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Introgression of qPE9-1 allele, conferring the panicle erectness, leads to the decrease of grain yield per plant in japonica rice (Oryza sativa L.)
引用本文:Yi X,Zhang Z,Zeng S,Tian C,Peng J,Li M,Lu Y,Meng Q,Gu M,Yan C. Introgression of qPE9-1 allele, conferring the panicle erectness, leads to the decrease of grain yield per plant in japonica rice (Oryza sativa L.)[J]. 遗传学报, 2011, 38(5): 217-223. DOI: 10.1016/j.jgg.2011.03.011
作者姓名:Yi X  Zhang Z  Zeng S  Tian C  Peng J  Li M  Lu Y  Meng Q  Gu M  Yan C
作者单位:Jiangsu Key laboratory of Crop Genetics and Physiology, Key Laboratory of Plant Functional Genomics, Ministry of Education,Agricultural College of Yangzhou University, 12# East Wenhui Rd., Jiangsu 225009, China
基金项目:This work was financially supported by the Ministry of Science and Technology,National Natural Science Foundation,the Jiangsu Province Government of China
摘    要:

关 键 词:等位基因  单株产量  水稻品种  近等基因系  粳米  直立穗型  产量形成  遗传效应

Introgression of qPE9-1 allele, conferring the panicle erectness, leads to the decrease of grain yield per plant in japonica rice (Oryza sativa L.)
Yi Xiuhua,Zhang Zujian,Zeng Shengyuan,Tian Chunyan,Peng Juncheng,Li Min,Lu Yue,Meng Qingcai,Gu Minghong,Yan Changjie. Introgression of qPE9-1 allele, conferring the panicle erectness, leads to the decrease of grain yield per plant in japonica rice (Oryza sativa L.)[J]. Journal of Genetics and Genomics, 2011, 38(5): 217-223. DOI: 10.1016/j.jgg.2011.03.011
Authors:Yi Xiuhua  Zhang Zujian  Zeng Shengyuan  Tian Chunyan  Peng Juncheng  Li Min  Lu Yue  Meng Qingcai  Gu Minghong  Yan Changjie
Affiliation:Jiangsu Key laboratory of Crop Genetics and Physiology, Key Laboratory of Plant Functional Genomics, Ministry of Education,Agricultural College of Yangzhou University, 12# East Wenhui Rd., Jiangsu 225009, China
Abstract:Panicle architecture is closely related to yield formation. The qPE9-1 gene has been proved to be widely used in high-yield rice cultivar developments, conferring erect panicle character in japonica rice. Recently, qPE9-1 has been successfully cloned; however, the genetic effect on grain yield per plant of the erect panicle allele qPE9-1 is controversial yet. In the present study, a drooping panicle parent Nongken 57, carrying qpe9-1 allele, was used as recurrent parent to successively backcross to a typical erect panicle line from the double haploid (DH) population (Wuyunjing 8/Nongken 57), which was previously shown to carry qPE9-1 allele. Thus a pair of near-isogenic lines (NILs) was developed. The comparison of agronomic traits between the NILs showed that, when qpe9-1 was replaced by qPE9-1, the panicle architecture was changed from drooping to erect; moreover, the panicle length, plant height, 1000-grain weight and the tillers were significantly decreased, consequently resulting in the dramatic decrease of grain yield per plant by 30%. Therefore, we concluded that the qPE9-1 was a major factor controlling panicle architecture, and qPE9-1 had pleiotropic nature, with negative effects on grain yield per plant. This result strongly suggests that the erect panicle allele qPE9-1 should be used together with other favorable genes in the high-yield breeding practice. In addition, the effect of qPE9-1 on eating and cooking quality was also discussed in the present study.
Keywords:Rice  Erect panicle  Genetic analysis  qPE9-1
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