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16篇 您的检索式:作者名="Wang Ligeng"
    题名 作者 年代 出处 被引量
1Disruption of phytoene desaturase gene results in albino and dwarf phenotypes in Arabidopsis by impairing chlorophyll, carotenoid, and gibberellin biosynthesis显示文摘类胡萝卜素在植物和 phytoene desaturase 基因(PDS3 ) 在许多生理的过程起一个重要作用把重要的酶之一编码为类胡萝卜素生合成小径。这里,我们报导 T-DNA 插入异种 ofPDS3 基因的鉴定和分析。功能的互补证实 thepds3 异种的白化体和矮子显型源于 PDS3 基因的功能的混乱。叶绿体开发在 pds3 异种在专业版质体阶段被逮捕。进一步的分析证明高级 ofphytoene 在 pds3 异种被积累。外长的 GA (3 ) 的增加能部分救矮子显型,建议 pds3 异种的矮子显型可能由于 GAdeficiency。Microarray 和 RT-PCR 分析证明那破坏 PDS3 基因导致了涉及至少 20 条新陈代谢的小径的基因表示变化,包括在类胡萝卜素,叶绿素,和 GA 的许多基因的抑制生合成小径。我们的数据建议在 pds3 异种的积累的 phytoene 可能在某些否定反馈起一个重要作用影响多样的细胞的小径的基因表示。Genji Qin Hongya Gu Ligeng Ma Yiben Peng Xing Wang Deng Zhangliang Chen Li-Jia Qu 2007Cell Research2007,17,5:39
2CRISPR/Cas9-mediated disruption of TaNP1 genes results in complete male sterility in bread wheat显示文摘Male sterile genes and mutants are valuable resources in hybrid seed production for monoclinous crops.High genetic redundancy due to allohexaploidy makes it difficult to obtain the nuclear recessive male sterile mutants through spontaneous mutation or chemical or physical mutagenesis methods in wheat.The emerging effective genome editing tool,CRISPR/Cas9 system,makes it possible to achieve simultaneous mutagenesis in multiple homoeoalleles.To improve the genome modification efficiency of the CRISPR/Cas9 system in wheat,we compared four different RNA polymerase(Pol)Ⅲpromoters(TaU3 p,TaU6 p,OsU3 p,and OsU6 p)and three types of sgRNA scaffold in the protoplast system.We show that the TaU3 promoter-driven optimized sgRNA scaffold was most effective.The optimized CRISPR/Cas9 system was used to edit three TaNP1 homoeoalleles,whose orthologs,OsNP1 in rice and ZmIPE1 in maize,encode a putative glucose-methanol-choline oxidoreductase and are required for male sterility.Triple homozygous mutations in TaNP1 genes result in complete male sterility.We further demonstrated that anyone wild-type copy of the three TaNP1 genes is sufficient for maintenance of male fertility.Taken together,this study provides an optimized CRISPR/Cas9 vector for wheat genome editing and a complete male sterile mutant for development of a commercially viable hybrid wheat seed production system.Jian Li Zheng Wang Guangming He Ligeng Ma Xing Wang Deng 2020Journal of Genetics and Genomics2020,47,5:12
3Aptamer-conjugated upconversion nanoprobes assisted by magnetic separation for effective isolation and sensitive detection of circulating tumor cells显示文摘Shuai Fang Chao Wang Jian Xiang Liang Cheng Xuejiao Song Ligeng Xu Rui Peng Zhuang Liu 2014Nano Research2014,7,9:10
4A transceptor-channel complex couples nitrate sensing to calcium signaling in Ambidopsis显示文摘Nitrate-induced Ca^(2+) signaling is crucial for the primary nitrate response in plants.However,the molecular mechanism underlying the generation of the nitrate-specific calcium signature remains unknown.We report here that a cyclic nucleotide-gated channel(CNGC)protein,CNGC15,and the nitrate transceptor(NRT1.1)constitute a molecular switch that controls calcium influx depending on nitrate levels.The expression of CNGC15 is induced by nitrate,and its protein is localized at the plasma membrane after establishment of young seedlings.We found that disruption of CNGC15 results in the loss of the nitrate-induced Ca^(2+) signature(primary nitrate response)and retards root growth,reminiscent of the phenotype observed in the nrt1.1 mutant.We further showed that CNGC15 is an active Ca^(2+)-permeable channel that physically interacts with the NRT1.1 protein in the plasma membrane.Importantly,we discovered that CNGC15-NRT1.1 interaction silences the channel activity of the heterocomplex,which dissociates upon a rise in nitrate levels,leading to reactivation of the CNGC15 channel.The dynamic interactions between CNGC15 and NRT1.1 therefore control the channel activity and Ca^(2+) influx in a nitrate-dependent manner.Our study reveals a new nutrient-sensing mechanism that utilizes a nutrient transceptor-channel complex assembly to couple nutrient status to a specific Ca^(2+) signature.Xiaohan Wang Changxin Feng LiLi Tian Congcong Hou Wang Tian Bin Hu Qian Zhang Zhijie Ren Qi Niu Jiali Song Dongdong Kong Liangyu Liu Yikun He Ligeng Ma Chengcai Chu Sheng Luan Legong Li 2021Molecular Plant2021,14,5:5
