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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Seaweed-coral competition in the field: effects on coral growth, photosynthesis and microbiomes require direct contact
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Seaweed-coral competition in the field: effects on coral growth, photosynthesis and microbiomes require direct contact

机译:海藻 - 珊瑚竞争在现场:对珊瑚生长,光合作用和微生物体的影响需要直接接触

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摘要

A number of tropical reefs have transitioned from coral to macroalgal dominance, but the role of macroalgal competition in coral decline is debated. There is a need to understand the relative roles of direct coral-algal effects versus indirect, microbially mediated effects shaping these interactions, as well as the relevant scales at which interactions operate under natural field, as opposed to laboratory, conditions. We conducted a manipulative field experiment investigating how direct contact versus close proximity (approx. 1.5 cm) with macroalgae (Galaxaura rugosa, Sargassum polycystum) impacted the growth, photosynthetic efficiency, and prokaryotic microbiome of the common Indo-Pacific coral Acropora millepora. Both coral growth and photosynthetic efficiency were suppressed when in direct contact with algae or their inert mimics--but not when in close proximity to corals without direct contact. Coral microbiomes were largely unaltered in composition, variability, or diversity regardless of treatment, although a few uncommon taxa differed in abundance among treatments. Negative impacts of macroalgae were contact dependent, accounted for by physical structure alone and had minimal effects on coral microbiomes. The spatial constraints of these interactions have important implications for understanding and predicting benthic community dynamics as reefs degrade.
机译:许多热带珊瑚礁从珊瑚转变为宏观政府的优势,但争论珊瑚竞争的作用是争论的。需要了解直接珊瑚藻类效应与间接,微生物介导的效果塑造这些相互作用的相对作用,以及在自然场下运行的相互作用的相关尺度,而不是实验室,条件。我们进行了一种操纵领域实验,调查与大型宏观格(Galaxaura Rugosa,Sargassum Polycystum)的直接接触(约1.5厘米)对常见的印度 - 太平洋珊瑚Acropora Millepora的生长,光合效率和原核微生物组进行直接接触(约1.5厘米)。直接接触藻类或惰性模仿时抑制了珊瑚生长和光合效率 - 但不是在没有直接接触的情况下靠近珊瑚。珊瑚微生物在组成,可变性或多样性中大部分毫不含糊,虽然治疗少数罕见的分类群在治疗中的丰富差不同。大理石的负面影响依赖于接触,单独占物理结构,对珊瑚微生物体具有最小的影响。这些相互作用的空间限制对理解和预测底栖社区动态具有重要意义,因为珊瑚礁降解。

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