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Rice Functional Genomics Research: Past Decade and Future 被引量:23
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作者 Yan Li Jinghua Xiaot +5 位作者 Lingling Chen Xuehui Huang Zhukuan Cheng Bin Han Qifa Zhang Changyin Wu 《Molecular Plant》 SCIE CAS CSCD 2018年第3期359-380,共22页
Rice (Oryza sativa) is a major staple food crop for more than 3.5 billion people worldwide. Under- standing the regulatory mechanisms of complex agronomic traits in rice is critical for global food security. Rice is... Rice (Oryza sativa) is a major staple food crop for more than 3.5 billion people worldwide. Under- standing the regulatory mechanisms of complex agronomic traits in rice is critical for global food security. Rice is also a model plant for genomics research of monocotyledonso Thanks to the rapid development of functional genomic technologies, over 2000 genes controlling important agronomic traits have been cloned, and their molecular biological mechanisms have also been partially char- acterized. Here, we briefly review the advances in rice functional genomics research during the past 10 years, including a summary of functional genomics platforms, genes and molecular regulatory networks that regulate important agronomic traits, and newly developed tools for gene identification. These achievements made in functional genomics research will greatly facilitate the development of green super rice. We also discuss future challenges and prospects of rice functional genomics research. 展开更多
关键词 functional genomics gene identification green super rice oryza sativa
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Twenty years of rice genomics research: From sequencing and functional genomics to quantitative genomics 被引量:4
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作者 Changsheng Wang Bin Han 《Molecular Plant》 SCIE CAS CSCD 2022年第4期593-619,共27页
Since the completion of the rice genome sequencing project in 2005,we have entered the era of rice genomics,which is still in its ascendancy.Rice genomics studies can be classified into three stages:structural genomic... Since the completion of the rice genome sequencing project in 2005,we have entered the era of rice genomics,which is still in its ascendancy.Rice genomics studies can be classified into three stages:structural genomics,functional genomics,and quantitative genomics.Structural genomics refers primarily to genome sequencing for the construction of a complete map of rice genome sequence.This is fundamental for rice genetics and molecular biology research.Functional genomics aims to decode the functions of rice genes.Quantitative genomics is large-scale sequence-and statistics-based research to define the quantitative traits and genetic features of rice populations.Rice genomics has been a transformative influence on rice biological research and contributes significantly to rice breeding,making rice a good model plant for studying crop sciences. 展开更多
关键词 rice oryza sativa structural genomics functional genomics quantitative genomics
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植物功能基因组研究 被引量:3
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作者 韩斌 《中国科学院院刊》 2003年第4期250-254,共5页
植物功能基因组研究是利用基因组序列的信息和高通量的系统分析技术,在基因组水平研究其结构和组织与植物功能在细胞、有机体和进化上的关系。水稻作为最重要的模式作物,应该成为我国植物功能基因组研究的主攻方向。通过建立从结构基因... 植物功能基因组研究是利用基因组序列的信息和高通量的系统分析技术,在基因组水平研究其结构和组织与植物功能在细胞、有机体和进化上的关系。水稻作为最重要的模式作物,应该成为我国植物功能基因组研究的主攻方向。通过建立从结构基因组学到功能基因组学,直至将功能基因组的信息和知识用于开发改良植物的完整研究体系和队伍,使我国在水稻功能基因组研究的整体水平上取得与我国头号水稻种植大国相称的地位。 展开更多
关键词 植物功能基因组 基因组序列 结构基因组学 功能基因组学 水稻 拟南芥 植物基因工程
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水稻功能基因组学研究 被引量:5
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作者 王凤梅 《生物技术通报》 CAS CSCD 2007年第1期10-13,共4页
水稻是迄今为止第一个被测序的农作物。随着水稻基因组测序计划的完成,以功能基因组学研究为标志的后基因组时代已经到来。综述了水稻功能基因组学的工作进展与方法,主要包括:表达序列标签(EST)c、DNA微阵列和DNA芯片、蛋白质组学、生... 水稻是迄今为止第一个被测序的农作物。随着水稻基因组测序计划的完成,以功能基因组学研究为标志的后基因组时代已经到来。综述了水稻功能基因组学的工作进展与方法,主要包括:表达序列标签(EST)c、DNA微阵列和DNA芯片、蛋白质组学、生物信息学和反向遗传学等新方法。 展开更多
关键词 水稻 功能基因组学 蛋白质组学 生物信息学 TILLING
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水稻基因组学研究概况 被引量:3
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作者 张启军 邹江石 +1 位作者 吕川根 侯万儒 《西华师范大学学报(自然科学版)》 2005年第2期125-135,共11页
重点对水稻的结构基因组学、功能基因组学和蛋白质组学的主要研究内容、研究方法和研究进展三个方面进行了综述,并对与水稻基因组学研究相关的学科,如生物信息学、比较基因组学等方面进行了阐述,最后对水稻基因组学的发展进行了简单展望.
关键词 水稻 研究概况 结构基因组学 功能基因组学 比较基因组学 蛋白质组学 生物信息学 研究内容 研究进展 研究方法
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Recent Progress on Rice Genetics in China 被引量:7
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作者 Hua Jiang Long-Biao Guo Qian Qian 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2007年第6期776-790,共15页
Through thousands of years of evolution and cultivation, tremendously rich genetic diversity has been accumulated in rice (Oryza sativa L.), developing a large germplasm pool from which people can select varieties w... Through thousands of years of evolution and cultivation, tremendously rich genetic diversity has been accumulated in rice (Oryza sativa L.), developing a large germplasm pool from which people can select varieties with morphologies of Interest and other important agronomic traits. With the development of modern genetics, scientists have paid more attention to the genetic value of these elite varieties and germplasms, and such rich rice resources provide a good foundation for genetic research in China. Approximately 100 000 accessions of radiation-, chemical- or insertion-induced mutagenesis have been generated since the 1980s, and great progress has been made on rice molecular genetics. So far at least 16 variant/mutant genes Including MOC1, BC1, SKC1, and Rfgenes have been isolated and characterized in China. These achievements greatly promote the research on functional genomics, understanding the mechanism of plant development and molecular design breeding of rice in China. Here we review the progress of three aspects of rice genetics in China: moving forward at the molecular level, genetic research on elite varieties and germplasms, and new gene screening and genetic analysis using mutants. The prospects of rice genetics are also discussed. 展开更多
关键词 functional genomics GENETICS germplasm resources rice oryza sativa).
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