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GL9 from Oryza glumaepatula controls grain size and chalkiness in rice 被引量:1
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作者 Shaojun Lin zupei liu +17 位作者 Kui Zhang Weifeng Yang Penglin Zhan Quanya Tan Yajun Gou Shuaipeng Ma Xin Luan Chubing Huang Zhili Xiao Yuanyuan liu Bihuang Zhu Ruiqing Liang Wenqi Zhou Haitao Zhu Suhong Bu Guifu liu Guiquan Zhang Shaokui Wang 《The Crop Journal》 SCIE CSCD 2023年第1期198-207,共10页
Grain size is a key factor influencing grain yield and appearance quality in rice.We identified twelve quantitative trait loci(QTL)for grain length(GL),nine for grain width(GW),and nine for 1000-kernel weight(TKW)usin... Grain size is a key factor influencing grain yield and appearance quality in rice.We identified twelve quantitative trait loci(QTL)for grain length(GL),nine for grain width(GW),and nine for 1000-kernel weight(TKW)using GLU-SSSLs,which are single-segment substitution lines with Oryza glumaepatula as donor parent and Huajingxian 74(HJX74)as recipient parent.Among the QTL,qGL1-2,qGL1-4,qGL9-2,qGW2-2,qGW9-1 and qTKW9-2 contributed to high grain yield.GL9 was identified as a candidate gene for qGL9-2 by map-based cloning and sequencing,and is a novel allele of GS9.The kernel of NIL-gl9was slenderer and longer than that of HJX74,and the TKW and grain yield per plant of NIL-gl9 were higher than those of HJX74.The proportion of grain chalkiness of NIL-gl9 was much lower than that of HJX74.Thus,gl9 increased grain yield and appearance quality simultaneously.Three pyramid lines,NIL-gs3/gl9,NIL-GW7/gl9 and NIL-gw8/gl9,were developed and the kernel of each was longer than that of the corresponding recipient parent lines.The gl9 allele may be beneficial for breeding rice varieties with high grain yield and good appearance quality. 展开更多
关键词 Oryza glumaepatula GL9 Grain size Grain chalkiness Single-segment substitution line
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Relationship between Lightning Activity and Tropospheric Nitrogen Dioxide and the Estimation of Lightning-produced Nitrogen Oxides over China 被引量:4
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作者 Fengxia GUO Xiaoyu JU +4 位作者 Min BAO Ganyi LU zupei liu Yawen LI Yijun MU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2017年第2期235-245,共11页
To better understand the relationship between lightning activity and nitrogen oxides (NOx) in the troposphere and to estimate lightning-produced NOx (LNOx) production in China more precisely, spatial and temporal ... To better understand the relationship between lightning activity and nitrogen oxides (NOx) in the troposphere and to estimate lightning-produced NOx (LNOx) production in China more precisely, spatial and temporal distributions of vertical column densities of tropospheric nitrogen dioxide (NO2 VCDs) and lightning activity were analyzed using satellite measure- ments. The results showed that the spatial distribution of lightning activity is greater in the east than in the west of China, as with NO2 VCDs. However, the seasonal and annual variation between lightning and NO2 density show different trends in the east and west. The central Tibetan Plateau is sparsely populated without modem industry, and NO2 VCDs across the plateau are barely affected by anthropogenic sources. The plateau is an ideal area to study LNOx. By analyzing 15 years of satellite data from that region, it was found that lightning density is in strong agreement with annual, spatial and seasonal variations of NO2 VCDs, with a correlation coefficient of 0.79 from the linear fit. Combining Beirle's method and the linear fit equation, LNOx production in the Chinese interior was determined to be 0.07 (0.02-0.27) TgN yr-1 for 1997-2012, within the range of 0.016-0.384 TgN yr-1 from previous estimates. 展开更多
关键词 LIGHTNING tropospheric NO2 LNOx
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一个新的OsBRI1弱等位突变体的鉴定及其调控种子大小的功能研究 被引量:2
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作者 管柳蓉 刘祖培 +6 位作者 徐冉 段朋根 张国政 于海跃 李静 罗越华 李云海 《植物学报》 CAS CSCD 北大核心 2020年第3期279-286,共8页
水稻(Oryza sativa)籽粒大小是影响其产量的关键农艺性状,克隆并研究水稻籽粒大小相关基因对于提高水稻产量具有重要意义。为深入探究水稻籽粒大小的调控机制,通过EMS诱变品种宽叶粳(KYJ),分离了一系列水稻籽粒大小改变的突变体,其中sm... 水稻(Oryza sativa)籽粒大小是影响其产量的关键农艺性状,克隆并研究水稻籽粒大小相关基因对于提高水稻产量具有重要意义。为深入探究水稻籽粒大小的调控机制,通过EMS诱变品种宽叶粳(KYJ),分离了一系列水稻籽粒大小改变的突变体,其中smg12表现为籽粒变小,株高变矮,一级枝梗数和二级枝梗数减少。遗传分析表明,该小粒突变体受隐性单基因控制。细胞学分析显示,该突变体颖壳纵向细胞长度显著变短,表明SMG12主要影响细胞扩展。利用Mutmap方法对候选基因进行克隆,筛选出SMG12的候选基因OsBRI1,该基因编码油菜素内酯受体激酶。OsBRI1外显子上的第2074个碱基发生了由C到T的置换,产生非同义突变,使得该位置编码的脯氨酸变为丝氨酸,从而影响OsBRI1的功能。综上,该研究鉴定了OsBRI1基因的1个新等位变异,揭示了油菜素内酯途径调控水稻籽粒大小的细胞和分子基础。 展开更多
关键词 水稻 籽粒大小 细胞扩展 Mutmap OsBRI1
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Natural variations in grain length 10(GL10)regulate rice grain size 被引量:4
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作者 Penglin Zhan Shuaipeng Ma +17 位作者 Zhili Xiao Fangping Li Xin Wei Shaojun Lin Xiaoling Wang Zhe Ji Yu Fu Jiahao Pan Mi Zhou Yue liu Zengyuan Chang Lu Li Suhong Bu zupei liu Haitao Zhu Guifu liu Guiquan Zhang Shaokui Wang 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2022年第5期405-413,共9页
Grain size is an important determinant of grain weight and yield in rice.Although several genes related to grain size have been identified,natural variations in these genes that affect grain size are poorly characteri... Grain size is an important determinant of grain weight and yield in rice.Although several genes related to grain size have been identified,natural variations in these genes that affect grain size are poorly characterized.Here,we describe the grain length QTL GL10,encoding MADS56,which positively regulates grain length and grain weight.A natural allelic variation of NIL-gl10,containing an~1.0-kb deletion in the first exon that abolishes its transcription,results in shorter grain length,lower grain weight and delayed flowering in gl10 plants.The knockout of GL10 in the HJX74 background leads to grain phenotypes similar to that of NIL-gl10,while overexpression of GL10 results in increased grain length and weight and earlier heading date.GL10 regulates grain length by promoting greater longitudinal cell growth in the grain glume.Additionally,GL10 participates in the regulation of gibberellic acid(GA)signaling pathway genes in young panicle tissues.Analysis of GL10 haplotypes shows obvious divergence between the japonica and indica lineages.Our findings reveal an allelic variation of GL10 that may explain differences in grain length among modern cultivars and could be used to breed rice varieties with optimized grain shape. 展开更多
关键词 RICE GL10 OsMADS56 Grain length SSSL GA
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