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52篇 您的检索式:作者名="Gynheung An"
    题名 作者 年代 出处 被引量
1Natural Variation in OsPRR37 Regulates Heading Date and Contributes to Rice Cultivation at a Wide Range of Latitudes显示文摘标题日期和光周期敏感是决定米饭改编到大量 geographicenvironments 的基本特点。由印射的量的特点地点(QTL ) 和候选人基因分析使用整个染色体重新定序,我们 foundthat Oryza sativa 伪反应 Regulator37 (OsPRR37;此后 PRR37 ) 为早 heading7-2 (EH7-2 ) 负责从迟了标题的米饭 Milyang23 (M23 ) 和早标题的米饭 H143 的一个十字被识别的 /Heading date2 (Hd2 ) QTL。在 CCT 的不变地保存的氨基酸的 H143 containsa 错误感觉变化(CONSTANS,共同喜欢,并且 TOC1 ) PRR37 protein.In 的领域世界米饭收集, nonfunctional PRR37 等位基因的不同类型在许多欧洲、亚洲的米饭栽培变种被发现。尤其是,在自然长天的条件下面极其早怀有 Ghd7/Hd4 和 PRR37/Hd2 花的 nonfunctional 等位基因的装饰用的梨树变化,并且被使适应米饭耕作的极北的区域,多达 53 ??  ? 攠潸祣瑳 ????? 楶牴 ??? 啅??Bon-Hyuk Koo Soo-Cheul Yoo Joon-Woo Park Choon-Tak Kwon Byoung-Doo Lee Gynheung An Zhanying Zhang linjie Li Zichao Li Nam-Chon Paek 2013Molecular Plant2013,6,6:42
2Roles of lignin biosynthesis and regulatory genes in plant development显示文摘Lignin is an important factor affecting agricultural traits,biofuel production,and the pulping industry.Most lignin biosynthesis genes and their regulatory genes are expressed mainly in the vascular bundles of stems and leaves,preferentially in tissues undergoing lignification.Other genes are poorly expressed during normal stages of development,but are strongly induced by abiotic or biotic stresses.Some are expressed in non-lignifying tissues such as the shoot apical meristem.Alterations in lignin levels affect plant development.Suppression of lignin biosynthesis genes causes abnormal phenotypes such as collapsed xylem,bending stems,and growth retardation.The loss of expression by genes that function early in the lignin biosynthesis pathway results in more severe developmental phenotypes when compared with plants that have mutations in later genes.Defective lignin deposition is also associated with phenotypes of seed shattering or brittle culm.MYB and NAC transcriptional factors function as switches,and some homeobox proteins negatively control lignin biosynthesis genes.Ectopic deposition caused by overexpression of lignin biosynthesis genes or master switch genes induces curly leaf formation and dwarfism.Jinmi Yoon Heebak Choi Gynheung An 2015Journal of Integrative Plant Biology2015,57,11:17
3Rice Transcription Factor OsDOFll Modulates Sugar Transport by Promoting Expression of Sucrose Transporter and SWEET Genes显示文摘Yunfei Wu Sang-Kyu Lee Youngchul Yoo Jinhuan Wei Suk-Yoon Kwon Sang-Won Lee Jong-Seong Jeon Gynheung An 2018Molecular Plant2018,11,6:15
4Mutation of Oryza sativa CORONATINE INSENSITIVE 1b(OsCOI1b) delays leaf senescence显示文摘Jasmonic acid(JA) functions in plant development,including senescence and immunity. Arabidopsis thaliana CORONATINE INSENSITIVE 1 encodes a JA receptor and functions in the JA-responsive signaling pathway. The Arabidopsis genome harbors a single COI gene, but the rice(Oryza sativa) genome harbors three COI homologs, Os COI1 a,Os COI1 b, and Os COI2. Thus, it remains unclear whether each Os COI has distinct, additive, synergistic, or redundant functions in development. Here, we use the oscoi1b-1 knockout mutants to show that Os COI1 b mainly affects leaf senescence under senescence-promoting conditions. oscoi1b-1 mutants stayed green during dark-induced and natural senescence,with substantial retention of chlorophylls and photosynthetic capacity. Furthermore, several senescence-associated genes were downregulated in oscoi1b-1 mutants, including homologs of Arabidopsis thaliana ETHYLENE INSENSITIVE 3 and ORESARA 1, important regulators of leaf senescence. These results suggest that crosstalk between JA signaling and Resea ethylene signaling affects leaf senescence. The Arabidopsis coi1-1 plants containing 35S:Os COI1 a or 35S:Os COI1 b rescued the delayed leaf senescence during dark incubation, suggesting that both Os COI1 a and Os COI1 b are required for promoting leaf senescence in rice. oscoi1b-1 mutants showed significant decreases in spikelet fertility and grain weight,leading to severe reduction of grain yield, indicating that Os COI1-mediated JA signaling affects spikelet fertility and grain filling.Sang-Hwa Lee Yasuhito Sakuraba Taeyoung Lee Kyu-Won Kim Gynheung An Han Yong Lee Nam-Chon Paek 2015Journal of Integrative Plant Biology2015,57,6:9
