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热应激会损害珊瑚的上皮完整性。

Heat stress compromises epithelial integrity in the coral, .

作者信息

Traylor-Knowles Nikki

机构信息

Department of Marine Biology and Ecology, University of Miami, Rosenstiel School of Marine and Atmospheric Sciences, Miami, FL, United States of America.

出版信息

PeerJ. 2019 Feb 26;7:e6510. doi: 10.7717/peerj.6510. eCollection 2019.

Abstract

It is well understood that heat stress causes bleaching in corals. Much work has focused on the way heat stress disrupts corals' symbiotic relationship with endosymbiotic algal dinoflagellate, Symbiodiniaceae, a process called bleaching. However, the damage to the coral tissue that occurs during the bleaching process and, importantly, the factors that contribute to subsequent recovery, are not well understood. I hypothesize that the host tissue damage created by heat stress initiates cascades of wound healing factors that maintain epithelial integrity. These factors may be found to contribute to the coral's potential capacity to recover. In this study, I present evidence that heat stress causes damage to the coral host tissue and that collagen is present in the gastrodermis of heat-stressed corals. I found that, during the early stages of bleaching, an important transcription factor for wound healing, Grainyhead, is expressed throughout the gastrodermis, where the cellular and tissue rearrangements occur. Lastly, using phylogenetics, I found that cnidarian Grainyhead proteins evolved three distinct groups and that evolution of this protein family likely happened within each taxonomic group. These findings have important implications for our study of coral resiliency in the face of climate change.

摘要

众所周知,热应激会导致珊瑚白化。许多研究工作都集中在热应激破坏珊瑚与内共生藻类双鞭毛虫(共生藻科)的共生关系的方式上,这一过程称为白化。然而,在白化过程中对珊瑚组织造成的损害,以及重要的是,促成随后恢复的因素,目前还不太清楚。我假设热应激造成的宿主组织损伤会引发一系列伤口愈合因子,这些因子可维持上皮完整性。可能会发现这些因素有助于珊瑚的潜在恢复能力。在本研究中,我提供证据表明热应激会对珊瑚宿主组织造成损害,并且热应激珊瑚的胃皮中存在胶原蛋白。我发现,在白化的早期阶段,一种重要的伤口愈合转录因子颗粒头蛋白在整个胃皮中表达,而细胞和组织重排就在这里发生。最后,通过系统发育学,我发现刺胞动物的颗粒头蛋白进化出三个不同的组,并且这个蛋白家族的进化可能发生在每个分类群中。这些发现对于我们研究珊瑚在气候变化面前的恢复力具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5987/6396749/0965817e941d/peerj-07-6510-g001.jpg

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