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R(NA)-tistic 表达:生态基因组学中匹配未知 mRNA 和蛋白质与环境响应的艺术。

R(NA)-tistic expression: The art of matching unknown mRNA and proteins to environmental response in ecological genomics.

机构信息

Department of Biological Sciences, University of Calgary, Calgary, AB, Canada.

出版信息

Mol Ecol. 2018 Feb;27(4):827-830. doi: 10.1111/mec.14419.

Abstract

A challenge of modern ecological genomics is reducing uncertainty surrounding the biological inferences from gene expression. For example, approximately 40% of proteins in eukaryotic model organisms do not contain characterized domains (Gollery et al., 2006). Even proteins of "known function" are typically only characterized in the sense that they have a domain function, but provide no information on their biological role within the cell (e.g., activation, pathways or targets). Yet, as molecular ecologists, a common objective is to elucidate how organisms respond to environmental variation through changes in gene expression, including homoeostatic, acclimatory, and adaptive responses to environmental stressors, a challenge increased by poor protein ecological annotation. Now, in this issue of Molecular Ecology, Orsini et al. (2017) use the quintessential Daphnia system to characterize the differences in stress response in three genotypic backgrounds to common biotic and abiotic stressors found in nature. Using an optimized weighted gene co-expression network analysis, they link genes of unknown function to genes that they co-activate with and enrich for gene ontology. Determining the functional networks of genes that behave in genotype- and treatment-specific responses gives insight into possible pathways and respective ecological roles, helping pave the way for the next generation of transcriptomic studies in molecular ecology.

摘要

现代生态基因组学面临的一个挑战是减少基因表达的生物学推论中的不确定性。例如,真核模式生物中约有 40%的蛋白质不含有特征化的结构域(Gollery 等人,2006 年)。即使是“已知功能”的蛋白质,通常也仅在具有结构域功能的意义上被描述,而没有提供关于它们在细胞内的生物学作用的信息(例如激活、途径或靶标)。然而,作为分子生态学家,我们的一个共同目标是阐明生物体如何通过基因表达的变化来响应环境变化,包括对环境胁迫的同型、适应和适应性反应,而蛋白质生态注释的不足增加了这一挑战。现在,在本期《分子生态学》中,Orsini 等人(2017 年)使用典型的水蚤系统来描述在三种基因型背景下对自然中常见的生物和非生物胁迫的应激反应的差异。他们使用优化的加权基因共表达网络分析,将未知功能的基因与它们共激活的基因联系起来,并对基因本体进行富集。确定表现出基因型和处理特异性反应的基因的功能网络可以深入了解可能的途径和相应的生态作用,为分子生态学中的下一代转录组学研究铺平道路。

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