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1.
叶绿体表达系统为植物源重组药用蛋白和亚基疫苗的生产提供了一个有效的途径。为验证SARS亚基疫苗在叶绿体中表达的可行性,以及为植物源SARS亚基疫苗的生产提供一套高效、低成本的技术平台,本研究将人工优化合成的SARS-CoV突刺蛋白(S蛋白)受体结合区序列RBD与载体分子CTB融合基因导入烟草叶绿体基因组中。PCR和Southern杂交分析表明,外源融合基因已整合到烟草叶绿体基因组中,并获得同质化。Western杂交分析表明,重组融合蛋白CTB-RBD在叶绿体转基因烟草中获得表达,且主要以可溶性单体形式存在。ELISA分析表明,在不同生长阶段、不同生长部位和不同时间点烟草叶片中,重组融合蛋白CTB-RBD的表达水平呈现明显的变化。重组蛋白在成熟叶片中的表达水平最高可以达到10.2%TSP。本研究通过SARS亚基疫苗RBD在烟草叶绿体中的高效表达,有望为植物源SARS亚基疫苗的生产以及SARS血清抗体的检测提供一个有效的技术平台。  相似文献   

2.
水稻叶片衰老相关基因的研究进展   总被引:2,自引:0,他引:2  
水稻叶片的衰老是制约杂交稻产量提高的主要因素之一,有数据表明水稻籽粒灌浆所需营养物质的60%~80%来自叶片的光合作用,实践证明叶片每推迟1天衰老,产量可提高产1%左右.因此,对叶片衰老的形态、生理生化及其相关分子机理等进行研究具有重要的现实意义.近年来水稻叶片衰老的相关研究表明,叶片的衰老是一个受众多因素影响的复杂过程,在这个过程中叶片发生了巨大的形态与生理生化变化,而这些变化均离不开基因的调控作用.大量实验结果表明:在衰老过程中,叶片细胞有选择地启动或增强某些基因(叶片衰老相关基因)的表达,而关闭或减弱另一些基因(衰老下调基因)的表达,由此来调控叶片衰老的进程.目前研究者已在研究衰老突变体等相关的材料中发现了许多与水稻叶片衰老有关的基因.本文重点概述了近年来水稻叶片衰老相关基因的研究状况,并对未来研究方向等问题做了思考与探讨,以期能为开展进一步的研究工作提供参考.  相似文献   

3.
高温逆境下植物叶片衰老机理研究进展   总被引:3,自引:0,他引:3  
叶片衰老是植物叶片发育的最后阶段,其作为一个主动的生理过程,对植物体内的营养循环再利用以及种子形成具有重要的生理意义。在植物的生长过程中,多种环境因素会影响叶片衰老进程。高温是影响叶片衰老最重要的环境因素之一。随着温室效应的加剧,研究高温胁迫下叶片衰老的调节机制对于通过调控叶片衰老进程,从而增加植物产量具有重要意义。本文对高温胁迫下叶绿体及类囊体膜的损伤、光合电子传递活力的改变、活性氧累积、光合作用相关蛋白质降解及细胞自噬方面的研究进展进行了综述。  相似文献   

4.
脂肪酸作为烟草中一类重要的化合物,对烟草的生长发育及烟叶的品质风格有重要的影响。近年来,脂肪酸代谢也被证实参与了烟草抗逆性的形成。烟草种子富含油脂和各类脂肪酸,随着烟草种子发育,亚油酸、油酸和棕榈酸含量不断增加,可作为一类潜在的生物质能源加以开发利用。在烟草叶片的生长发育过程中,脂肪酸含量逐渐升高,开花时达到最大,随烟叶成熟衰老而逐渐降低,同时饱和脂肪酸逐渐转变为不饱和脂肪酸。烟叶中、下部叶片脂肪酸含量高于上部烟叶,栅栏组织中高于海绵组织中。此外,基因型以及光照、温度、地理因素、施肥、烘烤方法、机械伤害等环境因素均显著影响烟叶内脂肪酸的组成、含量及其脂肪酸生物合成和代谢关键酶活性和基因表达。低温锻炼可显著提高烟叶内多不饱和脂肪酸含量,降低饱和脂肪酸含量,提高烟叶的耐冷性。通过基因工程手段在烟草中过表达脂酰-ACP去饱和酶、酰基载体蛋白、脂肪酸去饱和酶及脂肪酸脱氢酶等基因可有效提高烟草内不饱和脂肪酸的含量,增强烟草在干旱、高温、强光等非生物胁迫环境下的抗逆性。基于以上结果,提出未来的研究方向,旨在为该领域的研究提供理论和实践指导。  相似文献   

