本研究旨在挖掘烟草抗南方根结线虫病程相关基因非表达子NPR1(non-expressor of PR genes)家族成员,并明确其功能。基于拟南芥AtNPR1家族成员蛋白序列,利用生物信息学方法鉴定分析烟草NtNPR1基因家族成员及其特征。通过qRT-PCR检测南方...本研究旨在挖掘烟草抗南方根结线虫病程相关基因非表达子NPR1(non-expressor of PR genes)家族成员,并明确其功能。基于拟南芥AtNPR1家族成员蛋白序列,利用生物信息学方法鉴定分析烟草NtNPR1基因家族成员及其特征。通过qRT-PCR检测南方根结线虫侵染后抗病(NC95)、感病(长脖黄)烟草品种Nt-NPR1家族重要候选抗性基因的相对表达量,采用LC-MS/MS方法对2个品种烟草根系内源水杨酸含量进行检测。结果表明,从普通烟草基因组中共鉴定到12个NtNPR1基因,这些基因被分为3个亚组,同一亚组中NtNPR1家族成员蛋白结构、保守基序的长度和位置都极为相似。编码氨基酸长度范围为462~588,均为亲水性蛋白,均位于细胞核。南方根结线虫侵染抗、感烟草品种后,根系中水杨酸含量、NtNPR1基因家族成员表达量在抗病品种中均升高,在感病品种中则降低,其中NtNPR6的变化最为明显。综上,NPR1基因与烟草南方根结线虫抗性密切相关,NtNPR6基因可作为烟草响应南方根结线虫胁迫的重要基因。展开更多
PCR detection,quantitative real-time PCR(q-RTPCR),outdoor insect resistance,and disease resistance identification were carried out for the detection of genetic stability and disease resistance through generations(T2,T...PCR detection,quantitative real-time PCR(q-RTPCR),outdoor insect resistance,and disease resistance identification were carried out for the detection of genetic stability and disease resistance through generations(T2,T3,and T4)in transgenic maize germplasms(S3002 and 349)containing the bivalent genes(insect resistance gene Cry1Ab13-1 and disease resistance gene NPR1)and their corresponding wild type.Results indicated that the target genes Cry1Ab13-1 and NPR1 were successfully transferred into both germplasms through tested generations;q-PCR confirmed the expression of Cry1Ab13-1 and NPR1 genes in roots,stems,and leaves of tested maize plants.In addition,S3002 and 349 bivalent gene-transformed lines exhibited resistance to large leaf spots and corn borer in the field evaluation compared to the wild type.Our study confirmed that Cry1Ab13-1 and NPR1 bivalent genes enhanced the resistance against maize borer and large leaf spot disease and can stably inherit.These findings could be exploited for improving other cultivated maize varieties.展开更多
【目的】NPR1是调控植物抗病反应的一个关键基因。对中间偃麦草NPR1同源基因TiNH1进行分离和特性分析。【方法】利用RT-PCR和RACE(rapid amplification of cDNA ends)技术获得TiNH1全长cDNA序列,利用Northern和Southern分别研究TiNH1表...【目的】NPR1是调控植物抗病反应的一个关键基因。对中间偃麦草NPR1同源基因TiNH1进行分离和特性分析。【方法】利用RT-PCR和RACE(rapid amplification of cDNA ends)技术获得TiNH1全长cDNA序列,利用Northern和Southern分别研究TiNH1表达特性及其在中间偃麦草基因组中存在形式。【结果】获得了该基因cDNA序列,命名为TiNH1。其编码蛋白TiNH1的氨基酸序列分别与水稻、烟草和拟南芥的NPR1同源性为80%、54%和46%。Northern杂交分析结果表明:TiNH1基因在正常情况下有微量表达,在小麦白粉病菌和纹枯病菌诱导下,该基因表达水平得到提高。Southern杂交分析结果表明;该基因以单拷贝形式存在于中间偃麦草基因组中。【结论】中间偃麦草NPR1同源基因TiNH1编码由580个氨基酸组成的蛋白质TiNH,具有已知NPR1蛋白保守的结构域和功能氨基酸,可能参与寄主对小麦白粉病菌和纹枯病菌的防御反应。展开更多
