目的通过鉴定曼地亚红豆杉Taxus×media中病程相关基因非表达子1(non-expressor of pathogenesis-related genes1,NPR1)家族基因,分析并比较其蛋白结构以及基因表达等差异,为利用NPR1基因提高红豆杉紫杉醇含量奠定理论基础。方法利...目的通过鉴定曼地亚红豆杉Taxus×media中病程相关基因非表达子1(non-expressor of pathogenesis-related genes1,NPR1)家族基因,分析并比较其蛋白结构以及基因表达等差异,为利用NPR1基因提高红豆杉紫杉醇含量奠定理论基础。方法利用本地化blast对曼地亚红豆杉NPR1基因进行鉴定,通过CD-search、MEGA X、DNAMAN以及MEME在线网站等生物信息学技术进行保守结构域、进化树构建、多序列比对以及基序分析,利用blast比对转录组数据,预测所获得的NPR1基因在不同组织以及激素和低温处理后的表达模式。结果在曼地亚红豆杉中共鉴定出3个NPR1家族基因,命名为TmNPR1~TmNPR3。研究发现,3个NPR1家族成员均含有BTB_POZ保守结构域,并分成2个亚家族。TmNPR1/2与AtNPR3/4聚在一起,TmNPR3与AtNPR5/6亲缘关系较近。Tm NPR1/2与AtNPR3/4相似,均含有EAR基序(VDLNETP)。表达模式分析发现3个NPR1基因在不同组织中的表达有所差异,TmNPR1/2在针叶组织中的表达水平最高,TmNPR1响应低温胁迫,且在茉莉酸甲酯和冠菌素激素处理曼地亚红豆杉细胞系中表达量最高。结论曼地亚红豆杉NPR1家族的3个成员在序列和结构上存在保守性,但也在红豆杉根和针叶的发育以及在低温等不同胁迫和茉莉酸甲酯信号途径中扮演了不同的角色,推测具有不同的功能,为揭示TmNPR1s基因功能和利用分子生物学技术提高红豆杉紫杉醇产量提供理论依据。展开更多
运用单因素随机区组设计,在田间栽培条件下,对曼地亚红豆杉(Taxus media Rehder)1年生幼苗施用3种细菌肥料〔放射性土壤杆菌肥料(Agr)、荧光假单胞菌肥料(PfPt)和微球菌肥料(Mic),浓度为2×10~7CFU·m L^(-1),施肥2次〕,对翌年...运用单因素随机区组设计,在田间栽培条件下,对曼地亚红豆杉(Taxus media Rehder)1年生幼苗施用3种细菌肥料〔放射性土壤杆菌肥料(Agr)、荧光假单胞菌肥料(PfPt)和微球菌肥料(Mic),浓度为2×10~7CFU·m L^(-1),施肥2次〕,对翌年生长期幼苗株高和冠幅的增长量变化以及枝叶中4种次生代谢物〔紫杉醇、三尖杉宁碱、10-去乙酰紫杉醇和10-去乙酰基巴卡亭Ⅲ(10-DABⅢ)〕含量进行比较分析。结果表明:施用Agr、Mic和PfPt后的翌年11月份,曼地亚红豆杉幼苗株高和冠幅的增长量均大于CK(不施肥,对照)组,其中,施用PfPt后幼苗株高增长量最大,且显著高于CK组(P<0.05);施用Mic后幼苗的冠幅增长量最大,但与CK组间无显著差异(P>0.05)。施用Agr、Mic和PfPt后枝叶中紫杉醇、三尖杉宁碱和10-DABⅢ含量均显著高于CK组,其中,施用Mic后紫杉醇含量最高,施用PfPt后三尖杉宁碱和10-DABⅢ含量最高,且总体上显著高于其他处理组;施用Mic后10-去乙酰紫杉醇含量最高,且显著高于CK组及其他处理组,而施用Agr和PfPt后10-去乙酰紫杉醇含量与CK组无显著差异。研究结果显示:施用Agr、Mic和PfPt均对曼地亚红豆杉幼苗生长以及枝叶中次生代谢物积累有一定的促进作用,但不同细菌肥料的促进效应存在差异,因此,在曼地亚红豆杉的栽培过程中应根据不同需求选择适宜的细菌肥料。展开更多
AIM: To evaluate the anti-HIV activity and mechanism of action of wikstroelide M, a daphnane diterpene from Daphne acutiloba Rehder (Thymelaeaceae). METHOD: The anti-HIV activities of wikstroelide M against differ...AIM: To evaluate the anti-HIV activity and mechanism of action of wikstroelide M, a daphnane diterpene from Daphne acutiloba Rehder (Thymelaeaceae). METHOD: The anti-HIV activities of wikstroelide M against different HIV strains were evaluated by cytopathic effect assay and p24 quantification assay with ELISA. The inhibitory effect of wikstroelide M on HIV reverse transcription was analyzed by real-time PCR and ELISA. The effect of wikstroelide M on HIV-1 integrase nuclear translocation was observed with a cell-based imaging assay. The effect of wikstroelide M on LEDGF/p75-IN interaction was assayed by molecular docking. RESULTS: Wikstroelide M potently inhibited different HIV-1 strains, including HIV-lmn, HIV-1AI7, and HIV-19495, induced a cytopathic effect, with ECs0 values ranging from 3.81 to 15.65 ng.mL-I. Wikstroelide M also had high inhibitory activities against HIV-2noD and HIV-2cBL_20-induced cytopathic effects with ECs0 values of 18.88 and 31.90 ng.mL 1. The inhibitory activities of wikstroelide M on the three HIV-1 strains were further confirmed by p24 quantification assay, with ECs0 values ranging from 15.16 to 35.57 ng.mL-1. Wikstroelide M also potently inhibited HIV-lnm induced cytolysis in MT-4 cells, with an ECs0 value of 9.60 ng.mL ~. The mechanistic assay showed that wikstroelide M targeted HIV-I reverse transcriptase and nuclear translocation of integrase through disrupting the interaction between integrase and LEDGF/p75. CONCLUSION: Wikslroelide M may be a potent HIV-1 and HIV-2 inhibitor, the mechanisms of action may include inhibition of reverse trascriptase activity and inhibition of integrase nuclear Iranslocation through dismpting the interaction between integrase and LEDGF/p75.展开更多
