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Defense Responses to Short-term Hypoxia and Seawater Acidification in the Thick Shell Mussel Mytilus coruscus

机译:厚壳贻贝贻贝的短期缺氧和海水酸化的防御反应。

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摘要

The rising anthropogenic atmospheric CO2 results in the reduction of seawater pH, namely ocean acidification (OA). In East China Sea, the largest coastal hypoxic zone was observed in the world. This region is also strongly impacted by ocean acidification as receiving much nutrient from Changjiang and Qiantangjiang, and organisms can experience great short-term natural variability of DO and pH in this area. In order to evaluate the defense responses of marine mussels under this scenario, the thick shell mussel Mytilus coruscus were exposed to three pH/pCO2 levels (7.3/2800 μatm, 7.7/1020 μatm, 8.1/376 μatm) at two dissolved oxygen concentrations (DO, 2.0, 6.0 mg L−1) for 72 h. Results showed that byssus thread parameters, such as the number, diameter, attachment strength and plaque area were reduced by low DO, and shell-closing strength was significantly weaker under both hypoxia and low pH conditions. Expression patterns of genes related to mussel byssus protein (MBP) were affected by hypoxia. Generally, hypoxia reduced MBP1 and MBP7 expressions, but increased MBP13 expression. In conclusion, both hypoxia and low pH induced negative effects on mussel defense responses, with hypoxia being the main driver of change. In addition, significant interactive effects between pH and DO were observed on shell-closing strength. Therefore, the adverse effects induced by hypoxia on the defense of mussels may be aggravated by low pH in the natural environments.
机译:人为大气中二氧化碳的增加导致海水pH值降低,即海洋酸化(OA)。在东海,观察到世界上最大的沿海缺氧区。该区域还受到海洋酸化的强烈影响,因为它吸收了来自长江和钱塘江的大量养分,而且该区域的有机物在短期内会发生DO和pH的自然变化。为了评估这种情况下海洋贻贝的防御反应,将厚壳贻贝Mytilus coruscus在两个溶解氧浓度下暴露于三个pH / pCO2水平(7.3 / 2800μatm,7.7 / 1020μatm,8.1 / 376μatm)( DO,2.0,6.0 mg L -1 )72小时。结果表明,低氧降低了底线参数,例如数量,直径,附着强度和菌斑面积,而在低氧和低pH条件下,闭合力均显着减弱。缺氧影响贻贝byssus蛋白(MBP)相关基因的表达方式。通常,缺氧会降低MBP1和MBP7的表达,但会增加MBP13的表达。总之,低氧和低pH值都对贻贝防御反应产生负面影响,而低氧是变化的主要驱动力。另外,观察到pH和DO之间的显着相互作用对壳闭合强度的影响。因此,低氧在自然环境中会加剧缺氧引起的贻贝防御能力的不利影响。

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