或温度呈正相关。盐度对 TRYP 没有显著的主效影响(P>0.05),但对 TRYP 有显著的次效影响(P<0.01)。这些效应与温度对胃蛋白酶(PEP)的主、次效影响完全相反。盐度和温度对 AMS、TRYP 和 PEP 的综合影响显著(P<0.01),但对 LPS 无显著影响(P>0.05)。盐度的主次效和交互效均对菲律宾蛤仔的 Na-K-ATP 酶(NKA)有显著影响(P<0.05),NKA 随盐度升高呈 U 型分布。温度的二次和交互效对 AKP 有显著影响(P<0.05),AKP 随温度升高呈 U 型分布。当温度和盐度分别从 20°C 升高至 30°C 和 23‰升高至 33‰时,L-乳酸脱氢酶(LDH)活性先降低后升高。温度对鳃中 GPX 基因的影响可能比肝胰腺中滞后,且表达具有组织特异性。在温度和盐度的综合条件下,建立了适宜的消化和呼吸代谢指标模型。优化结果表明,温度和盐度的最佳组合为 26.288°C/28.272‰,理想度为 0.832。本研究结果可为贝类养殖受环境相互作用及相关指标模型建立的理论参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e36a/9751112/c0b06c7eb26d/41598_2022_26168_Fig1_HTML.jpg

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