5Brassinosteroid signal trans-duction: An emerging picture显示文摘Steroid hormones play essential roles in animal growth and development. Steroid signaling in animal system is focused on the direct gene regulation response mediated by its nuclear receptors. Recently, steroid hormones are also found in plants. Identification of BRI1 — a critical compo-nent of the plasma-membrane steroid receptor complex, and the related signal transduction pathway mediated by the membrane receptor have revealed an elementary picture of BR signaling from the cell surface perception to the activa-tion of BR-responsive nuclear genes.WANG Qiaomei1 & MA Ligeng2 1. Department of Horticultural Science, Zhejiang University, Hangzhou 310029, China 2. Department of Biology, Hebei Normal University, Shijiazhuang 050016, China Correspondence should be addressed to Ma Ligeng (e-mail: ligeng.ma @yale.edu) 2003Chinese Science Bulletin2003,48,18:3
6Generation of a series of mutant lines resistant to imidazolinone by screening an EMS-based mutant library in common wheat显示文摘The breeding of herbicide-resistant wheat varieties has helped control weeds in wheat fields economically and effectively.Imidazolinone (IMI) herbicides are popular as they have low toxicity in mammals,are effective at small doses,and exhibit broad-spectrum herbicidal action in the field.Therefore,the isolation and genetic and molecular characterization of IMI-resistant wheat mutants will enhance weed management in wheat fields.In the present study,352 IMI-resistant plants were isolated by genetic screening from a mutant pool prepared by EMS-based random mutagenesis.Cloning of the mutated genes from the IMI-resistant plants indicated that ten taals alleles had been isolated,and mutation in one of three Ta ALS homolog genes conferred IMI resistance,and such a mutation is a dominant trait.Further analysis showed that taals-d exhibited the greatest IMI resistance,whereas taals-b exhibited the weakest resistance to IMI among three homologous taals mutants.In terms of IMI resistance,the taals triple mutant was stronger than the taals double mutants,and the taals double mutants were stronger than the single mutants,indicating a dose-dependent effect of the Ta ALS mutation on IMI resistance in wheat.Biochemical analysis indicated that the mutation in Ta ALS increased the tolerance of Ta ALS to inhibition by IMI.Our work details the genetic and molecular characterization of als wheat mutants,provides a foundation for understanding IMI resistance and breeding wheat varieties with herbicide resistance,and indicates that genetic screening using a mutagenized pool is an effective and important means of breeding crops with additional desired agricultural traits.Zhuo Chen Zheng Wang Yanfang Heng Jian Li Jiawei Pei Ying Cao Xing Wang Deng Ligeng Ma 2021The Crop Journal2021,9,5:3
7Direct interaction of A rabidopsis cryptochromes with COP1 in light control development显示文摘WANG Haiyang MA Ligeng LI Jinming et d 2001Science2001,294,5540:1
8Global genome expression analysis of rice in response to drought and high-salinity stresses in shoot, flag leaf, and panicle显示文摘Junli Zhou Xiangfeng Wang Yuling Jiao Yonghua Qin Xigang Liu Kun He Chen Chen Ligeng Ma Jian Wang Lizhong Xiong Qifa Zhang Liumin Fan Xing Wang Deng 2007Plant Molecular Biology2007,,5:1
9Dual-functional Se/Fe complex facilitates TRAIL treatment against resistant tumor cells via modulating cellular endoplasmic reticulum stress显示文摘Tumor cell resistance is one of the big hurdles limiting the therapeutic efficacy of tumor necrosis factorrelated apoptosis-inducing ligand(TRAIL)-based cancer treatment.Therefore,the development of a sa fe and effective sensitizer agent is greatly desired for optimizing TRAIL therapy.Herein,we successfully developed a Se/Fe complex with low toxicity to highly effectively inhibit tumor cells proliferation and migration capabilities through down-regulating ER stress related selenoproteins.Furthermore,it could more efficiently damage tumor spheroids with good penetration capability.More importantly,it could synergize with TRAIL treatment to induce the robust generation of reactive oxygen species(ROS),downregulating ER stress related selenoproteins for triggering tumor cells apoptosis in extrinsic and intrinsic signaling pathways.Taken together,this study provides a potential chemo-drug and sensitizer agent to improve the therapeutic efficacy of TRAIL-based cancer treatment.Yahui Yang Yifan Wang Ligeng Xu Tianfeng Chen 2020Chinese Chemical Letters2020,31,7:1
