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Sanders_2025_JEB_data.xlsx

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DataCite Commons2025-08-18 更新2025-09-08 收录
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High environmental <i>P</i><sub>CO2</sub> in aquatic systems typically impairs physiologyand performance in ectotherms; however, the effects of high CO<sub>2</sub> onprotein degradation, a key process in protein homeostasis and growth,remain poorly understood. In this study, we investigated the effects ofincreasing environmental <i>P</i><sub>CO2</sub> (ambient, 5000 and 10,000 μatm) onmetabolism, oxidative stress and protein ubiquitination (an indicator ofprotein degradation) in whiteleg shrimp (<i>Penaeus vannamei)</i>. Standardmetabolic rate was elevated by &gt;2-fold at 5000 and 10,000 μatm<i>P</i><sub>CO2</sub>, but this was not associated with increased post-prandialoxygen consumption or oxidative protein damage. However, levels ofprotein K48 ubiquitin were reduced by up to 10-fold at 10,000 μatm<i>P</i><sub>CO2</sub> compared with ambient controls, suggesting high <i>P</i><sub>CO2</sub> severelyaffects protein degradation. Our findings reveal that while <i>P. vannamei</i>appear resistant to elevated CO<sub>2</sub>, fundamental modifications to proteindegradation and homeostasis may affect long-term performance andgrowth in this species.

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figshare
创建时间:
2025-08-18
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