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Reduced spore germination explains sensitivity of reef-building algae to climate change stressors

机译:孢子萌发减少解释了造礁藻类对气候变化压力的敏感性

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摘要

Reduced seawater pH and changes in carbonate chemistry associated with ocean acidification (OA) decrease the recruitment of crustose coralline algae (CCAcf.), an important coral-reef builder. However, it is unclear whether the observed decline in recruitment is driven by impairment of spore germination, or post-settlement processes (e.g. space competition). To address this, we conducted an experiment using a dominant CCA, Porolithon cf. onkodes to test the independent and combined effects of OA, warming, and irradiance on its germination success and early development. Elevated CO2 negatively affected several processes of spore germination, including formation of the germination disc, initial growth, and germling survival. The magnitude of these effects varied depending on the levels of temperature and irradiance. For example, the combination of high CO2 and high temperature reduced formation of the germination disc, but this effect was independent of irradiance levels, while spore abnormalities increased under high CO2 and high temperature particularly in combination with low irradiance intensity. This study demonstrates that spore germination of CCA is impacted by the independent and interactive effects of OA, increasing seawater temperature and irradiance intensity. For the first time, this provides a mechanism for how the sensitivity of critical early life history processes to global change may drive declines of adult populations of key marine calcifiers.
机译:海水pH值的降低以及与海洋酸化(OA)相关的碳酸盐化学的变化,会减少重要的珊瑚礁建造者of壳珊瑚藻(CCAcf。)的募集。但是,尚不清楚观察到的募集减少是由孢子萌发受损或沉降后过程(例如空间竞争)引起的。为了解决这个问题,我们使用占主导地位的CCA Porolithon cf进行了实验。 onkodes测试OA,变暖和辐照度对其发芽成功和早期发育的独立和综合影响。 CO2浓度升高会对孢子萌发的几个过程产生负面影响,包括发芽盘的形成,初始生长和幼苗存活。这些影响的大小取决于温度和辐照度的水平。例如,高CO 2和高温的组合减少了发芽盘的形成,但是这种作用与辐照水平无关,而孢子异常在高CO 2和高温下增加,特别是在低辐照强度下。这项研究表明,CCA的孢子萌发受到OA的独立和交互作用,海水温度和辐照强度增加的影响。这首次为重要的早期生命史过程对全球变化的敏感性提供了一种机制,该机制如何推动关键海洋钙化剂的成年种群数量下降。

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