Literature DB >> 25255828

Variations in CYP78A13 coding region influence grain size and yield in rice.

Fan Xu1, Jun Fang, Shujun Ou, Shaopei Gao, Fengxia Zhang, Lin Du, Yunhua Xiao, Hongru Wang, Xiaohong Sun, Jinfang Chu, Guodong Wang, Chengcai Chu.   

Abstract

Grain size is one of the most important determinants of crop yield in cereals. Here, we identified a dominant mutant, big grain2 (bg2-D) from our enhancer-trapping population. Genetic analysis and SiteFinding PCR (polymerase chain reaction) revealed that BG2 encodes a cytochrome P450, OsCYP78A13. Sequence search revealed that CYP78A13 has a paralogue Grain Length 3.2 (GL3.2, LOC_Os03g30420) in rice with distinct expression patterns, analysis of transgenic plants harbouring either CYP78A13 or GL3.2 showed that both can promote grain growth. Sequence polymorphism analysis with 1529 rice varieties showed that the nucleotide diversity at CYP78A13 gene body and the 20 kb flanking region in the indica varieties were markedly higher than those in japonica varieties. Further, comparison of the genomic sequence of CYP78A13 in the japonica cultivar Nipponbare and the indica cultivar 9311 showed that there were three InDels in the promoter region and eight SNPs (single nucleotide polymorphism) in its coding sequence. Detailed examination of the transgenic plants with chimaeric constructs suggested that variation in CYP78A13 coding region is responsible for the variation of grain yield. Taken together, our results suggest that the variations in CYP78A13 in the indica varieties hold potential in rice breeding for application of grain yield improvement.
© 2014 John Wiley & Sons Ltd.

Entities:  

Keywords:  cell-cycle; cytochrome P450; grain yield; sequence polymorphisms

Mesh:

Substances:

Year:  2014        PMID: 25255828     DOI: 10.1111/pce.12452

Source DB:  PubMed          Journal:  Plant Cell Environ        ISSN: 0140-7791            Impact factor:   7.228


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