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| 1 | GmFtsH25 overexpression increases soybean seed yield by enhancing photosynthesis and photosynthates显示文摘Increasing plant photosynthetic capacity is a promising approach to boost yields,but it is particularly challenging in C3crops,such as soybean(Glycine max(L.)Merr.).Here,we identified GmFtsH25,encoding a member of the filamentation temperature-sensitive protein H protease family,as a major gene involved in soybean photosynthesis,using linkage mapping and a genome-wide association study.Overexpressing GmFtsH25 resulted in more grana thylakoid stacks in chloroplasts and increased photosynthetic efficiency and starch content,while knocking out GmFtsH25 produced the opposite phenotypes.GmFtsH25 interacted with photosystem I light harvesting complex 2(GmLHCa2),and this interaction may contribute to the observed enhanced photosynthesis.GmFtsH25 overexpression lines had superior yield traits,such as yield per plant,compared to the wild type and knockout lines.Additionally,we identified an elite haplotype of GmFtsH25,generated by natural mutations,which appears to have been selected during soybean domestication.Our study sheds light on the molecular mechanism by which GmFtsH25 modulates photosynthesis and provides a promising strategy for improving the yields of soybean and other crops. | Li Wang Yuming Yang Zhongyi Yang Wenlong Li Dezhou Hu Huilian Yu Xiao Li Hao Cheng Guizhen Kan Zhijun Che Dan Zhang Hengyou Zhang Hui Wang Fang Huang Deyue Yu | 2023 | Journal of Integrative Plant Biology2023,65,4: | 2 |
| 2 | DRES:Dynamic Range Encoding Scheme for TCAM Coprocessors显示文摘 | Che Hao Wang Zhijun Zheng Kai | 2008 | IEEE Transactions on Computer2008,57,6: | 1 |
| 3 | DRES: Dynamic Range Encoding Scheme for TCAM Coprocessors显示文摘 | Che Hao Wang Zhijun Zheng Kai at al | 2008 | IEEE Transactions on Computers2008,57,7: | 1 |
| 4 | DRES : Dynamic Range Encoding Scheme for TCAM Coprocessors 显示文摘 | Che Hao Wang Zhijun Zheng Kai | 2008 | IEEE Transactions on Computers2008,57,7: | 1 |
| 5 | Hierarchical Web Caching Systems: Modeling, Design and Experimental Results显示文摘 | Che Ha Tung Ye Wang Zhijun | 2002 | IEEE Journal on Selected Areas in Communications2002,20,7: | 1 |
| 6 | DRES:Dynamic Range Encoding Scheme for TCAM Coprocessors显示文摘 | Hao Che Zhijun Wang Kai Zheng | 2008 | IEEE Transactions on Computers2008,57,7: | 1 |
| 7 | GmTOC1b negatively regulates resistance to Soybean mosaic virus显示文摘Soybean(Glycine max)is a major oil and feed crop worldwide.Soybean mosaic virus(SMV)is a globally occurring disease that severely reduces the yield and quality of soybean.Here,we characterized the role of the clock gene TIMING OF CAB EXPRESSION 1b(GmTOC1b)in the resistance of soybean to SMV.Homozygous Gmtoc1b mutants exhibited increased tolerance to SMV strain SC3 due to the activation of programmed cell death triggered by a hypersensitive response.Transcriptome deep sequencing and RT-qPCR analysis suggested that GmTOC1b likely regulates the expression of target genes involved in the salicylic acid(SA)signaling pathway.GmTOC1b binds to the promoter of GmWRKY40,which encodes a protein that activates the expression of SA-mediated defense-related genes.Moreover,we revealed that the GmTOC1bH1 haplotype,which confers increased tolerance to SMV,was artificially selected in improved cultivars from the Northern and Huang-Huai regions of China.Our results therefore identify a previously unknown SMV resistance component that could be deployed in the molecular breeding of soybean to enhance SMV resistance. | Yuhang Zhang Haiping Du Tiantian Zhao Chunmei Liao Tu Feng Jun Qin Baohui Liu Fanjiang Kong Zhijun Che Liyu Chen | 2023 | The Crop Journal2023,11,6: | 0 |
| 8 | Corrigendum to“GmTOC1b negatively regulates resistance to Soybean mosaic virus”.[Crop J.11(2023)1762-1773]显示文摘The authors regret to report a mistake in the text and an associated change necessary to section 3.6 of the paper.On page 1766 in the right-hand column,line 4,the heading of subsection 3.6“GmWRKY40 represses the expression of PR genes”should be changed to“GmWRKY40 promotes the expression of PR genes”.The authors would like to apologize for any inconvenience caused. | Yuhang Zhang Haiping Du Tiantian Zhao Chunmei Liao Tu Feng Jun Qin Baohui Liu Fanjiang Kong Zhijun Che Liyu Chen | 2024 | The Crop Journal2024,12,1: | 0 |