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珊瑚对与近海珊瑚礁旅游平台相关应激源的免疫反应比较

Comparative immune responses of corals to stressors associated with offshore reef-based tourist platforms.

作者信息

van de Water Jeroen A J M, Lamb Joleah B, van Oppen Madeleine J H, Willis Bette L, Bourne David G

机构信息

ARCCentre of Excellence for Coral Reef Studies, James Cook University,Townsville, QLD 4811, Australia; College of Marine and Environmental Sciences, James Cook University,Townsville, QLD 4811, Australia; AIMS@JCU, James Cook University, Townsville, QLD 4811, Australia; Australian Institute of Marine Science, PMB 3, Townsville MC,Townsville, QLD 4810, Australia.

ARCCentre of Excellence for Coral Reef Studies, James Cook University,Townsville, QLD 4811, Australia; College of Marine and Environmental Sciences, James Cook University,Townsville, QLD 4811, Australia; AIMS@JCU, James Cook University, Townsville, QLD 4811, Australia; Australian Institute of Marine Science, PMB 3, Townsville MC,Townsville, QLD 4810, Australia; Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, NY 14850, USA.

出版信息

Conserv Physiol. 2015 Jul 24;3(1):cov032. doi: 10.1093/conphys/cov032. eCollection 2015.

Abstract

Unravelling the contributions of local anthropogenic and seasonal environmental factors in suppressing the coral immune system is important for prioritizing management actions at reefs exposed to high levels of human activities. Here, we monitor health of the model coral Acropora millepora adjacent to a high-use and an unused reef-based tourist platform, plus a nearby control site without a platform, over 7 months spanning a typical austral summer. Comparisons of temporal patterns in a range of biochemical and genetic immune parameters (Toll-like receptor signalling pathway, lectin-complement system, prophenoloxidase-activating system and green fluorescent protein-like proteins) among healthy, injured and diseased corals revealed that corals exhibit a diverse array of immune responses to environmental and anthropogenic stressors. In healthy corals at the control site, expression of genes involved in the Toll-like receptor signalling pathway (MAPK p38, MEKK1, cFos and ATF4/5) and complement system (C3 and Bf) was modulated by seasonal environmental factors in summer months. Corals at reef platform sites experienced additional stressors over the summer, as evidenced by increased expression of various immune genes, including MAPK p38 and MEKK1. Despite increased expression of immune genes, signs of white syndromes were detected in 31% of study corals near tourist platforms in the warmest summer month. Evidence that colonies developing disease showed reduced expression of genes involved in the complement pathway prior to disease onset suggests that their immune systems may have been compromised. Responses to disease and physical damage primarily involved the melanization cascade and GFP-like proteins, and appeared to be sufficient for recovery when summer heat stress subsided. Overall, seasonal and anthropogenic factors may have interacted synergistically to overwhelm the immune systems of corals near reef platforms, leading to increased disease prevalence in summer at these sites.

摘要

弄清楚当地人为因素和季节性环境因素对珊瑚免疫系统的抑制作用,对于在面临高强度人类活动的珊瑚礁上确定管理行动的优先次序至关重要。在此,我们在一个典型的澳大利亚夏季的7个月时间里,监测了与一个高使用频率和一个未使用的基于珊瑚礁的旅游平台相邻的模式珊瑚多孔鹿角珊瑚的健康状况,以及附近一个没有平台的对照地点的珊瑚健康状况。对健康、受伤和患病珊瑚的一系列生化和遗传免疫参数(Toll样受体信号通路、凝集素-补体系统、前酚氧化酶激活系统和绿色荧光蛋白样蛋白)的时间模式进行比较后发现,珊瑚对环境和人为压力源表现出多种免疫反应。在对照地点的健康珊瑚中,参与Toll样受体信号通路(MAPK p38、MEKK1、cFos和ATF4/5)和补体系统(C3和Bf)的基因表达在夏季受季节性环境因素调节。珊瑚礁平台地点的珊瑚在夏季还经历了额外的压力源,各种免疫基因(包括MAPK p38和MEKK1)表达增加就证明了这一点。尽管免疫基因表达增加,但在最炎热的夏季月份,31%的靠近旅游平台的研究珊瑚出现了白色综合征迹象。有证据表明,患病群体在疾病发作前参与补体途径的基因表达降低,这表明它们的免疫系统可能已受到损害。对疾病和物理损伤的反应主要涉及黑化级联反应和绿色荧光蛋白样蛋白,当夏季热应激消退时,这些反应似乎足以实现恢复。总体而言,季节性因素和人为因素可能协同作用,使珊瑚礁平台附近珊瑚的免疫系统不堪重负,导致这些地点夏季疾病患病率上升。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30c0/4778433/320b778296b3/cov03201.jpg

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