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水稻基因的上游调控架构:总结调控网络全属比较分析和等位基因挖掘的基线。

Upstream regulatory architecture of rice genes: summarizing the baseline towards genus-wide comparative analysis of regulatory networks and allele mining.

作者信息

de Los Reyes Benildo G, Mohanty Bijayalaxmi, Yun Song Joong, Park Myoung-Ryoul, Lee Dong-Yup

机构信息

School of Biology and Ecology, University of Maine, Orono, ME 04469 USA.

Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore, 117576 Singapore.

出版信息

Rice (N Y). 2015 Feb 28;8:14. doi: 10.1186/s12284-015-0041-x. eCollection 2015.

Abstract

Dissecting the upstream regulatory architecture of rice genes and their cognate regulator proteins is at the core of network biology and its applications to comparative functional genomics. With the rapidly advancing comparative genomics resources in the genus Oryza, a reference genome annotation that defines the various cis-elements and trans-acting factors that interface each gene locus with various intrinsic and extrinsic signals for growth, development, reproduction and adaptation must be established to facilitate the understanding of phenotypic variation in the context of regulatory networks. Such information is also important to establish the foundation for mining non-coding sequence variation that defines novel alleles and epialleles across the enormous phenotypic diversity represented in rice germplasm. This review presents a synthesis of the state of knowledge and consensus trends regarding the various cis-acting and trans-acting components that define spatio-temporal regulation of rice genes based on representative examples from both foundational studies in other model and non-model plants, and more recent studies in rice. The goal is to summarize the baseline for systematic upstream sequence annotation of the rapidly advancing genome sequence resources in Oryza in preparation for genus-wide functional genomics. Perspectives on the potential applications of such information for gene discovery, network engineering and genomics-enabled rice breeding are also discussed.

摘要

剖析水稻基因及其同源调控蛋白的上游调控结构是网络生物学及其在比较功能基因组学中应用的核心。随着稻属中比较基因组学资源的迅速发展,必须建立一个参考基因组注释,以定义各种顺式元件和反式作用因子,这些元件和因子将每个基因座与生长、发育、繁殖和适应的各种内在和外在信号相连接,以便在调控网络的背景下理解表型变异。这些信息对于挖掘非编码序列变异也很重要,这些变异定义了水稻种质中巨大表型多样性中的新等位基因和表观等位基因。本综述基于其他模式植物和非模式植物的基础研究以及水稻的最新研究中的代表性实例,对定义水稻基因时空调控的各种顺式作用和反式作用成分的知识现状和共识趋势进行了综合。目的是总结稻属中快速发展的基因组序列资源的系统上游序列注释的基线,为全属功能基因组学做准备。还讨论了此类信息在基因发现、网络工程和基于基因组学的水稻育种中的潜在应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f1b/4385054/d33cfdf6bfb7/12284_2015_41_Fig1_HTML.jpg

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