期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
拟南芥RALF多肽家族的功能多样性初步分析 被引量:1
1
作者 强晓楠 李鑫 +2 位作者 陈佳 廖红东 于峰 《生物技术通报》 CAS CSCD 北大核心 2019年第1期2-10,共9页
绿色植物中的快速碱化因子(Rapid alkalinization factor,RALF)为一类进化保守的多肽信号分子,以基因家族形式存在。模式植物拟南芥中至少存在35个RALF基因成员,前期研究显示拟南芥RALF家族的部分成员,比如RALF1/23,RALF4/19可分别作为C... 绿色植物中的快速碱化因子(Rapid alkalinization factor,RALF)为一类进化保守的多肽信号分子,以基因家族形式存在。模式植物拟南芥中至少存在35个RALF基因成员,前期研究显示拟南芥RALF家族的部分成员,比如RALF1/23,RALF4/19可分别作为Cr RLK1L类蛋白受体激酶家族成员FERONIA及BUPS1/2的配体,调控细胞伸长、植物免疫应答及双受精等过程,但是RALF家族其他成员是否具有生物学活性,以及不同成员之间是否具有功能性差异均尚不清楚。因此,本研究异源表达了19个代表性的RALF,并对其生物学活性和功能性差异进行了分析。实验结果表明,19个RALF均对根的生长起到不同程度的抑制作用,进一步挑选了部分代表性RALF成员进行了活性氧(Reactive oxygen species,ROS)迸发及丝裂原活化蛋白激酶(Mitogen-activated protein kinase,MAPK)磷酸化实验分析,实验结果表明,我们确证了11个RALF蛋白参与了MAPK信号的响应,同时,证实16个RALF蛋白抑制了由flg22引起的ROS的释放。此外,不同RALF成员在下胚轴细胞伸长上的作用也存在明显差异,比如RALF10促进下胚轴的伸长。以上研究结果表明不同RALF之间既存在功能冗余性,又存在功能性差异。本研究丰富了对RALF功能复杂性和多样性的认识。 展开更多
关键词 拟南芥 根长 下胚轴 植物细胞免疫 RALF10
下载PDF
Immuohistochemical study on smooth muscle cell proliferation, pheno-typic modulation, and extracellular matrix accumulation in venous arterial grafts in rabbits
2
作者 张卫达 朱海龙 《Journal of Medical Colleges of PLA(China)》 CAS 2002年第2期120-124,共5页
Objective: To study the kinetics and distribution of smooth muscle cell (SMC) proliferation, phe-notypic modulation, and various extracellular matrix (ECM) components accumulation during vein graft remodeling. Methods... Objective: To study the kinetics and distribution of smooth muscle cell (SMC) proliferation, phe-notypic modulation, and various extracellular matrix (ECM) components accumulation during vein graft remodeling. Methods: Normal vein and vein graft in carotid arteries were examined on d 4, d 7, d 14, d 60 and d180 after bypass grafting with immunohistochemical markers of cellular proliferation (proliferating cell nuclear antigen, PCNA), cytoskeletal protein production (a-actin SMC), myosin heavy chain (MHO iso-forms, ECM proteins, and histochemistry (hematoxylin eosin and Elastica-van Gieson stain). Results: Normal veins demonstrated an extremely low level of cellular proliferation and expressed as adult phenotype SM-Cs in media. After bypass grafting, medial SMCs in the graft appeared to be damaged and began to proliferate on d 4, and subsequently migrated and formed the neointima on d 7. Thereafter, the neointima thickened throughout the 180-day period of the experiment, although the neointimal SMC proliferation decreased after d 14. Meanwhile SMCs underwent a distinct phenotypic change from normal adult type to embryonic type. On d 60, embryonic phenotype SMCs began to return to the adult phenotype, but remain to be present in the neointima for as long as 180 d. ECM components including type I collagen, heparin sulfate proteoglucan (HSPG), and dermatan sulfate proteoglcan (decorin) were detected within the neointima on d 7. Thereafter, the accumulation of ECM increased progressively with time. On d 180, a large amount of ECM components were found in the neointima. HSPG mainly accumulated in the superficial and cellular region of the neointima , decorin, on other hand, located in hypocellular area deep in neointima. Type I collagen scatted in both regions. The elastic fibers became rich and arranged continuously in the neointima. Conclusion: The neointima of vein graft was initially formed by proliferation of the embryonic-type SMCs and then thickened infinitely due to ECM accumulation. Prolonged existence of the embryonic-type SMCs in the neointima may contribute to ECM accumulation and increase in the neointima thickness infinitely, which may predispose accelerated stenosis in the vein graft. 展开更多
关键词 venous arterial grafts t smooth muscle cell extracellular matrix REMODELING
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部