Conspecific interactions between corals mediate the effect of submarine groundwater discharge on coral physiology.

IF 2.3 2区 环境科学与生态学 Q2 ECOLOGY
Jamie R Kerlin, Danielle M Barnas, Nyssa J Silbiger
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引用次数: 0

Abstract

Land-based inputs, such as runoff, rivers, and submarine groundwater, can alter biologic processes on coral reefs. While the abiotic factors associated with land-based inputs have strong effects on corals, corals are also affected by biotic interactions, including other neighboring corals. The biologic responses of corals to changing environmental conditions and their neighbors are likely interactive; however, few studies address both biotic and abiotic interactions in concert. In a manipulative field experiment, we tested how the natural environmental gradient created by submarine groundwater discharge (SGD) affected holobiont and symbiont metabolic rates and endosymbiont physiology of Porites rus. We further tested how the effect of SGD on the coral was mediated by intra and interspecific interactions. SGD is a natural land-sea connection that delivers nutrients, inorganic carbon, and other solutes to coastal ecosystems worldwide. Our results show that a natural gradient of nutrient enrichment and pH variability as a result of acute SGD exposure generally benefited P. rus, increasing gross photosynthesis, respiration, endosymbiont densities, and chlorophyll a content. Conspecifics in direct contact with the a neighboring coral, however, altered the relationship between coral physiology and SGD, lowering the photosynthetic and respiration rates from expected values when the coral had no neighbor. We show that the response of corals to environmental change is dependent on the types of nearby neighbor corals and how neighbors alter the chemical or physical environment around the coral. Our study underscores the importance of considering biotic interactions when predicting the physiologic responses of corals to the environment.

珊瑚之间的同种相互作用介导了海底地下水排放对珊瑚生理的影响。
陆地输入,如径流、河流和海底地下水,可以改变珊瑚礁的生物过程。虽然与陆地输入有关的非生物因素对珊瑚有很强的影响,但珊瑚也受到生物相互作用的影响,包括其他邻近的珊瑚。珊瑚对不断变化的环境条件及其周围环境的生物反应可能是相互作用的;然而,很少有研究同时处理生物和非生物的相互作用。在野外操作实验中,我们测试了海底地下水排放(SGD)产生的自然环境梯度对孔隙菌和共生体代谢率以及内共生生理的影响。我们进一步测试了SGD对珊瑚的影响是如何通过种内和种间相互作用介导的。SGD是一个天然的陆地-海洋连接,为全球沿海生态系统提供营养物质、无机碳和其他溶质。我们的研究结果表明,急性SGD暴露导致的营养物质富集和pH变化的自然梯度通常有利于p.s rus,增加总光合作用,呼吸作用,内共生密度和叶绿素a含量。然而,与邻近珊瑚直接接触的同种珊瑚改变了珊瑚生理和SGD之间的关系,降低了珊瑚没有邻居时的光合作用和呼吸速率的期望值。我们表明,珊瑚对环境变化的反应取决于附近邻居珊瑚的类型,以及邻居如何改变珊瑚周围的化学或物理环境。我们的研究强调了在预测珊瑚对环境的生理反应时考虑生物相互作用的重要性。
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来源期刊
Oecologia
Oecologia 环境科学-生态学
CiteScore
5.10
自引率
0.00%
发文量
192
审稿时长
5.3 months
期刊介绍: Oecologia publishes innovative ecological research of international interest. We seek reviews, advances in methodology, and original contributions, emphasizing the following areas: Population ecology, Plant-microbe-animal interactions, Ecosystem ecology, Community ecology, Global change ecology, Conservation ecology, Behavioral ecology and Physiological Ecology. In general, studies that are purely descriptive, mathematical, documentary, and/or natural history will not be considered.
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