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| 1 | The nodulation and nyctinastic leaf movement is orchestrated by clock gene LHY in Medicago truncatula显示文摘As sessile organisms,plants perceive,respond,and adapt to the environmental changes for optimal growth and survival.The plant growth and fitness are enhanced by circadian clocks through coordination of numerous biological events.In legume species,nitrogen-fixing root nodules were developed as the plant organs specialized for symbiotic transfer of ni-trogen between microsymbiont and host.Here,we report that the endogenous circadian rhythm in nodules is regulated by MtLHY in legume species Medicago truncatula.Loss of function of MtLHY leads to a reduction in the number of nodules formed,resulting in a diminished ability to assimilate nitrogen.The operation of the 24-h rhythm in shoot is further influenced by the availability of nitrogen produced by the nodules,leading to the irregulated nyctinastic leaf movement and reduced biomass in mtlhy mutants.These data shed new light on the roles of MtLHY in the orchestration of circadian oscillator in nodules and shoots,which provides a mechanistic link between nodulation,nitrogen assimilation,and clock function. | Yiming Kong Lu Han Xiu Liu Hongfeng Wang Lizhu Wen Xiaolin Yu Xiaodong Xu Fanjiang Kong Chunxiang Fu Kirankumar S.Mysore Jiangqi Wen Chuanen Zhou | 2020 | Journal of Integrative Plant Biology2020,62,12: | 4 |
| 2 | AGAMOUS AND TERMINAL FLOWER controls floral organ identity and inflorescence development in Medicago truncatula显示文摘Angiosperms integrate a multitude of endogenous and environmental signals to control floral development,thereby ensuring reproductive success.Here,we report the identification of AGAMOUS AND TERMINAL FLOWER(AGTFL),a novel regulator of floral development in Medicago truncatula.Mutation of AGTFL led to the transformation of carpels and stamens into numerous sepals and petals and altered primary inflorescence identity.AGTFL encodes a nucleus-localized proteincontaining a putative Myb/SANT-like DNA-binding domain and a PKc kinase domain.Molecular and genetic analyses revealed that AGTFL regulates the transcription of MtAGs and MtTFL1 to control floral organ identity and inflorescence development. | Butuo Zhu Hui Li Yifeng Hou Pengcheng Zhang Xiuzhi Xia Na Wang Hui Wang Kirankumar S.Mysore Jiangqi Wen Yanxi Pei Lifang Niu Hao Lin | 2019 | Journal of Integrative Plant Biology2019,61,8: | 2 |
| 3 | Large‐scale insertional mutagenesis using the Tnt1 retrotransposon in the model legume Medicago truncatula显示文摘 | MillionTadege JiangqiWen JiHe HaidiTu YounsigKwak AlexisEschstruth AnneCayrel GabriellaEndre Patrick X.Zhao MireilleChabaud PascalRatet Kirankumar S.Mysore | 2008 | The Plant Journal2008,,2: | 1 |
| 4 | Plant growth‐promoting rhizobacteria systemically protect Arabidopsis thaliana against Cucumber mosaic virus by a salicylic acid and NPR1‐independent and jasmonic acid‐dependent signaling pathway显示文摘 | Choong‐MinRyu John F.Murphy Kiankumar S.Mysore Joseph W.Kloepper | 2004 | The Plant Journal2004,,3: | 1 |
| 5 | DPB3 and DPB4 proteins regulate Medicago flowering and leaf anthocyanin biosynthesis显示文摘As important subunits of the leading-strand DNA polymerase epsilon,chromatin remodeling,and histone acetylation complexes,the H2A/H2B-like histone-fold domain-containing proteins DNA PO-LYMERASE II SUBUNIT B3(DPB3)and DPB4 play key roles in nucleosome assembly and heterochromatin maintenance during DNA replication in yeast,Drosophila,and mammals(He et al.,2017;Bellelli et al.,2018;Yu et al.,2018;Casari et al.,2021). | Yingying Meng Chongnan Wang Qiqi Li Wenkai Ji Jiangqi Wen Kirankumar S.Mysore Yanxi Pei Lifang Niu Hao Lin | 2023 | Journal of Genetics and Genomics2023,50,6: | 0 |
| 6 | Medicago truncatula resources to study legume biology and symbiotic nitrogen fixation显示文摘Medicago truncatula is a chosen model for legumes towards deciphering fundamental legume biology,especially symbiotic nitrogen fixation.Current genomic resources for M.truncatula include a completed whole genome sequence information for R108 and Jemalong A17 accessions along with the sparse draft genome sequences for other 226 M.truncatula accessions.These genomic resources are complemented by the availability of mutant resources such as retrotransposon(Tnt1)insertion mutants in R108 and fast neutron bombardment(FNB)mutants in A17.In addition,several M.truncatula databases such as small secreted peptides(SSPs)database,transporter protein database,gene expression atlas,proteomic atlas,and metabolite atlas are available to the research community.This review describes these resources and provide information regarding how to access these resources. | Raja Sekhar Nandety Jiangqi Wen Kirankumar S.Mysore | 2023 | Fundamental Research2023,3,2: | 0 |