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4篇 您的检索式:作者名="SUN Pingyong"
    题名 作者 年代 出处 被引量
1OsGRF4 controls grain shape, panicle length and seed shattering in rice显示文摘Traits such as grain shape, panicle length and seed shattering, play important roles in grain yield and harvest. In this study, the cloning and functional analysis of PANICLE TRAITS 2(PT2), a novel gene from the Indica rice Chuandali(CDL), is reported. PT2 is synonymous with Growth-Regulating Factor 4(OsGRF4), which encodes a growth-regulating factor that positively regulates grain shape and panicle length and negatively regulates seed shattering. Higher expression of OsGRF4 is correlated with larger grain, longer panicle and lower seed shattering. A unique OsGRF4 mutation, which occurs at the Osmi RNA396 target site of OsGRF4, seems to be associated with high levels of OsGRF4 expression, and results in phenotypic difference. Further research showed that OsGRF4 regulated two cytokinin dehydrogenase precursor genes(CKX5 and CKX1) resulting in increased cytokinin levels,which might affect the panicle traits. High storage capacity and moderate seed shattering of OsGRF4 may be useful in high-yield breeding and mechanized harvesting of rice. Our Resefindings provide additional insight into the molecular basis of panicle growth.Pingyong Sun Wuhan Zhang Yihua Wang Qiang He Fu Shu Hai Liu Jie Wang Jianmin Wang Longping Yuan Huafeng Deng 2016Journal of Integrative Plant Biology2016,58,10:16
2Fine mapping of GS2, a dominant gene for big grain rice显示文摘Grain shape as a major determinant of rice yield and quality is widely believed to be controlled by quantitative trait loci(QTL). We have identified a novel gene 'GS2' to largely regulate grain length and width in rice. The GS2 allele in the big-grain rice line ‘CDL’functioned in a dominant manner. In the present study, we employed a chromosome walking strategy in the residual heterozygous lines from recombinant inbred population between cultivar 'R1126' and CDL, and located the GS2 gene in an interval of ~33.2 kb flanked by marker GL2-35-1 and GL2-12 in the long arm of rice chromosome 2. According to genome annotations, three putative gene loci, LOC_Os02g47280, LOC_Os02g47290 and LOC_Os02g47300, exist in this candidate region. In addition, allelic analysis with previously reported genes demonstrated that GS2 was novel for regulating rice grain shape. These results will help promote the cloning and functional characterization of the GS2 gene and further develop linked markers to be used in marker-assisted breeding.Wuhan Zhang Pingyong Sun Qiang He Fu Shu Jie Wang Huafeng Deng 2013The Crop Journal2013,1,2:7
3Molecular mapping of the blast resistance gene Pi49 in the durably resistant rice cultivar Mowanggu显示文摘Pingyong Sun Jinling Liu Yue Wang Nan Jiang Suhua Wang Yangshuo Dai Jia Gao Zhiqiang Li Sujun Pan Dan Wang Wei Li Xionglun Liu Yinghui Xiao Erming Liu Guo-Liang Wang Liangying Dai 2013Euphytica2013,,1:1
4Development and Application of a Novel Functional Marker for Fragrance in Rice显示文摘Fragrant rice is favored worldwide by consumers and rice breeders,due to its full aroma and high nutritional value.Loss of function of the betaine aldehyde dehydrogenase gene(OsBADH2)leads to aroma in rice.Our previous sequencing results showed that fragrant rice Chuan 7 belongs to badh2-E14 type,with a 1 bp insertion mutation in exon 14(Sun et al,2021),and this allele mutation is mainly distributed in Nepal and India(Kovach et al,2009).SUN Pingyong ZHANG Wuhan ZHANG Li SHU Fu HE Qiang XU Na PENG Zhirong ZENG Jia FANG Pengpeng DENG Huafeng 2023Rice science2023,30,3:0
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