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Black band disease as a possible factor of the coral decline at the northern reef-flat of Yongxing Island, South China Sea

机译:黑带病是南海永兴岛北部礁滩珊瑚衰退的可能因素

摘要

Black band disease (BBD), characterized by the Cyanobacterial dominated pathogenic consortium, is thought to play a key role in the global decline of the coral reef ecosystems. The present paper originally documents a case of BBD from Yongxing Island (Xisha Islands, South China Sea), and further probes the reasons of this abnormal phenomenon. Prior to 2007, corals at northern reef-flat of Yongxing Isand were in healthy growth. Catastrophic coral mortality occurred between 2007 and 2008. The 16S rRNA gene sequencing and PCR amplification, with universally conserved primers, were applied to detect the contagious bacterial community of the microbial mat. The results demonstrated that six bacterial divisions constituted the clone libraries derived from the BBD mat, and that Cyanobacteria are the most diversely represented group that inhabit BBD bacterial mats, despite the fact that species in five others divisions (alpha-Proteobacteria, gamma-Proteobacteria, Bacteroidetes, Verrucomicrobia and Actinobacteria) are also consistently diverse within the BBD mats of diseased coral. Other factors such as coral bleaching, typhoons, ocean acidification and crown-of-thorns starfish outbreaks, are not primarily responsible for the coral mortality within such a short time interval. The disaster expansion of BBD associated with Cyanobacterial blooms is a more likely mechanism impacting these coral reefs. Excessive human activity enhances the eutrophication of the marine water of the reefal region and may result in occurrence of the BBD.
机译:黑带病(BBD)以蓝细菌为主的致病性财团为特征,被认为在珊瑚礁生态系统的全球衰退中起关键作用。本文最初记录了来自永兴岛(南海西沙群岛)的BBD病例,并进一步探讨了这种异常现象的原因。在2007年之前,永兴岛的北部礁滩上的珊瑚处于健康生长状态。灾难性的珊瑚死亡发生在2007年至2008年之间。应用16S rRNA基因测序和PCR扩增以及通用的引物,检测了微生物垫的传染性细菌群落。结果表明,有六个细菌科构成了来自BBD垫的克隆文库,并且蓝细菌是居住在BBD细菌垫上的代表最多的群体,尽管事实上其他五个科中的物种(α-变形杆菌,γ-变形杆菌,在患病珊瑚的BBD垫内,拟杆菌,疣状微菌和放线菌也一贯多样化。其他因素,例如珊瑚褪色,台风,海洋酸化和荆棘冠海星暴发,并不是造成如此短时间内珊瑚死亡的主要原因。与蓝藻花开有关的BBD的灾难性扩展是影响这些珊瑚礁的更可能的机制。人类过度活动会增加暗礁区域海水的富营养化,并可能导致BBD的发生。

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