目的:探讨腹主动脉缩窄小鼠在向心衰发展的过程中心脏结构和功能的动态变化。方法:健康雄性昆明小鼠,随机分为模型组、假手术组和对照组。模型组采用腹主动脉缩窄的方法制备慢性心力衰竭小鼠模型,假手术组只分离出腹主动脉但不结扎,对...目的:探讨腹主动脉缩窄小鼠在向心衰发展的过程中心脏结构和功能的动态变化。方法:健康雄性昆明小鼠,随机分为模型组、假手术组和对照组。模型组采用腹主动脉缩窄的方法制备慢性心力衰竭小鼠模型,假手术组只分离出腹主动脉但不结扎,对照组不做任何处理。模型组组内分为2周组、4周组、6周组和8周组,每组10只。观察各组小鼠行为学表现、心电图、超声心动图和心肌组织病理学的变化。结果:模型组与对照组相比:模型组小鼠术后2周开始出现行为学改变并且仅有2周组小鼠出现IVSS降低(P<0.05);术后4周开始出现病理性J波、EF降低(P<0.05)、IVSD增加(P<0.05)和心肌损伤;术后6周开始出现LVPWD和LVPWS增加(P<0.05);术后8周开始出现LV mass corrected增加(P<0.05)。各组小鼠心率、R幅值、T幅值、ST段、PR间期、QT间期、QTc等数据差异均无显著性。结论:腹主动脉缩窄导致小鼠出现心衰的过程中出现了EF降低、室间隔肥厚、病理性J波、左室后壁肥厚以及左室质量增加等变化。展开更多
Choriogenesis is the last step of insect oogenesis,a process by which the chorion polypeptides are produced by the follicular cells and deposited on the surface of oocytes in order to provide a highly specialized prot...Choriogenesis is the last step of insect oogenesis,a process by which the chorion polypeptides are produced by the follicular cells and deposited on the surface of oocytes in order to provide a highly specialized protective barrier to the embryo.The essential features of chorion genes have yet to be clearly understood in the diamondback moth,Plutella xylostella,a worldwide Lepidoptera pest attacking cruciferous crops and wild plants.In this study,complete sequences for 15 putative chorion genes were identified,and grouped into A and B classes.Phylogenetic analysis revealed that both classes were highly conserved and within each,branches are also species-specific.Chorion genes from each class were located in pairs on scaffolds of the P.xylostella genome,some of which shared the common promoter regulatory region.All chorion genes were highly specifically expressed in the P.xylostella adult females,mostly in the ovary with full yolk,which is a crucial period to build the shells of the eggs.RNAi-based knockdown of chorion-1,which is located on the Px_scaffold 6 alone,although had no effect on yolk deposition,resulted in smaller eggs and sharply reduced hatchability.Additionally,inhibition of PxCho-1 expression caused a less dense arrangement of the columnar layers,reduced exochorion roughness and shorter microvilli.Our study provides the foundation for exploring molecular mechanisms of female reproduction in P.xylostella,and for making use of chorion genes as the potential genetic-based molecular target to better control this economically important pest.展开更多
文摘目的:探讨腹主动脉缩窄小鼠在向心衰发展的过程中心脏结构和功能的动态变化。方法:健康雄性昆明小鼠,随机分为模型组、假手术组和对照组。模型组采用腹主动脉缩窄的方法制备慢性心力衰竭小鼠模型,假手术组只分离出腹主动脉但不结扎,对照组不做任何处理。模型组组内分为2周组、4周组、6周组和8周组,每组10只。观察各组小鼠行为学表现、心电图、超声心动图和心肌组织病理学的变化。结果:模型组与对照组相比:模型组小鼠术后2周开始出现行为学改变并且仅有2周组小鼠出现IVSS降低(P<0.05);术后4周开始出现病理性J波、EF降低(P<0.05)、IVSD增加(P<0.05)和心肌损伤;术后6周开始出现LVPWD和LVPWS增加(P<0.05);术后8周开始出现LV mass corrected增加(P<0.05)。各组小鼠心率、R幅值、T幅值、ST段、PR间期、QT间期、QTc等数据差异均无显著性。结论:腹主动脉缩窄导致小鼠出现心衰的过程中出现了EF降低、室间隔肥厚、病理性J波、左室后壁肥厚以及左室质量增加等变化。
基金funded by the National Natural Science Foundation of China(32172404)the Natural Science Foundation of Fujian Province,China(2019J01666)+1 种基金the Fujian Agriculture and Forestry University Fund for Distinguished Young Scholars,China(xjq201903)the"111"Program-Innovation Center for Ecologically Based Pest Management of Subtropical Crops,Fujian Agriculture and Fo restry University,China。
文摘Choriogenesis is the last step of insect oogenesis,a process by which the chorion polypeptides are produced by the follicular cells and deposited on the surface of oocytes in order to provide a highly specialized protective barrier to the embryo.The essential features of chorion genes have yet to be clearly understood in the diamondback moth,Plutella xylostella,a worldwide Lepidoptera pest attacking cruciferous crops and wild plants.In this study,complete sequences for 15 putative chorion genes were identified,and grouped into A and B classes.Phylogenetic analysis revealed that both classes were highly conserved and within each,branches are also species-specific.Chorion genes from each class were located in pairs on scaffolds of the P.xylostella genome,some of which shared the common promoter regulatory region.All chorion genes were highly specifically expressed in the P.xylostella adult females,mostly in the ovary with full yolk,which is a crucial period to build the shells of the eggs.RNAi-based knockdown of chorion-1,which is located on the Px_scaffold 6 alone,although had no effect on yolk deposition,resulted in smaller eggs and sharply reduced hatchability.Additionally,inhibition of PxCho-1 expression caused a less dense arrangement of the columnar layers,reduced exochorion roughness and shorter microvilli.Our study provides the foundation for exploring molecular mechanisms of female reproduction in P.xylostella,and for making use of chorion genes as the potential genetic-based molecular target to better control this economically important pest.