10Characterization of phosphatidylinositol-specific phospholipase C (PI-PLC) from lilium daviddi pollen显示文摘PAN Yanyun WANG Xin MA Ligeng 2005Plant Cell Physiol2005,46,:1
11USP49 deubiquitinates histone H2B and regulates cotranscriptional pre-mRNA splicing显示文摘Zhuo Zhang Amanda Jones Heui-Yun Joo Dewang Zhou Ying Cao Shaoxia Chen Hediye Erdjument-Bromage Matthew Renfrow Hang He Paul Tempst Tim M. Townes Keith E. Giles Ligeng Ma Hengbin Wang 2013Genes & Development2013,,14:1
12Treatment of methyl orange by calcined layered double hydroxides in aqueous solution:Adsorption property and kinetic studies显示文摘Ni Zheming Xia Shengjie Wang Ligeng 2007Journal of Colloid and Interface Science2007,316,:1
13A chloride efflux transporter,BIG RICE GRAIN 1,is involved in mediating grain size and salt tolerance in rice显示文摘Grain size is determined by the size and number of cells in the grain.The regulation of grain size is crucial for improving crop yield;however,the genes and molecular mechanisms that control grain size remain elusive.Here,we report that a member of the detoxification efflux carrier/Multidrug and Toxic Compound Extrusion(DTX/MATE)family transporters,BIG RICE GRAIN 1(BIRG1),negatively influences grain size in rice(Oryza sativa L.).BIRG1 is highly expressed in reproductive organs and roots.In birg1 grain,the outer parenchyma layer cells of spikelet hulls are larger than in wild-type(WT)grains,but the cell number is unaltered.When expressed in Xenopus laevis oocytes,BIRG1 exhibits chloride efflux activity.Consistent with this role of BIRG1,the birg1 mutant shows reduced tolerance to salt stress at a toxic chloride level.Moreover,grains from birg1 plants contain a higher level of chloride than those of WT plants when grown under normal paddy field conditions,and the roots of birg1 accumulate more chloride than those of WT under saline conditions.Collectively,the data suggest that BIRG1 in rice functions as a chloride efflux transporter that is involved in mediating grain size and salt tolerance by controlling chloride homeostasis.Zhijie Ren Fenglin Bai Jingwen Xu Li Wang Xiaohan Wang Qian Zhang Changxin Feng Qi Niu Liying Zhang Jiali Song Fang Bao Liangyu Liu Yikun He Ligeng Ma Wang Tian Congcong Hou Legong Li 2021Journal of Integrative Plant Biology2021,63,12:1
14A functional characterization of TaMs1 orthologs in Poaceae plants显示文摘TaMs1 encodes a non-specific lipid transfer protein(nsLTP) and is required for pollen development in wheat. Although MS1 is a Poaceae-specific gene, the roles of MS1 genes in other Poaceae plants are unknown, especially in rice and maize. Here, we identified one ortholog in rice(OsLTPg29) and two orthologs in maize(ZmLTPg11 and ZmLTPx2). Similar to TaMs1, both OsLTPg29 and ZmLTPg11 genes are specifically expressed in the microsporocytes, and both OsLTPg29 and ZmLTPg11 proteins showed lipid-binding ability to phosphatidic acid and several phosphoinositides. To determine their roles in pollen development, we created osltpg29 mutants and zmltpg11 zmltpx2 double mutants by CRISPR/Cas9.osltpg29, not zmltpg11 zmltpx2, is defective in pollen development, and only OsLTPg29, not ZmLTPg11,can rescue the male sterility of tams1 mutant. Our results demonstrate that the biological function of MS1 in pollen development differs in the evolution of Poaceae plants.Jian Li Zheng Wang Zhenyi Chang Hang He Xiaoyan Tang Ligeng Ma Xing Wang Deng 2021The Crop Journal2021,9,6:1
15Treatment of methyl orange by calcined layered double hydroxides in aqueous solution: Adsorption property and kinetic studies显示文摘NI Zheming XIA Shengjie WANG Ligeng 2007Journal of Colloid and Interface Science2007,316,2:1
16The Arabidopsis AGAMOUS 5′-UTR represses downstream gene translation显示文摘Dear Editor,In eukaryotes, mature m RNAs have a tripartite structure consisting of a 5′-untranslated region(5′-UTR), a coding region and a 3′-untranslated region(3′-UTR). Though the coding region encodes the protein sequence.Ying Cao Ying Wang Yan Li Jing Yang Ligeng Ma 2019Science China(Life Sciences)2019,62,2:0
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