5.
选取自然条件下生长的雌雄银杏植株为实验材料,测定了银杏叶片在衰老过程中部分光合生理指标及叶绿体超微结构的变化。检测结果表明:银杏叶片在衰老过程中净光合速率、叶绿素含量均呈下降趋势,SOD、CAT、APX活性均先上升后下降,MDA含量则一直呈现上升趋势。叶片衰老过程中叶绿体类囊体膜片层逐渐松散,直至膜结构逐渐解体,叶绿体内油脂颗粒增大增多,最终解体。雌雄银杏植株在各项生理指标上差异不显著。  相似文献   

6.
PPF1是一个与植物营养生长相关的基因。它编码的产物可能是一个膜蛋白并与拟南芥叶绿体中的类囊体蛋白ALB3有很高的同源性。免疫电镜分析表明PPF1蛋白同样主要定位于类囊体膜 ,而且在短日照G2豌豆开花两周后仍发育良好的叶绿体中有很高的表达 ,在长日照豌豆同时期非正常叶绿体中丰度非常低。对转基因拟南芥和野生型植株的叶片衰老进程比较发现 ,PPF1在拟南芥中的过量表达可以延缓叶片的衰老 ,而用PPF1反义mRNA抑制拟南芥中的同源基因ALB3则明显加快叶片衰老速度。对转基因拟南芥的超微结构分析显示 ,PPF1在拟南芥中过量表达时 ,转基因植株的叶绿体比野生型植株的叶绿体大并含有更多的基粒和基质类囊体膜 ;相反 ,反义PPF1表达抑制其在拟南芥中的同源物时 ,转基因植株的叶绿体比野生型植株的叶绿体小并含有较少的基粒和发育较差的类囊体膜系统。这些数据表明叶绿体的发育状况与PPF1或拟南芥同源物ALB3的表达水平呈正相关。我们的结果提示PPF1基因可能通过控制叶绿体的发育状况来调节植物的发育。  相似文献   

7.
不同生态区烟草叶片蛋白质组学的比较   总被引:6,自引:2,他引:6  
崔红  冀浩  张华  邵惠芳  李东宵  陈亮 《生态学报》2008,28(10):4873-4880
为探讨不同生态区烟叶香气风格形成的机理,应用蛋白质双向电泳联用质谱技术,对河南平顶山(浓香型烟叶的典型生态区)和福建龙岩(清香型烟叶的典型生态区)的烟草(Nicotina tobaccum L.cv.K326)叶片蛋白质组成进行了比较研究。结果发现,51个蛋白质在两个生态区发生了差异表达,其中在河南表达量上升的有15个,在福建表达量上升的有25个。另外,还分别有2个和9个蛋白点为在河南和在福建样品中特异表达。采用MALDI-TOF/MS进行肽质量指纹图谱分析,经MSDB、NCBInr和SwissPort数据库查询,共鉴定出25种蛋白质,其中参与叶绿体发育、色素代谢、光合作用相关的蛋白在福建烟区高表达,与糖酵解途径相关的蛋白质在河南烟区中高表达。另外,在两生态区烟叶中都发现有相当数量的特异表达的抗逆和防御蛋白。首次在蛋白质组学水平对不同香气风格烟叶的形成机理进行了探讨。  相似文献   

