]*>","")" /> Fine Mapping of <i>qPAA8</i>, a Gene Controlling Panicle Apical Development in Rice

J Integr Plant Biol ›› 2011, Vol. 53 ›› Issue (9): 710-718.DOI: 10.1111/j.1744-7909.2011.01055.x

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Fine Mapping of qPAA8, a Gene Controlling Panicle Apical Development in Rice

Zhi-Jun Cheng, Bi-Gang Mao, Su-Wei Gao, Ling Zhang, Jiu-Lin Wang, Cai-Lin Lei, Xin Zhang, Fu-Qing Wu, Xiu-Ping Guo and Jianmin Wan*   

  • 收稿日期:2011-03-09 接受日期:2011-05-09 出版日期:2011-05-23 发布日期:2011-05-23

Fine Mapping of qPAA8, a Gene Controlling Panicle Apical Development in Rice

Zhi-Jun Cheng, Bi-Gang Mao, Su-Wei Gao, Ling Zhang, Jiu-Lin Wang, Cai-Lin Lei, Xin Zhang, Fu-Qing Wu, Xiu-Ping Guo and Jianmin Wan*   

  1. National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Science, Chinese Academy of Agriculture Sciences, Beijing 100081, China
  • Received:2011-03-09 Accepted:2011-05-09 Online:2011-05-23 Published:2011-05-23
  • About author:*Corresponding author Tel: +86 10 8210 8786; Fax: +86 10 6897 5304; E-mail: wanjm@caas.net.cn

Abstract:

In rice, one detrimental factor influencing single panicle yield is the frequent occurrence of panicle apical abortion (PAA) under unfavorable climatic conditions. Until now, no detailed genetic information has been available to avoid PAA in rice breeding. Here, we show that the occurrence of PAA is associated with the accumulation of excess hydrogen peroxide. Quantitative trait loci (QTLs) mapping for PAA in an F2 population derived from the cross of L-05261 (PAA line) × IRAT129 (non-PAA variety) identified seven QTLs over a logarithm of the odd (LOD) threshold of 2.5, explaining approximately 50.1% of phenotypic variance for PAA in total. Five of the QTLs with an increased effect from L-05261, were designated as qPAA3-1, qPAA3-2, qPAA4, qPAA5 and qPAA8, and accounted for 6.8%, 5.9%, 4.2%, 13.0% and 12.2% of phenotypic variance, respectively. We found that the PAA in the early heading plants was mainly controlled by qPAA8. Subsequently, using the sub-populations specific for qPAA8 based on marker-assisted selection, we further narrowed qPAA8 to a 37.6-kb interval delimited by markers RM22475 and 8-In112. These results are beneficial for PAA gene clone.

Cheng ZJ, Mao BG, Gao SW, Zhang L, Wang JL, Lei CL, Zhang X, Wu FQ, Guo XP, Wan J (2011) Fine mapping of qPAA8, a gene controlling panicle apical development in rice. J. Integr. Plant Biol. 53(9), 710–718.

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