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1.
应用5'-RACE方法克隆到烟草NTHK2的全长cDNA.其全长cDNA共有3 216bp,其中5'非编码区为509bp,3'非编码区为427bp,编码区为2 280bp,编码产物为760个氨基酸.NTHK2氨基酸序列与植物中的许多杂合型的两组分乙烯受体基因有较高的同源性,具有推测的组氨酸激酶结构域和接受域;但是,在激酶结构域中没有保守的组氨酸,而是被一个天冬氨酸残基所替代.为了研究其生化特性,在酵母中以融合蛋白的形式表达了激酶结构域.体外激酶分析表明,当有Mg2+存在的情况下NTHK2能够自我磷酸化.进一步的研究应阐明NTHK2在植物体内是否能够作为乙烯受体,参与乙烯的信号传导过程.  相似文献   

2.
人脑红蛋白(NGB)全长cDNA序列的克隆   总被引:6,自引:1,他引:5  
人脑红蛋白(neuroglobin, NGB)是新发现的神经系统特异的携氧蛋白, 然而其全长cDNA序列一直未见报道. 采用电子序列延伸技术和cDNA序列末端快速扩增技术(rapid amplification of cDNA ends, RACE)研究发现, 人NGB全长cDNA序列为1 909 bp, 5′非编码区为375 bp, 编码区(456 bp)可编码151个氨基酸, 3′非编码区为1 078 bp, 其中含27 bp的poly(A)(GenBank接受号: AF422797). 综合采用电子序列延伸技术与RACE技术是获得全长cDNA序列的有效方法, 为后续的功能研究提供了重要基础.  相似文献   

3.
普通烟草K^+通道基因NKT4的克隆、序列和表达分析   总被引:2,自引:0,他引:2  
通过比对拟南芥、胡萝卜、番茄和马铃薯的K+通道氨基酸序列得到了保守序列,设计1对简并引物,利用RT-PCR获得3条490bp的普通烟草K+通道基因中间片段.以其中一条中间片段设计特异性引物,应用RACE方法得到5′末端和3′末端cDNA序列.通过拼接并结合全长克隆及测序验证,获得一个未报道的普通烟草K+通道基因,并将其命名为NKT4(GenBank登录号为FJ233071).NKT4的cDNA全长为2937bp,其中5′非编码区45bp、编码区2679bp、3′非编码区213bp;编码区编码892个AA.构建了一个烟草、拟南芥及相关植物K+通道蛋白的系统进化树.基因表达分析表明,NKT4主要在烟草主根和侧根中表达,在烟草叶中也有少量表达.  相似文献   

4.
白桦肌动蛋白(Actin)基因全长cDNA克隆与序列分析   总被引:4,自引:2,他引:2  
以白桦(Betula platyphylla Suk.)次生木质部为材料,用改良CTAB方法提取总RNA。根据植物肌动蛋白(Actin)基因编码区的保守序列设计引物后进行RT-PCR,并采用RACE技术扩增出Actin基因全长序列。该基因cDNA全长1 785 bp,序列分析表明,该基因编码区1 134 bp,编码377个氨基酸,5′非编码区157 bp,3′非编码区495 bp。所得序列与GenBank中注册的其它植物肌动蛋白核苷酸序列的相似性均在80%以上,氨基酸序列的相似性高达96%以上。此基因已在GenBank注册(EU588981)。根据高等植物肌动蛋白相似性构建了进化树,表明白桦肌动蛋白与蓖麻肌动蛋白之间的亲缘关系最为密切,在进化中分化时间最为接近。  相似文献   

5.
西伯利亚蓼铜伴侣蛋白基因在盐胁迫条件下的表达分析   总被引:1,自引:0,他引:1  
铜伴侣蛋白是细胞质中负责传递铜离子的一种小分子转运蛋白,在逆境胁迫过程中铜伴侣蛋白的ATX1家族具有消除活性氧的作用.本研究应用RACE技术从西伯利亚蓼中克隆了具有完整编码区的铜伴侣蛋白全长cDNA序列,命名为PsATX-1.PsATX-1基因全长516 bp,其中开放读码框为228 bp,编码75个氨基酸,5′非编码区为83 bp,3′非编码区为204 bp.GenBank中登录号为EU620702.经比对发现,该基因所编码蛋白拥有重金属结合位点MXCXXC,缺少多数高等植物铜伴侣蛋白(CCH)所特有的C末端结构域(CTD).实时荧光定量PCR分析显示,PsATX-1基因在西伯利亚蓼的地下茎、茎、叶中皆有表达,其中叶中表达量最高;PsATX-1基因受3% NaHCO3胁迫诱导,在不同部位表达模式有差异.  相似文献   