8.
PPF1是一个与植物营养生长相关的基因.它编码的产物可能是一个膜蛋白并与拟南芥叶绿体中的类囊体蛋白ALB3有很高的同源性.免疫电镜分析表明PPF1蛋白同样主要定位于类囊体膜,而且在短日照G2豌豆开花两周后仍发育良好的叶绿体中有很高的表达,在长日照豌豆同时期非正常叶绿体中丰度非常低.对转基因拟南芥和野生型植株的叶片衰老进程比较发现, PPF1在拟南芥中的过量表达可以延缓叶片的衰老,而用PPF1反义mRNA抑制拟南芥中的同源基因ALB3则明显加快叶片衰老速度.对转基因拟南芥的超微结构分析显示,PPF1在拟南芥中过量表达时,转基因植株的叶绿体比野生型植株的叶绿体大并含有更多的基粒和基质类囊体膜;相反,反义PPF1表达抑制其在拟南芥中的同源物时,转基因植株的叶绿体比野生型植株的叶绿体小并含有较少的基粒和发育较差的类囊体膜系统.这些数据表明叶绿体的发育状况与PPF1或拟南芥同源物ALB3的表达水平呈正相关.我们的结果提示PPF1基因可能通过控制叶绿体的发育状况来调节植物的发育.  相似文献   

9.
叶绿体基因编码蛋白质在水稻叶片生长过程中的表达研究   总被引:3,自引:0,他引:3  
叶绿体是绿色植物把光能转化为化学能的重要细胞器.目前,多种植物的叶绿体基因组序列已经获得,对叶绿体内发生的各种生物学过程人们也已经有相当深入的了解,但对叶绿体基因编码蛋白质的表达还所知甚少.用蛋白质印迹实验系统地检测了15个叶绿体基因编码蛋白质在水稻叶片不同生长时期的表达.其中7个与光合作用相关蛋白质的表达具有相似的模式,其表达量随叶片生长而增加,一般在孕穗期、开花期达到最高峰,在成熟期叶片下降,这种模式与水稻生长对光合作用的需求有明显相关性.4个与DNA复制相关的RNA聚合酶在苗期叶片中表达量达到最高,说明这些聚合酶在较早时期发挥作用.4个NADH脱氢酶蛋白质的表达呈2种不同的模式,其中亚基2和4在种子萌发后的早期叶片中就达到最高峰,亚基5和7的最高峰出现在中后期,反映了它们之间功能上的不同.实验结果直观且相对定量地揭示了叶绿体编码蛋白质的表达与叶片生长之间的关联关系,为深入了解其功能提供了重要的线索.  相似文献   

10.
通过PCR扩增,从拟南芥中克隆出atslA基因启动子(包括叶绿体转运肽),将此启动子与GUS基因相连构建植物瞬时表达载体,用基因枪法将之导入烟草进行瞬时表达。GUS基因检测分析表明,atslA基因启动子能特异的启动GUS基因在烟草叶片中高效表达。  相似文献   

11.
He  Conglian  Sun  Shubin  Tang  Yun  He  Chenggang  Li  Pengfei  Xu  Tianyang  Zhao  Gaokun  Zou  Congming  Lin  Zhonglong  Chen  Yi 《Journal of Plant Growth Regulation》2022,41(3):1013-1031

Leaf aging is a significant process during herbaceous plant senescence, which is influenced by various internal and external factors. During leaf aging, chlorophyll catabolism is one of the most important metabolism pathways and results in leaf yellowing. Understanding the underlying mechanism is important for the regulation of senescence in tobacco leaf. However, there are few studies on explaining tobacco leaf senescence from the proteomics level. Here, photosynthesis experiments, cell ultrastructure, and proteomics were used to study tobacco leaves of different growth stages. We applied iTRAQ-based quantitative proteomics and parallel reaction monitoring (PRM) to determine the accumulation of proteins in aging tobacco leaves. Overall, we screened 4747 proteins. The result of KEGG pathways analysis showed that differently expressed proteins (DEPs) were involved in four pathways: metabolic pathways, biosynthesis of secondary metabolites, microbial metabolism in diverse environments, and starch and sucrose metabolism. This would be first report based on iTRAQ-PRM technique, in which we identified proteins related to photosynthesis showed a differently expressed during senescence stage in flue-cured tobacco plants.

