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Spectral diversity of fluorescent proteins from the anthozoan Corynactis californica

机译:加利福尼亚花胶Corynactis californica荧光蛋白的光谱多样性

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摘要

Color morphs of the temperate, nonsymbiotic corallimorpharian Corynactis californica show variation in pigment pattern and coloring. We collected seven distinct color morphs of C. californica from subtidal locations in Monterey Bay, California, and found that tissue- and color-morph-specific expression of at least six different genes is responsible for this variation. Each morph contains at least three to four distinct genetic loci that code for these colors, and one morph contains at least five loci. These genes encode a subfamily of new GFP-like proteins, which fluoresce across the visible spectrum from green to red, while sharing between 75% to 89% pairwise amino-acid identity. Biophysical characterization reveals interesting spectral properties, including a bright yellow protein, an orange protein, and a red protein exhibiting a "fluorescent timer" phenotype. Phylogenetic analysis indicates that the FP genes from this species evolved together but that diversification of anthozoan fluorescent proteins has taken place outside of phylogenetic constraints, especially within the Corallimorpharia. The discovery of more examples of fluorescent proteins in a non-bioluminescent, nonsymbiotic anthozoan highlights possibilities of adaptive ecological significance unrelated to light regulation for algal symbionts. The patterns and colors of fluorescent proteins in C. californica and similar species may hold meaning for organisms that possess the visual pigments to distinguish them.
机译:温带的,非共生的珊瑚形变种Corynactis californica的颜色形态显示出颜料图案和颜色的变化。我们从加利福尼亚州蒙特雷湾的潮间带收集了七种C. californica颜色变体,发现至少六个不同基因的组织和颜色变体特异性表达是造成这种变化的原因。每个变体包含至少三到四个编码这些颜色的不同遗传基因座,一个变体包含至少五个基因座。这些基因编码一个新的GFP样蛋白的亚家族,该蛋白在可见光谱中从绿色到红色发出荧光,同时共享75%至89%的成对氨基酸同一性。生物物理特征揭示了令人感兴趣的光谱特性,包括亮黄色蛋白质,橙色蛋白质和表现出“荧光计时器”表型的红色蛋白质。系统发育分析表明,该物种的FP基因一起进化,但在系统发育限制之外,特别是在珊瑚形目内,花粉虫荧光蛋白已经发生了多样化。在非生物发光,非共生的花键虫中发现更多的荧光蛋白实例,突显了与藻类共生体的光调节无关的适应性生态意义的可能性。加利福尼亚C. californica和类似物种中荧光蛋白的样式和颜色可能对具有视觉色素以区分它们的生物具有意义。

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