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Effects of temperature and light on the progression of black band disease on the reef coral, Montiporahispida

机译:温度和光对珊瑚礁黑带Montipora Hispida的黑带病进展的影响

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Understanding environmental drivers of black band disease (BBD), a virulent disease affecting corals worldwide, is critical to managing coral populations. Field monitoring studies have implicated seasonally elevated temperature and light as drivers of annual BBD outbreaks on the Great Barrier Reef, but do not distinguish their relative impacts. Here, we compare progression of BBD lesions on Montipora hispida among three controlled temperature (28.0, 29.0, 30.5°C) and two controlled light treatments (170, 440 μmol m−2 s−1) within normal seasonal ranges at the site. BBD progression rates were greatest (5.2 mm d−1) in the 30.5°C/high-light treatment and least (3.2 mm d−1) in the 28°C/low-light treatment. High light significantly enhanced BBD progression, whereas increases in disease progression under high temperatures were not statistically significant, identifying the greater role of light in driving BBD dynamics within the temperature range examined. Greater BBD progression during daytime compared with nighttime (by 2.2–3.6-fold across temperature and light treatments) corroborates our conclusion that light is the pre-eminent factor driving BBD progression at typical summer temperatures. Decreased photochemical efficiency of algal endosymbionts in the high-temperature/high-light treatments suggests that compromised health of the coral holobiont contributes to enhanced disease progression, highlighting the complexity of disease dynamics in host–pathogen systems responding to environmental changes.
机译:了解黑带病(BBD)的环境驱动因素,黑带病是一种影响全世界珊瑚的致命疾病,对管理珊瑚种群至关重要。现场监测研究表明,季节性升高的温度和光照是大堡礁每年爆发BBD的驱动因素,但没有区分它们的相对影响。在这里,我们比较了三种控制温度(28.0、29.0、30.5°C)和两种控制光处理(170、440μmolm −2 s −1)之间Montipora hispida上BBD病变的进展。 )在网站上的正常季节性范围内。在30.5°C /高光处理下,BBD进展率最高(5.2 mm d -1 ),在28°C时最低(3.2 mm d -1 ) /弱光治疗。高光显着增强了BBD的进展,而高温下疾病进展的增加在统计学上并不显着,从而确定了光在所研究的温度范围内驱动BBD动态的更大作用。与夜间相比,白天白天BBD的进展更大(温度和光照处理的2.2到3.6倍)证实了我们的结论:在典型的夏季温度下,光是驱动BBD进展的主要因素。高温/高光处理中藻类内共生体的光化学效率降低表明,珊瑚全生命周期的健康状况恶化,会加剧疾病的进展,突显了应对环境变化的宿主-病原体系统疾病动态的复杂性。

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