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12.
13.
水晶艺建兰(Cymbidium ensifolium)因其叶片上呈现出白色透明状,犹如水晶而得名,观赏价值高,但是其形成机理不明确。该研究以建兰‘铁骨水晶’为试验材料,通过对水晶叶片和绿色叶片进行显微结构和超微结构观察,并结合转录组测序等方法,探索建兰水晶艺叶片形成的原因。结果表明:(1)建兰‘铁骨水晶’水晶叶片比绿色叶片薄,叶肉细胞数量减少,形状不规则,且叶绿体含量少;水晶叶片的表皮气孔数量较绿色叶片显著减少;水晶叶片的叶肉细胞中叶绿体结构发育不良,叶绿体双膜和类囊体膜模糊,细胞中存在着大量的嗜锇颗粒。(2)转录组数据分析显示,水晶叶片中与光合作用-天线蛋白、光合作用等代谢途径相关的基因表达量显著下降,而与色素合成代谢途径相关的基因表达量上升。研究推测,建兰水晶艺叶形成的原因可能是由于与光合作用相关的基因表达量降低,导致叶绿体发育不良,叶绿素合成受阻,从而形成白色透明状叶片。  相似文献   

14.
The functional differentiation of protein networks in individual organs and tissues of soybean at various developmental stages was investigated by proteomic approach. Protein extraction by Mg/NP‐40 buffer followed by alkaline phenol‐based method was optimized for proteomic analysis. Proteome analyses of leaves at various developmental stages showed 26 differentially expressed proteins, wherein proteins in translocon at the outer/inner envelope membrane of chloroplast protein‐transport machineries increased significantly at the first trifoliate. Immunoblot analysis showed chaperonin‐60 expressed abundantly in young leaves, whereas HSP 70 and ATP‐synthase β were constitutively expressed in all tissues. The net photosynthesis rate and chlorophyll content showed an age‐dependent correlation in leaves. These results suggest that proteins involved in carbon assimilation, folding and assembly, and energy may work synchronously and show a linear correlation to photosynthesis at developmental stages of leaves. Comparison of flower bud and flower proteome reveals 29 differentially expressed proteins, wherein proteins involved in mitochondrial protein transport and assembly, secondary metabolism, and pollen‐tube growth were up‐regulated during flower development. Together, these results suggest that during developmental stages, each type of tissue is associated with a specific group of proteins; wherein proteins involved in energy, sugar metabolism, and folding, assembly, and destination may play pivotal roles in the maturation process of each organ or tissue.  相似文献   

15.
In order to identify the proteomic changes of apple (Malus domestica Borkh.) during the vegetative phase change and the floral transition, leaf protein of juvenile, adult vegetative and reproductive phase in a seedling ('Jonathan' × 'Golden Delicious') was extracted and analyzed by 2-D electrophoresis and Matrix-assisted laser desorption/ionization-time of flight mass spectrometry. Seventy two gel spots with significant expression differences between ontogenetic phases were obtained. Five protein spots were only detected in leaves of juvenile phase and 11 were not; 17 spots were found exclusively in adult vegetative leaves; and only one spot solely appeared in reproductive leaves while 12 did not. Twenty six of the differentially expressed proteins identified were involved in photosynthesis. Seven enzymes were related to respiration and carbohydrate metabolism. Fifteen other proteins also presented qualitative or quantitative differences among developmental phases. The spatial distribution of one differentially expressed protein, serine hydroxymethyltransferase, was confirmed by enzyme linked immunosorbent assay and immunohistochemistry. These results strongly support the idea that the vegetative phase change and the floral transition are regulated independently during developmental process.  相似文献   

