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沿海酸化和缺氧会增强定居行为,但不会影响伊鲁坎吉水母(立方水母目)的匍匐水螅体的运动行为。

Coastal acidification and deoxygenation enhance settlement but do not influence movement behaviour of creeping polyps of the Irukandji jellyfish, Alatina alata (Cubozoa).

机构信息

Australian Rivers Institute, School of Environment and Science, Griffith University, Southport, Queensland, 4215, Australia.

Australian Rivers Institute, School of Environment and Science, Griffith University, Southport, Queensland, 4215, Australia.

出版信息

Mar Environ Res. 2020 Dec;162:105175. doi: 10.1016/j.marenvres.2020.105175. Epub 2020 Oct 9.

DOI:10.1016/j.marenvres.2020.105175
PMID:33070064
Abstract

Deoxygenation and acidification co-occur in many coastal ecosystems because nutrient enrichment produces excess organic matter that intensifies aerobic respiration during decomposition, thereby depleting O, increasing CO and lowering pH. Despite this link between coastal deoxygenation (CD) and acidification (CA), and evidence that both stressors pose a risk to marine fauna, few studies have examined the effects of these drivers in combination on marine animals including invertebrates. Here, we studied the individual and combined effects of CD (1.5 mg L O) and CA (7.7 pH) on the survival, number of tentacles, settlement and movement behaviours of creeping polyps of the Irukandji jellyfish, Alatina alata. Low DO increased the survival rate (17% more) of the creeping polyps. 12% more creeping polyps settled in low pH than ambient pH and 16.7% more settled in low DO than ambient DO treatment. Exposure to CA and CD did not influence the number of tentacles, mobility or movement velocity of the creeping polyps, but after 4 h exposure to the treatments, they moved approximately half as fast. Our results indicate that CD can enhance survival and settlement success, but CA does not intensify these outcomes on A. alata creeping polyps.

摘要

在许多沿海生态系统中,脱氧和酸化同时发生,因为营养物质的丰富会产生过多的有机物质,这些物质在分解过程中会加剧需氧呼吸,从而耗尽氧气,增加二氧化碳并降低 pH 值。尽管沿海脱氧(CD)和酸化(CA)之间存在这种联系,并且有证据表明这两个胁迫因素对海洋动物群构成了风险,但很少有研究同时研究这些驱动因素对包括无脊椎动物在内的海洋动物的影响。在这里,我们研究了单独和联合的 CD(1.5 mg L O)和 CA(7.7 pH)对 Irukandji 水母,Alatina alata 的蠕动水螅体的存活率、触手数量、定居和运动行为的影响。低 DO 增加了蠕动水螅体的存活率(增加 17%)。与环境 pH 值相比,在低 pH 值下有 12%更多的蠕动水螅体定居,而在低 DO 值下有 16.7%更多的蠕动水螅体定居。CA 和 CD 的暴露并没有影响蠕动水螅体的触手数量、移动性或运动速度,但在处理暴露 4 小时后,它们的移动速度大约减半。我们的结果表明,CD 可以提高存活率和定居成功率,但 CA 不会加剧 A. alata 蠕动水螅体的这些结果。

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