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Response of the symbiotic cnidarian Anthopleura elegantissima transcriptome to temperature and UV increase

机译:响应的共生cnidarian Anthopleuraelegantissima转录组温度和紫外线增加

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Elevated temperature and solar radiation, including ultraviolet radiation, are now recognized as the primary environmental stresses that lead to mass cnidarian bleaching. This study takes a functional genomics approach to identifying genes that change expression soon after exposure to these stressors in the temperate sea anemone Anthopleura elegantissima that harbors Symbiodinium, the same genus of symbionts found in reef-building corals. Symbiotic anemones were subjected to elevated temperature or UV over a 24 h period. cDNA from these animals was hybridized to a 10,000-feature cDNA microarray of A. elegantissima. Overall 2.7% of the 10,000 features were found to be differentially expressed as a function of temperature or UV stress. Of the 86 features sequenced, 45% displayed significant homology to sequences in GenBank. There are 27 features that were differentially expressed in both stress conditions. Gene ontology analysis placed the differentially expressed genes in a wide range of categories including cytoskeleton organization and biogenesis, protein biosynthesis, cell proliferation, apoptosis and transport. This suggests that the early stress response to elevated temperature and UV involves essentially all aspects of host cellular regulation and machinery and that downstream cnidarian bleaching is a complex cellular response in host tissues. (C) 2008 Elsevier Inc. All rights reserved.
机译:升高温度和太阳辐射、包括紫外线辐射,现在被认为是主要的环境压力导致大规模cnidarian漂白。功能基因组学的方法识别基因表达变化很快在暴露于这些压力温带海葵Anthopleura elegantissima港口Symbiodinium,相同的属共生体造礁珊瑚中发现的。共生海葵受到提拔在24小时内温度或紫外线。这些动物是10000 -功能杂化答:elegantissima互补脱氧核糖核酸微阵列。10000年的特性被发现差异表达的函数压力温度或紫外线。排序,显示显著的同源性45%序列在基因库。差异表达的压力吗条件。在一个广泛的差异表达基因类别包括细胞骨架组织蛋白质的生物合成,生物起源细胞增殖、凋亡和运输。表明早期的应激反应升高温度和紫外线涉及本质上宿主细胞的监管和各个方面机械和下游cnidarian漂白是一个复杂的细胞反应在宿主组织。2008爱思唯尔公司(C)。

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