5Rice-Specific Mitochondrial Iron-Regulated Gene (MIR) Plays an Important Role in Iron Homeostasis显示文摘线粒体利用铁(Fe ) ,但是涉及 mitochondrial Fe 规定的蛋白质没在植物被描绘。我们克隆并且描绘 mitochondrial 调整铁(米尔) 在米饭的基因在 Fe 包含了动态平衡。当在烟草 BY-2 房间表示了时,米尔对线粒体局部性。米尔抄本极大地在根和射击织物响应 Fe 缺乏被增加。当相当或相同的事物没为另外的有机体在米饭或 Arabidopsis 染色体数据库,或在 EST 数据库被发现,米尔不对任何已知的蛋白质相应。在 MIR T-DNA 猛烈米饭异种(米尔) 的生长显著地被损害与相比野类型(WT ) 当在 Fe 缺乏或足够的条件下面成长时,种。而且,多于当在 Fe 足够或缺乏的条件下面成长时,两次在与 WT 相比的射击和根织物的 Fe 的数量种,米尔植物积累了。尽管有在根和射击的 Fe 的高累积,米尔植物触发了 Fe-deficiency-inducible 基因的表达式,显示那米尔不能利用为生理的函数的 Fe。这些结果清楚地建议那米尔是大米特定的 mitochondrial 蛋白质,最近演变,并且在 Fe 动态平衡起一个重要作用。Yasuhiro Ishimaru Khurram Bashir Masaru Fujimoto Gynheung An Reiko Nakanishi Itai Nobuhiro Tsutsumi Hiromi Nakanishi Naoko K Nishizawa 2009Molecular Plant2009,2,5:3
6Differential regulation of chlorophyll a oxygenase genes in rice显示文摘Sichul Lee Jin-Hong Kim Eun Sang Yoo Choon-Hwan Lee Hirohiko Hirochika Gynheung An 2005Plant Molecular Biology2005,,6:1
7Identification of class B and class C floral organ identity genes from rice plants显示文摘Hong-Gyu Kang Jong-Seong Jeon Sichul Lee Gynheung An 1998Plant Molecular Biology1998,,6:1
8Identification of class B and class C floral organ identity genes from rice plants显示文摘Hong-Gyu Kang Jong-Seong Jeon Sichul Lee Gynheung An 1998Plant Molecular Biology1998,,6:1
9Phenotypic alterations of petal and sepal by ectopic expression of a rice MADS box gene in tobacco显示文摘Hong-Gyu Kang Yoo-Sun Noh Yong-Yoon Chung Michael A. Costa Kyungsook An Gynheung An 1995Plant Molecular Biology1995,,1:1
10Early flowering and reduced apical dominance result from ectopic expression of a rice MADS box gene显示文摘Yong-Yoon Chung Seong-Ryong Kim David Finkel Martin F. Yanofsky Gynheung An 1994Plant Molecular Biology1994,,2:1
11Alteration of floral organ identity in rice through ectopic expression of OsMADS16显示文摘Sichul Lee Jong-Seong Jeon Kyungsook An Yong-Hwan Moon Sanghee Lee Yong-Yoon Chung Gynheung An 2003Planta2003,,6:1
12Two rice MADS domain proteins interact with OsMADS1显示文摘Jeongsim Lim Yong-Hwan Moon Gynheung An Sung Key Jang 2000Plant Molecular Biology2000,,4:1
13Developmental and environmental regulation of two ribosomal protein genes in tobacco显示文摘Jianwei Gao Seong-Ryong Kim Yong-Yoon Chung James M. Lee Gynheung An 1994Plant Molecular Biology1994,,5:1
14Early flowering and reduced apical dominance result from ectopic expression of a rice MADS box gene显示文摘Yong-Yoon Chung Seong-Ryong Kim David Finkel Martin F. Yanofsky Gynheung An 1994Plant Molecular Biology1994,,2:1
15Characterization of two rice MADS box genes homologous to GLOBOSA显示文摘Yong-Yoon Chung Seong-Ryong Kim Hong-Gyu Kang Yoo-Sun Noh Min Chul Park David Finkel Gynheung An 1995Plant Science1995,,:1
16Identification of class B and class C floral organ identity genes from rice plants显示文摘Hong-Gyu Kang Jong-Seong Jeon Sichul Lee Gynheung An 1998Plant Molecular Biology1998,,6:1
17Structural and functional analyses of Arabidopsis thaliana chlorophyll a/b-binding protein (cab) promoters显示文摘Amitava Mitra Hong K. Choi Gynheung An 1989Plant Molecular Biology1989,,2:1
18Early flowering and reduced apical dominance result from ectopic expression of a rice MADS box gene显示文摘Yong-Yoon Chung Seong-Ryong Kim David Finkel Martin F. Yanofsky Gynheung An 1994Plant Molecular Biology1994,,2:1
19Isolation and Characterization of a Rice Cysteine Protease Gene, OsCP1, Using T-DNA Gene-Trap System显示文摘Sanghyun Lee Ki-Hong Jung Gynheung An Yong-Yoon Chung 2004Plant Molecular Biology2004,,5:1
20Rice SVP-group MADS-box proteins,OsMADS22 and OsMADS55,are negative regulators of brassinosteroid responses显示文摘Shinyoung Lee Sang Chul Choi Gynheung An 2008The Plant Journal2008,,54:1
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