Phytophthora root and stem rot of soybean caused by Phytophthora sojae(P.sojae)is a devastating disease that affects soybean[Glycine max(L.)Merr.]all over the world.S-phase kinase-associated protein 1(SKP1)proteins ar...Phytophthora root and stem rot of soybean caused by Phytophthora sojae(P.sojae)is a devastating disease that affects soybean[Glycine max(L.)Merr.]all over the world.S-phase kinase-associated protein 1(SKP1)proteins are key members of the SKP1/Cullin/F-box protein(SCF)ubiquitin ligase complex and play diverse roles in plant biology.However,the role of SKP1 in soybean against the phytopathogenic oomycete P.sojae remains unclear.In this study,a novel member of the soybean SKP1 gene family,GmSKP1 which was significantly induced by P.sojae,was reported.The expression of GmSKP1 was simultaneously induced by methyl jasmonate(MeJA),salicylic acid(SA)and ethylene(ET),which might suggest an important role for GmSKP1 of plant in responses to hormone treatments.Functional analysis using GmSKP1 overexpression lines showed that GmSKP1 enhanced resistance to P.sojae in transgenic soybean plants.Further analyses showed that GmSKP1 interacted with a homeodomain-leucine zipper protein transcription factor(GmHDL56)and a WRKY transcription factor(GmWRKY31),which could positively regulate responses to P.sojae in soybean.Importantly,several pathogenesis-related(PR)genes were constitutively activated,including GmPR1a,GmPR2,GmPR3,GmPR4,GmPR5a and GmPR10,in GmSKP1-OE soybean plants.Taken together,these results suggested that GmSKP1 enhanced resistance to P.sojae in soybean,possibly by activating the defense-related PR genes.展开更多
Objective:To study the inhibitory effect of siRNA mediated by expression vectors on Skp2 expression in human chondrocytes.Method:Three Skp2 sequences siRNA-59,siRNA-318 and siRNA-504 were designed as target sites usin...Objective:To study the inhibitory effect of siRNA mediated by expression vectors on Skp2 expression in human chondrocytes.Method:Three Skp2 sequences siRNA-59,siRNA-318 and siRNA-504 were designed as target sites using online siRNA design tools.Skp2 siRNA expression vectors were successfully constructed in vitro by gene recombination technology,and the influence of recombinant plasmid transfection on Skp2 mRNA expression was detected.DNA electrophoresis was used to verify the results.Results:The sequence of Skp2 interference was correct by sequence analysis.The expression of Skp2 mRNA in siRNA-59,siRNA-318,siRNA-504 transfection group was significantly lower than that in no-load group and NC group(P<0.05),the inhibition rates of Skp2 mRNA in siRNA-59,siRNA-318 and siRNA-504 were respectively 60%,41%and 64%,and the siRNA-504 transfection group had the highest inhibition rate.Conclusion:The siRNA eukaryotic expression vector of Skp2 gene was constructed successfully which effectively inhibit Skp2 mRNA expression in human chondrocytes cell,and can provide strong evidence for the treatment of osteoarthritis.展开更多
基金Supported by the NSFC Projects(31971972)the Natural Science Foundation of Heilongjiang Province(ZD2019C001)the Outstanding Talents and Innovative Team of Agricultural Scientific Research。
文摘Phytophthora root and stem rot of soybean caused by Phytophthora sojae(P.sojae)is a devastating disease that affects soybean[Glycine max(L.)Merr.]all over the world.S-phase kinase-associated protein 1(SKP1)proteins are key members of the SKP1/Cullin/F-box protein(SCF)ubiquitin ligase complex and play diverse roles in plant biology.However,the role of SKP1 in soybean against the phytopathogenic oomycete P.sojae remains unclear.In this study,a novel member of the soybean SKP1 gene family,GmSKP1 which was significantly induced by P.sojae,was reported.The expression of GmSKP1 was simultaneously induced by methyl jasmonate(MeJA),salicylic acid(SA)and ethylene(ET),which might suggest an important role for GmSKP1 of plant in responses to hormone treatments.Functional analysis using GmSKP1 overexpression lines showed that GmSKP1 enhanced resistance to P.sojae in transgenic soybean plants.Further analyses showed that GmSKP1 interacted with a homeodomain-leucine zipper protein transcription factor(GmHDL56)and a WRKY transcription factor(GmWRKY31),which could positively regulate responses to P.sojae in soybean.Importantly,several pathogenesis-related(PR)genes were constitutively activated,including GmPR1a,GmPR2,GmPR3,GmPR4,GmPR5a and GmPR10,in GmSKP1-OE soybean plants.Taken together,these results suggested that GmSKP1 enhanced resistance to P.sojae in soybean,possibly by activating the defense-related PR genes.
基金National Natural Science Foundation of China(82060875)National Natural Science Foundation of China(82160912)Guangxi Natural Science Foundation(2022JJA141229)。
文摘Objective:To study the inhibitory effect of siRNA mediated by expression vectors on Skp2 expression in human chondrocytes.Method:Three Skp2 sequences siRNA-59,siRNA-318 and siRNA-504 were designed as target sites using online siRNA design tools.Skp2 siRNA expression vectors were successfully constructed in vitro by gene recombination technology,and the influence of recombinant plasmid transfection on Skp2 mRNA expression was detected.DNA electrophoresis was used to verify the results.Results:The sequence of Skp2 interference was correct by sequence analysis.The expression of Skp2 mRNA in siRNA-59,siRNA-318,siRNA-504 transfection group was significantly lower than that in no-load group and NC group(P<0.05),the inhibition rates of Skp2 mRNA in siRNA-59,siRNA-318 and siRNA-504 were respectively 60%,41%and 64%,and the siRNA-504 transfection group had the highest inhibition rate.Conclusion:The siRNA eukaryotic expression vector of Skp2 gene was constructed successfully which effectively inhibit Skp2 mRNA expression in human chondrocytes cell,and can provide strong evidence for the treatment of osteoarthritis.