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Stability of symbiotic dinoflagellate type in the octocoral Briareum asbestinum

机译:八齿Breareas asbestinum中共生鞭毛藻类型的稳定性

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摘要

Coral bleaching-the loss of photosynthetic algal symbionts from their cnidarian hosts - can lead to coral mortality and subsequent reef degradation. To understand the phenomenon of coral bleaching it is imperative to understand natural fluctuations in symbiotic dinoflagellate diversity and density. In this study, Symbiodinium type, based on length variation in domain V of the chloroplast large subunit of rDNA (cp23S rDNA), and cell densities were followed in 2 populations of the octocoral Briareum asbestinum over 1 yr. Symbiodinium type varied little over the course of the study despite anomalously cold sea surface temperatures during January 2003, when B. asbestinum populations experienced a significant loss of symbionts. This provides some of the first evidence that Caribbean octocorals are susceptible to cold-water bleaching events. Furthermore, the symbiont stability observed within B. asbestinum contributes to an increasing number of studies suggesting that many zooxanthellate coral species may not respond to fluctuating environments by changing symbionts.
机译:珊瑚白化-从其刺胞宿主中失去光合藻类共生体-可能导致珊瑚死亡和随后的珊瑚礁退化。要了解珊瑚褪色现象,必须了解共生鞭毛藻多样性和密度的自然波动。在这项研究中,Symbiodinium类型基于1年以上rDNA(cp23S rDNA)叶绿体大亚基(cp23S rDNA)的结构域V的长度变化,并跟踪了2个八倍体Briareum asbestinum的细胞密度。尽管在2003年1月海面温度异常异常,共生菌素的类型在整个研究过程中变化不大,当时石蒜双歧杆菌种群经历了明显的共生菌损失。这提供了一些初步证据,表明加勒比八面体容易受到冷水漂白事件的影响。此外,在天冬孢杆菌中观察到的共生体稳定性促进了越来越多的研究,这表明许多虫黄藻类珊瑚物种可能不会通过改变共生体来应对不断变化的环境。

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