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Toward understanding genetic mechanisms of complex traits in rice 被引量:5

Toward understanding genetic mechanisms of complex traits in rice
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摘要 Rice is the primary carbohydrate staple cereal feeding the world population. Many genes, known as quantitative trait loci (QTLs), con- trol most of the agronomically important traits in rice. The identification of QTLs controlling agricultural traits is vital to increase yield and meet the needs of the increasing human population, but the progress met with challenges due to complex QTL inheritance. To date, many QTLs have been detected in rice, including those responsible for yield and grain quality; salt, drought and submergence tolerance; disease and insect resistance; and nutrient utilization efficiency. Map-based cloning techniques have enabled scientists to successfully fine map and clone approximately seventeen QTLs for several traits. Additional in-depth functional analyses and characterizations of these genes will provide valuable assistance in rice molecular breeding. Rice is the primary carbohydrate staple cereal feeding the world population. Many genes, known as quantitative trait loci (QTLs), con- trol most of the agronomically important traits in rice. The identification of QTLs controlling agricultural traits is vital to increase yield and meet the needs of the increasing human population, but the progress met with challenges due to complex QTL inheritance. To date, many QTLs have been detected in rice, including those responsible for yield and grain quality; salt, drought and submergence tolerance; disease and insect resistance; and nutrient utilization efficiency. Map-based cloning techniques have enabled scientists to successfully fine map and clone approximately seventeen QTLs for several traits. Additional in-depth functional analyses and characterizations of these genes will provide valuable assistance in rice molecular breeding.
出处 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2010年第10期653-666,共14页 遗传学报(英文版)
基金 supported by the Ministry of Agriculture of China,the National Science Foundation of China,the Ministry of Science and Technology of China, and the Chinese Academy of Sciences
关键词 RICE quantitative trait loci (QTLs) mapping populations marker-assisted selection (MAS) map-based cloning rice quantitative trait loci (QTLs) mapping populations marker-assisted selection (MAS) map-based cloning
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