6.
通过电子克隆和RACE相结合的方法,从陆地棉中克隆到一个新ARF基因。序列分析表明,该基因序列全长为2393其中包括87bp的5′非编码区(5′UTR),1941bp的蛋白质编码区,终止密码子TAA和362bp的3′非编码区。该基因可编码647个氨基酸的蛋白质,分子量为71.9kD,等电点(PI)为8.2。该基因含有一个与拟南芥中ARF基因相似的B3结构域和一个Auxin_resp结合位点,表明该基因与拟南芥ARF基因有很高的同源性,推测具有相似或相同的功能。  相似文献   

7.
羊草OEE1基因的克隆及盐胁迫下的表达   总被引:2,自引:0,他引:2  
从羊草(Leymus chinensis )叶片cDNA文库中克隆得到可能编码33 kD的光系统Ⅱ(PSⅡ)外周蛋白(oxygen-evolving enhancer protein1,OEE1)全长cDNA(GenBank登录号为EF583851),命名为LcOEE1.序列分析结果表明,该cDNA全长1 107 bp,5′非编码区为32 bp,3′非编码区为71 bp,编码区长987 bp,编码328个氨基酸.BALSTp比对发现,该基因氨基酸序列与已报道的小麦和水稻中的OEE1序列具有95%和94%的相似性.聚类分析表明,该基因与小麦和水稻的亲缘关系较近,与拟南芥和菠菜OEE1基因的亲缘关系较远.Northern杂交结果表明,在200 mmol/L的NaCl处理7 d的幼叶中,OEE1 mRNA的表达量明显高于未处理的对照,说明羊草中OEEl基因受盐诱导.  相似文献   

8.
牡丹开花相关基因PsAP1的克隆与表达   总被引:1,自引:0,他引:1  
任磊  王雁  周琳  彭镇华 《西北植物学报》2011,31(9):1719-1725
APETALA1基因对花器官的形成具有重要作用,并且能够调节花期.以牡丹品种赵粉(Paeoniasuffru-ticosaL.cv.Zhaofen)为试材,采用RT-PCR和RACE方法从花瓣中获得了1个牡丹APETALA1基因cDNA全长,命名为PsAP1,GenBank登录号为HM143943.其cDNA全长1103 bp,包含130 bp的5′非编码区、244 bp的3′非编码区和1个长度为729 bp编码242个氨基酸的开放阅读框.序列比对和系统进化分析表明,PsAP1与葡萄的亲缘关系最近,相似性达80%以上,属于MADS家族AP1/SQUA亚家族.相对荧光定量PCR分析表明,PsAP1在花瓣中的表达量最高,在雄蕊中表达量最低.  相似文献   

9.
根据珊瑚藻(Corallina afficinalis L.)R-藻红蛋白γ亚基N末端部分氨基酸序列(P83592)设计简并引物,结合RACE方法,扩增获得g亚基的全长cDNA序列。结果表明,序列全长为2308 bp(AY209894),5′非编码区长1203bp,3′非编码区长145 bp,编码区长960 bp,编码320个氨基酸组成的前体,包含71个氨基酸构成的信号肽和249个氨基酸组成的成熟蛋白。成熟蛋白序列内部存在重复序列与前人的报道一致。珊瑚藻亚基cDNA序列不同克隆子的测序结果表明,g亚基cDNA序列存在不同的3′末端,说明该基因可能存在多个拷贝或存在转录后加工。此外,扩增获得g亚基DNA序列(AY308999),比较表明编码区内部没有内含子存在。本文是对珊瑚藻R-藻红蛋白g亚基基因序列的首次报道。  相似文献   

10.
以耐贮辣椒品系P98为材料,采用RACE方法,首次获得辣椒果实多聚半乳糖醛酶(PG)基因的全长cDNA,命名为CaPG,登录号为FJ596175.序列分析结果表明,该基因cDNA长1 668 bp,5′非编码区为119 bp,3′非编码区为442 bp,CDS长1 107 bp,编码368个氨基酸.Blast比对发现,该基因核苷酸序列与已报道的番茄和番木瓜PG基因具有84%和85%的相似性.聚类分析表明,该基因与番茄和番木瓜的亲缘关系较近,与拟南芥PG基因的亲缘关系较远.  相似文献   

11.
A putative ethylene receptor gene NTHK1 encodes a protein with a putative signal peptide, three transmembrane segments, a putative histidine kinase domain and a putative receiver domain. The receiver domain was expressed in an Escherichia coli expression system, purified and used to generate polyclonal antibodies for immunohistochemistry analysis. The spatial expression of the NTHK1 protein was then investigated. We found that NTHK1 was abundant during flower and ovule development. It was also expressed in glandular hairs, stem, and in leaves that had been wounded. The NTHK1 gene was further introduced into the tobacco plant and we found that, in different transgenic lines, the NTHK1 gene was transcribed to various degrees. Upon ACC treatment, the etiolated transgenic seedlings showed reduced ethylene sensitivity when compared with the control, indicating that NTHK1 is a functional ethylene receptor in plants.  相似文献   

