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耐低氧能力,而不是耐低 pH 值能力,与加利福尼亚食藻虫种群的纬度渐变有关。

Hypoxia tolerance, but not low pH tolerance, is associated with a latitudinal cline across populations of Tigriopus californicus.

机构信息

Biology Department, University of North Carolina at Chapel Hill, Chapel Hill, NC, United States of America.

出版信息

PLoS One. 2022 Oct 27;17(10):e0276635. doi: 10.1371/journal.pone.0276635. eCollection 2022.

Abstract

Intertidal organisms must tolerate daily fluctuations in environmental parameters, and repeated exposure to co-occurring conditions may result in tolerance to multiple stressors correlating. The intertidal copepod Tigriopus californicus experiences diurnal variation in dissolved oxygen levels and pH as the opposing processes of photosynthesis and cellular respiration lead to coordinated highs during the day and lows at night. While environmental parameters with overlapping spatial gradients frequently result in correlated traits, less attention has been given to exploring temporally correlated stressors. We investigated whether hypoxia tolerance correlates with low pH tolerance by separately testing the hypoxia and low pH stress tolerance separately of 6 genetically differentiated populations of T. californicus. We independently checked for similarities in tolerance for each of the two stressors by latitude, sex, size, and time since collection as predictors. We found that although hypoxia tolerance correlated with latitude, low pH tolerance did not, and no predictor was significant for both stressors. We concluded that temporally coordinated exposure to low pH and low oxygen did not result in populations developing equivalent tolerance for both. Although climate change alters several environmental variables simultaneously, organisms' abilities to tolerate these changes may not be similarly coupled.

摘要

潮间带生物必须耐受环境参数的日常波动,并且反复暴露于同时发生的条件下可能导致对相关联的多种胁迫的耐受。潮间带桡足类动物加利福尼亚桡足虫经历溶解氧水平和 pH 值的昼夜变化,因为光合作用和细胞呼吸这两个相反的过程导致白天的协调高点和夜间的低点。虽然具有重叠空间梯度的环境参数经常导致相关特征,但对同时发生的胁迫的研究关注较少。我们通过分别测试 6 个遗传分化的加利福尼亚桡足虫种群的缺氧和低 pH 胁迫耐受性,来研究缺氧耐受性是否与低 pH 耐受性相关。我们分别以纬度、性别、大小和收集后时间作为预测因子,独立检查了两种胁迫的耐受性相似性。我们发现,尽管缺氧耐受性与纬度相关,但低 pH 耐受性却没有,并且对于两种胁迫,都没有预测因子是显著的。我们得出结论,对低 pH 和低氧的时间协调暴露并没有导致种群对两者产生等效的耐受。尽管气候变化同时改变了几个环境变量,但生物体耐受这些变化的能力可能不会类似地耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7785/9612455/a0cb782a616f/pone.0276635.g001.jpg

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