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首页> 外文期刊>Marine ecology progress series >Exposure to elevated pCO_2 does not exacerbate reproductive suppression of Aurelia aurita jellyfish polyps in low oxygen environments
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Exposure to elevated pCO_2 does not exacerbate reproductive suppression of Aurelia aurita jellyfish polyps in low oxygen environments

机译:在低氧环境中暴露于升高的pCO_2并不会加剧对金黄色葡萄球菌水poly息肉的生殖抑制作用

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Eutrophication-induced hypoxia is one of the primary anthropogenic threats to coastal ecosystems. Under hypoxic conditions, a deficit of O-2 and a surplus of CO2 will concurrently decrease pH, yet studies of hypoxia have seldom considered the potential interactions with elevated pCO(2) (reduced pH). Previous studies on gelatinous organisms concluded that they are fairly robust to low oxygen and reduced pH conditions individually, yet the combination of stressors has only been examined for ephyrae. The goals of this study were to determine the individual and interactive effects of hypoxia and elevated pCO(2) on the asexual reproduction and aerobic respiration rates of polyps of the scyphozoan Aurelia aurita during a manipulative experiment that ran for 36 d. pCO(2) and pO(2) were varied on a diel basis to closely mimic the diel conditions ob served in the field. Exposure to low dissolved oxygen (DO) reduced asexual budding of polyps by similar to 50% relative to control conditions. Under hypoxic conditions, rates of respiration were elevated during an initial acclimation period (until Day 8), but respiration rates did not differ between DO levels under prolonged exposure. There was no significant effect of increased pCO(2) on either asexual reproduction or aerobic respiration, suggesting that elevated pCO(2) (reduced pH) did not exacerbate the negative reproductive effects of hypoxia on A. aurita polyps.
机译:富营养化引起的缺氧是沿海生态系统的主要人为威胁之一。在低氧条件下,O-2的缺乏和CO2的过量会同时降低pH,但是低氧研究很少考虑过与升高的pCO(2)(pH降低)的潜在相互作用。先前对凝胶状生物的研究得出的结论是,它们对低氧和降低的pH条件具有相当强的抵抗力,但仅对应激源的组合进行了e气检查。这项研究的目的是确定缺氧和pCO(2)升高对进行了36 d的操纵实验期间,对无尾藻Aurelia aurita息肉的无性繁殖和有氧呼吸速率的个体和交互作用。 pCO(2)和pO(2)在diel的基础上进行变化,以紧密模拟在现场观察到的diel条件。相对于对照条件,暴露于低溶解氧(DO)可将息肉的无性萌芽减少约50%。在低氧条件下,呼吸的速率在最初的适应期(直到第8天)升高,但在长时间接触的DO水平之间,呼吸速率没有差异。增加pCO(2)对无性繁殖或有氧呼吸均无显着影响,提示升高的pCO(2)(pH降低)不会加剧缺氧对金黄色葡萄球菌息肉的负面生殖作用。

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