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17.
Rhizobial endophytes infect and colonize not only leguminous plants, but several non‐leguminous species as well. Using green fluorescent protein tagging technique, it has been shown that Rhizobia infect different varieties of rice species and migrate from plant roots to aerial tissues such as leaf sheaths and leaves. The interaction between them was found to promote the growth of rice. The growth promotion is the cumulative result of enhanced photosynthesis and stress resistance. In addition, indole‐3‐acetic acid also contributes to the promotion. Gel‐based comparative proteomic approaches were applied to analyze the protein profiles of three different tissues (root, leaf sheath and leaf) of Sinorhizobium meliloti 1021 inoculated rice in order to get an understanding about the molecular mechanism. Upon the inoculation of rhizobia, proteins involved in nine different functional categories were either up‐regulated or down‐regulated. Photosynthesis related proteins were up‐regulated only in leaf sheath and leaf, while the up‐regulated proteins in root were exclusively defense related. The results implied that there might have been an increase in the import and transport of proteins involved in light and dark reactions to the chloroplast as well as more efficient distribution of nutrients, hence enhanced photosynthesis. Although the initiation of defensive reactions mainly occurred in roots, some different defense mechanisms were also evoked in the aerial tissues.  相似文献   

18.
Considerable soybean yield losses caused by ozone (O3) stress have been demonstrated by large‐scale meta‐analyses of free‐gas concentration enrichment systems. In this study, comparative proteomic approach was employed to explore the differential changes of proteins in O3 target structures such as leaf and chloroplasts of soybean seedlings. Acute O3 exposure (120 parts‐per‐billion) for 3 days did not cause any visible symptoms in developing leaves. However, higher amounts of ROS and lipid peroxidation indicated that severe oxidative burst occurred. Immunoblot analysis of O3‐induced known proteins revealed that proteins were modulated before symptoms became visible. Proteomic analysis identified a total of 20 and 32 differentially expressed proteins from O3‐treated leaf and chloroplast, respectively. Proteins associated with photosynthesis, including photosystem I/II and carbon assimilation decreased following exposure to O3. In contrast, proteins involved in antioxidant defense and carbon metabolism increased. The activity of enzymes involved in carbohydrate metabolism increased following exposure to O3, which is consistent with the decrease in starch and increase in sucrose concentrations. Taken together, these results suggest that carbon allocation is tightly programmed, and starch degradation probably feeds the tricarboxylic acid cycle while the photosynthesis pathway is severely affected during O3 stress.  相似文献   

19.
植物盐胁迫应答蛋白质组学分析   总被引:3,自引:0,他引:3  
张恒  郑宝江  宋保华  王思宁  戴绍军 《生态学报》2011,31(22):6936-6946
土壤盐渍化是限制植物生长和分布的关键因素之一,揭示植物盐胁迫应答的分子机理是借助分子生物学手段提高植物耐盐性的基础.近年来,人们利用高通量蛋白质组学技术分析了拟南芥、水稻等19种植物的盐胁迫应答蛋白质表达图谱.从植物类群(盐生植物和甜土植物)、组织器官(根、地上部分/茎、胚根和胚轴、叶片、花序和配子体)、细胞(悬浮培养细胞、愈伤组织细胞和单细胞生物)和亚细胞结构(叶绿体、质膜和质外体)几方面整合分析了植物盐胁迫应答蛋白质组表达模式特征,主要特征包括:(1)盐生植物通过全面调节细胞骨架重塑、离子转运和区隔化、渗透平衡、活性氧(ROS)清除、信号转导、光合作用和能量代谢等信号与代谢网络体系,获得相对较高的抗/耐盐能力;(2)植物地上部分(叶片、茎、配子体)或光合组织细胞(悬浮培养细胞、愈伤组织细胞和单细胞盐藻)通过调节参与光合作用、碳和能量代谢、ROS清除过程蛋白质的表达模式应对盐胁迫环境;(3)植物地下部分(根、胚根)通过调控信号转导和离子转运相关蛋白质感知/传递盐胁迫信号并维持离子平衡;(4)花序中参与渗透调节、转录调控、蛋白质加工和ROS清除的蛋白质在盐胁迫条件下变化显著;(5)叶绿体通过调控参与光合作用、蛋白质加工和周转,以及氧化还原系统平衡等过程应对盐胁迫;(6)质外体中参与细胞壁代谢、胁迫防御和信号转导过程的蛋白质受盐胁迫影响明显;(7)细胞膜中参与维持膜结构稳定、物质/离子运输和信号转导过程的蛋白质对植物盐胁迫应答具有重要作用.这些分析为深入研究植物耐盐的分子机制提供了重要信息.  相似文献   

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