对水稻和拟南芥等模式植物的研究表明,NPR1(nonexpressor of pathogenesis-related genes 1)是依赖于SA通路的防御反应调节基因,但在辣椒和烟草等茄科作物中该蛋白的功能还鲜有报道。研究从辣椒cDNA文库中分离获得一个NPR1的类似物全长c...对水稻和拟南芥等模式植物的研究表明,NPR1(nonexpressor of pathogenesis-related genes 1)是依赖于SA通路的防御反应调节基因,但在辣椒和烟草等茄科作物中该蛋白的功能还鲜有报道。研究从辣椒cDNA文库中分离获得一个NPR1的类似物全长cDNA(CaNPR1),并获得了其超表达的转基因烟草T1代株系。研究结果表明,这些株系与其野生型植株没有明显表型差异,但却表现出较野生型植株更高的抗青枯菌侵染活性。同时,研究还发现CaNPR1的超表达还显著提高了防御相关基因的表达,表明NPR1在不同植物间具有较强的功能保守性。展开更多
文摘本研究旨在挖掘烟草抗南方根结线虫病程相关基因非表达子NPR1(non-expressor of PR genes)家族成员,并明确其功能。基于拟南芥AtNPR1家族成员蛋白序列,利用生物信息学方法鉴定分析烟草NtNPR1基因家族成员及其特征。通过qRT-PCR检测南方根结线虫侵染后抗病(NC95)、感病(长脖黄)烟草品种Nt-NPR1家族重要候选抗性基因的相对表达量,采用LC-MS/MS方法对2个品种烟草根系内源水杨酸含量进行检测。结果表明,从普通烟草基因组中共鉴定到12个NtNPR1基因,这些基因被分为3个亚组,同一亚组中NtNPR1家族成员蛋白结构、保守基序的长度和位置都极为相似。编码氨基酸长度范围为462~588,均为亲水性蛋白,均位于细胞核。南方根结线虫侵染抗、感烟草品种后,根系中水杨酸含量、NtNPR1基因家族成员表达量在抗病品种中均升高,在感病品种中则降低,其中NtNPR6的变化最为明显。综上,NPR1基因与烟草南方根结线虫抗性密切相关,NtNPR6基因可作为烟草响应南方根结线虫胁迫的重要基因。
基金supported by the National Key Research and Development Program of China(2019YFD1002603-1)。
文摘PCR detection,quantitative real-time PCR(q-RTPCR),outdoor insect resistance,and disease resistance identification were carried out for the detection of genetic stability and disease resistance through generations(T2,T3,and T4)in transgenic maize germplasms(S3002 and 349)containing the bivalent genes(insect resistance gene Cry1Ab13-1 and disease resistance gene NPR1)and their corresponding wild type.Results indicated that the target genes Cry1Ab13-1 and NPR1 were successfully transferred into both germplasms through tested generations;q-PCR confirmed the expression of Cry1Ab13-1 and NPR1 genes in roots,stems,and leaves of tested maize plants.In addition,S3002 and 349 bivalent gene-transformed lines exhibited resistance to large leaf spots and corn borer in the field evaluation compared to the wild type.Our study confirmed that Cry1Ab13-1 and NPR1 bivalent genes enhanced the resistance against maize borer and large leaf spot disease and can stably inherit.These findings could be exploited for improving other cultivated maize varieties.
文摘【目的】NPR1是调控植物抗病反应的一个关键基因。对中间偃麦草NPR1同源基因TiNH1进行分离和特性分析。【方法】利用RT-PCR和RACE(rapid amplification of cDNA ends)技术获得TiNH1全长cDNA序列,利用Northern和Southern分别研究TiNH1表达特性及其在中间偃麦草基因组中存在形式。【结果】获得了该基因cDNA序列,命名为TiNH1。其编码蛋白TiNH1的氨基酸序列分别与水稻、烟草和拟南芥的NPR1同源性为80%、54%和46%。Northern杂交分析结果表明:TiNH1基因在正常情况下有微量表达,在小麦白粉病菌和纹枯病菌诱导下,该基因表达水平得到提高。Southern杂交分析结果表明;该基因以单拷贝形式存在于中间偃麦草基因组中。【结论】中间偃麦草NPR1同源基因TiNH1编码由580个氨基酸组成的蛋白质TiNH,具有已知NPR1蛋白保守的结构域和功能氨基酸,可能参与寄主对小麦白粉病菌和纹枯病菌的防御反应。
文摘对水稻和拟南芥等模式植物的研究表明,NPR1(nonexpressor of pathogenesis-related genes 1)是依赖于SA通路的防御反应调节基因,但在辣椒和烟草等茄科作物中该蛋白的功能还鲜有报道。研究从辣椒cDNA文库中分离获得一个NPR1的类似物全长cDNA(CaNPR1),并获得了其超表达的转基因烟草T1代株系。研究结果表明,这些株系与其野生型植株没有明显表型差异,但却表现出较野生型植株更高的抗青枯菌侵染活性。同时,研究还发现CaNPR1的超表达还显著提高了防御相关基因的表达,表明NPR1在不同植物间具有较强的功能保守性。