文摘运用单因素随机区组设计,在田间栽培条件下,对曼地亚红豆杉(Taxus media Rehder)1年生幼苗施用3种细菌肥料〔放射性土壤杆菌肥料(Agr)、荧光假单胞菌肥料(PfPt)和微球菌肥料(Mic),浓度为2×10~7CFU·m L^(-1),施肥2次〕,对翌年生长期幼苗株高和冠幅的增长量变化以及枝叶中4种次生代谢物〔紫杉醇、三尖杉宁碱、10-去乙酰紫杉醇和10-去乙酰基巴卡亭Ⅲ(10-DABⅢ)〕含量进行比较分析。结果表明:施用Agr、Mic和PfPt后的翌年11月份,曼地亚红豆杉幼苗株高和冠幅的增长量均大于CK(不施肥,对照)组,其中,施用PfPt后幼苗株高增长量最大,且显著高于CK组(P<0.05);施用Mic后幼苗的冠幅增长量最大,但与CK组间无显著差异(P>0.05)。施用Agr、Mic和PfPt后枝叶中紫杉醇、三尖杉宁碱和10-DABⅢ含量均显著高于CK组,其中,施用Mic后紫杉醇含量最高,施用PfPt后三尖杉宁碱和10-DABⅢ含量最高,且总体上显著高于其他处理组;施用Mic后10-去乙酰紫杉醇含量最高,且显著高于CK组及其他处理组,而施用Agr和PfPt后10-去乙酰紫杉醇含量与CK组无显著差异。研究结果显示:施用Agr、Mic和PfPt均对曼地亚红豆杉幼苗生长以及枝叶中次生代谢物积累有一定的促进作用,但不同细菌肥料的促进效应存在差异,因此,在曼地亚红豆杉的栽培过程中应根据不同需求选择适宜的细菌肥料。
基金supported,in part,by grants from the National Natural Science Foundation of China(Nos.81102483,81001462)the 973 Program(No.2009CB522306)the Key Scientific and Technological Program of China(Nos.2009-ZX09501-029,2012ZX10001-006,2012ZX10001-007,2012ZX-09103-101-022),and Yunnan(No.2010GA001)
文摘AIM: To evaluate the anti-HIV activity and mechanism of action of wikstroelide M, a daphnane diterpene from Daphne acutiloba Rehder (Thymelaeaceae). METHOD: The anti-HIV activities of wikstroelide M against different HIV strains were evaluated by cytopathic effect assay and p24 quantification assay with ELISA. The inhibitory effect of wikstroelide M on HIV reverse transcription was analyzed by real-time PCR and ELISA. The effect of wikstroelide M on HIV-1 integrase nuclear translocation was observed with a cell-based imaging assay. The effect of wikstroelide M on LEDGF/p75-IN interaction was assayed by molecular docking. RESULTS: Wikstroelide M potently inhibited different HIV-1 strains, including HIV-lmn, HIV-1AI7, and HIV-19495, induced a cytopathic effect, with ECs0 values ranging from 3.81 to 15.65 ng.mL-I. Wikstroelide M also had high inhibitory activities against HIV-2noD and HIV-2cBL_20-induced cytopathic effects with ECs0 values of 18.88 and 31.90 ng.mL 1. The inhibitory activities of wikstroelide M on the three HIV-1 strains were further confirmed by p24 quantification assay, with ECs0 values ranging from 15.16 to 35.57 ng.mL-1. Wikstroelide M also potently inhibited HIV-lnm induced cytolysis in MT-4 cells, with an ECs0 value of 9.60 ng.mL ~. The mechanistic assay showed that wikstroelide M targeted HIV-I reverse transcriptase and nuclear translocation of integrase through disrupting the interaction between integrase and LEDGF/p75. CONCLUSION: Wikslroelide M may be a potent HIV-1 and HIV-2 inhibitor, the mechanisms of action may include inhibition of reverse trascriptase activity and inhibition of integrase nuclear Iranslocation through dismpting the interaction between integrase and LEDGF/p75.