A New-Nipponbare Rice Germplasm with High Seed-Setting Rate

Rice (Oryza sativa L.) is an important crop providing staple food for more than half the world's population and also considered as a model plant for molecular biological study of the cereals. In 1998, the large-scale sequencing of japonica rice cultivar Nipponbare (bred at Aichi Agricultural Center...

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Published inJournal of genetics and genomics Vol. 41; no. 10; pp. 549 - 552
Main Authors Hu, Jiang, Dong, Guojun, Fang, Yunxia, Rao, Yuchun, Xu, Jie, Xue, Dawei, Yu, Haiping, Ge, Changwei, Shi, Zhenyuan, Pan, Jiangjie, Zhu, Li, Zeng, Dali, Zhang, Guangheng, Guo, Longbiao, Qian, Qian
Format Journal Article
LanguageEnglish
Published China Elsevier Ltd 20.10.2014
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Summary:Rice (Oryza sativa L.) is an important crop providing staple food for more than half the world's population and also considered as a model plant for molecular biological study of the cereals. In 1998, the large-scale sequencing of japonica rice cultivar Nipponbare (bred at Aichi Agricultural Center in Japan and released in 1963) was initiated by International Rice Genome Sequencing Project (IRGSP) and the high-quality draft of genome was announced in 2002 (Goff et al,, 2002). Owing to its easy genetic transformation and released whole genome sequencing data, Nipponbare is widely used in functional genomic research (Piffanelli et al., 2007; Luan et al., 2008; Hu et al., 2010; Thang et al., 2010; Tabuchi et al., 2011; Zhang et al., 2011; Jiang et al., 2012; Lu et al.. 2013).
Bibliography:Rice (Oryza sativa L.) is an important crop providing staple food for more than half the world's population and also considered as a model plant for molecular biological study of the cereals. In 1998, the large-scale sequencing of japonica rice cultivar Nipponbare (bred at Aichi Agricultural Center in Japan and released in 1963) was initiated by International Rice Genome Sequencing Project (IRGSP) and the high-quality draft of genome was announced in 2002 (Goff et al,, 2002). Owing to its easy genetic transformation and released whole genome sequencing data, Nipponbare is widely used in functional genomic research (Piffanelli et al., 2007; Luan et al., 2008; Hu et al., 2010; Thang et al., 2010; Tabuchi et al., 2011; Zhang et al., 2011; Jiang et al., 2012; Lu et al.. 2013).
11-5450/R
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ISSN:1673-8527
DOI:10.1016/j.jgg.2014.07.001