The rice genome structure as a trail from the past to beyond.

Genome dynamics Pub Date : 2008-01-01 DOI:10.1159/000126012
T Sasaki
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引用次数: 1

Abstract

Rice is the first cultivated plant species to be completely sequenced. Cultivation, in general, is a major factor that contributes to selection pressure of a target species resulting in accelerated changes in genome structure from an original wild species. The genome sequence of cultivated rice can now be used as a standard for comparison with many other cultivated rice species, its wild relatives and other grass species. Several indices define the dynamic nature of genome structure and function. Genome dynamics in rice is described here based on transposon, retrotransposon and polyploidy. Comparative studies with other related grass species based on the principle of synteny are expected to generate invaluable information that will clarify the trail that led to the present cultivated rice as well as the trail that will lead to its further improvement.

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水稻基因组结构作为一条从过去到未来的线索。
水稻是第一个被完全测序的栽培植物物种。一般来说,培育是造成目标物种选择压力的一个主要因素,导致原始野生物种基因组结构的加速变化。栽培水稻的基因组序列现在可以用作与许多其他栽培水稻物种、其野生近缘种和其他禾本科物种进行比较的标准。一些指标定义了基因组结构和功能的动态性质。本文基于转座子、反转录转座子和多倍体描述水稻基因组动力学。基于合生原理的与其他相关禾草物种的比较研究有望产生宝贵的信息,以澄清导致目前栽培水稻的路径以及导致其进一步改进的路径。
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The evolutionary dynamics of transposable elements in eukaryote genomes. SINEs as driving forces in genome evolution. Unstable microsatellite repeats facilitate rapid evolution of coding and regulatory sequences. Satellite DNA evolution. Satellite DNA-mediated effects on genome regulation.
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