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1A novel tomato SUMO E_3 ligase,SlSIZ_1,confers drought tolerance in transgenic tobacco显示文摘SUMOylation is an important post-translational modification process that regulates different cellular functions in eukaryotes.SIZ/PIAS-type SAP and Miz1(SIZ_1) proteins exhibit SUMO E_3 ligase activity,which modulates SUMOylation.However,SIZ_1 in tomato has been rarely investigated.In this study,a tomato SIZ_1 gene(Sl SIZ_1)was isolated and its molecular characteristics and role in tolerance to drought stress are described.Sl SIZ_1 was upregulated by cold,sodium chloride(Na Cl),polyethylene glycol(PEG),hydrogen peroxide(H_2O_2) and abscisic acid(ABA),and the corresponding proteins were localized in the nucleus.The expression of Sl SIZ_1 in Arabidopsis thaliana(Arabidopsis) siz1-2 mutants partially complemented the phenotypes of dwarf,cold sensitivity and ABA hypersensitivity.Sl SIZ_1 also exhibited the activity of SUMO E_3 ligase to promote the accumulation of SUMO conjugates.Under drought stress,the ectopic expression of Sl SIZ_1 in transgenic tobacco lines enhanced seed germination and reduced the accumulation of reactive oxygen species.SlSIZ_1 overexpression conferred the plants with improved growth,high free proline content,minimal malondialdehyde accumulation and increased accumulation of SUMO conjugates.Sl SIZ_1 is a functional homolog of Arabidopsis SIZ_1 with SUMO E_3 ligase activity.Therefore,overexpression of Sl SIZ_1 enhanced the tolerance of transgenic tobacco to drought stress.Song Zhang Kunyang Zhuang Shiju Wang Jinlian Lv Na'na Ma Qingwei Meng 2017Journal of Integrative Plant Biology2017,59,2:7
2Modes of genetic adaptations underlying functional innovations in the rumen显示文摘The rumen is the hallmark organ of ruminants and hosts a diverse ecosystem of microorganisms that facilitates efficient digestion of plant fibers.We analyzed 897 transcriptomes from three Cetartiodactyla lineages:ruminants,camels and cetaceans,as well as data from ruminant comparative genomics and functional assays to explore the genetic basis of rumen functional innovations.We identified genes with relatively high expression in the rumen,of which many appeared to be recruited from other tissues.These genes show functional enrichment in ketone body metabolism,regulation of microbial community,and epithelium absorption,which are the most prominent biological processes involved in rumen innovations.Several modes of genetic change underlying rumen functional innovations were uncovered,including coding mutations,genes newly evolved,and changes of regulatory elements.We validated that the key ketogenesis rate-limiting gene(HMGCS2)with five ruminant-specific mutations was under positive selection and exhibits higher synthesis activity than those of other mammals.Two newly evolved genes(LYZ1 and DEFB1)are resistant to Gram-positive bacteria and thereby may regulate microbial community equilibrium.Furthermore,we confirmed that the changes of regulatory elements accounted for the majority of rumen gene recruitment.These results greatly improve our understanding of rumen evolution and organ evo-devo in general.Xiangyu Pan Yudong Cai Zongjun Li Xianqing Chen Rasmus Heller Nini Wang Yu Wang Chen Zhao Yong Wang Han Xu Songhai Li Ming Li Cunyuan Li Shengwei Hu Hui Li Kun Wang Lei Chen Bin Wei Zhuqing Zheng Weiwei Fu Yue Yang Tingting Zhang Zhuoting Hou Yueyang Yan Xiaoyang Lv Wei Sun Xinyu Li Shisheng Huang Lixiang Liu Shengyong Mao Wenqing Liu Jinlian Hua Zhipeng Li Guojie Zhang Yulin Chen Xihong Wang Qiang Qiu Brian PDalrymple Wen Wang Yu Jiang 2021Science China(Life Sciences)2021,64,1:3
3Dispersion of concentrated aqueous neodymia–yttria–alumina mixture with ammonium poly(acrylic acid) as dispersant显示文摘Yaohui Lv Wei Zhang Jie Tan Yuanhua Sang Haiming Qin Jinlian Hu Liuniu Tong Hong Liu Jiyang Wang Robert I Boughton 2010Journal of Alloys and Compounds2010,,6:1
4Shape memory behavior of SMPU knitted fabric显示文摘Yan Liu Aggie Chung JinLian Hu Jing Lv 2007Journal of Zhejiang University SCIENCE A2007,,5:1
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