12.
Zhou HL  Cao WH  Cao YR  Liu J  Hao YJ  Zhang JS  Chen SY 《FEBS letters》2006,580(5):1239-1250
Ethylene receptors sense ethylene and regulate downstream signaling events. Tobacco ethylene receptor NTHK1, possessing Ser/Thr kinase activity, has been found to function in plant growth and salt-stress responses. NTHK1 contains transmembrane domains, a GAF domain, a kinase domain and a receiver domain. We examined roles of these domains in regulation of plant leaf growth, salt-stress responses and salt-responsive gene expressions using an overexpression approach. We found that the transgenic Arabidopsis plants harboring the transmembrane domain plus kinase domain exhibited large rosettes, had reduction in ethylene sensitivity, and showed enhanced salt sensitivity. The transgenic plants harboring the transmembrane domain plus GAF domain also showed larger rosettes. Truncations of NTHK1 affected salt-induced gene expressions. Transmembrane domain plus kinase domain promoted RD21A and VSP2 expression but decreased salt-induction of AtNAC2. The kinase domain itself promoted AtERF4 gene expression. The GAF domain itself enhanced Cor6.6 induction. Moreover, the NTHK1 functional kinase domain phosphorylated the HIS and ATP subdomains, and five putative phosphorylation sites were identified in these two subdomains. In addition, the salt-responsive element of the NTHK1 gene was in the transmembrane-coding region but not in the promoter region. These results indicate that NTHK1 domains or combination of them have specific functions in plant leaf growth, salt-stress response, gene expression and protein phosphorylation.  相似文献   

13.
The full-length of a two-component gene NTHK1 (Nicotiana tabacum histidine kinase-l) was isolated from tobacco (N. tabacum var. Xanthi) using a previously obtained NTHK1 cDNA fragment as a probe. Sequence analysis revealed that NTHK1 shared high homology with LeETR4 from tomato and encoded an ethylene- receptor homolog. The predicted NTHK1 protein had a putative signal peptide, three transmembrane domains, a histidine kinase domain and a receiver domain. The putative autophosphorylation site at His378 and the phosphate receiver site at Asp689 were also identified. By using the in situ hybridization technique, NTHK1 mRNA was detected during flower organ development. It is also highly expressed in the processes of pollen formation and embryo development. The expression of NTHK1 in response to wounding and other stresses was investigated using competitive RT-PCR. The results demonstrated that NTHK1 was inducible upon wounding (cutting). Floating of the cut leaf pieces in 0.5× MS, with shaking, led to a relatively rapid and strong expression. This phenomenon was confirmed by the in situ hybridization results. In addition to the up-regulation by wounding, NTHK1 expression was also induced following NaCl and PEG treatment, indicating a possible role for NTHK1 in multiple stress responses. Received: 28 June 2000 / Accepted: 1 August 2000  相似文献   

14.
A histidine kinase-based signaling system has been proposed to function in ethylene signal transduction pathway of plants and one ethylene receptor has been found to possess His kinase activity. Here we demonstrate that a His kinase-like ethylene receptor homologue NTHK1 from tobacco has serine/threonine (Ser/Thr) kinase activity, but no His kinase activity. Evidence obtained by analyzing acid/base stability, phosphoamino acid and substrate specificity of the phosphorylated kinase domain, supports this conclusion. In addition, mutation of the presumptive phosphorylation site His (H378) to Gln did not affect the kinase activity whereas deletion of the ATP-binding domain eliminated it, indicating that the conserved His (H378) is not required for the kinase activity and this activity is intrinsic to the NTHK1-KD. Moreover, confocal analysis of NTHK1 expression in insect cells and plant cells suggested the plasma membrane localization of the NTHK1 protein. Thus, NTHK1 may represent a distinct Ser/Thr kinase-type ethylene receptor and function in an alternative mechanism for ethylene signal transduction.  相似文献   

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16.
Cao WH  Liu J  He XJ  Mu RL  Zhou HL  Chen SY  Zhang JS 《Plant physiology》2007,143(2):707-719
  相似文献   

17.
A gene for a putative two-component histidine kinase, which is homologous to os-1 from Neurospora crassa, was cloned and sequenced from the plant-pathogenic fungus Cochliobolus heterostrophus. The predicted protein possessed the conserved histidine kinase domain, the response regulator domain, and six tandem repeats of 92-amino-acids at the N-terminal end that are found in histidine kinases from other filamentous fungi. Introduction of the histidine kinase gene complemented the deficiency of the C. heterostrophus dic1 mutant, suggesting that the Dic1 gene product is a histidine kinase. Dic1 mutants are resistant to dicarboximide and phenylpyrrole fungicides, and they are sensitive to osmotic stress. We previously classified dic1 alleles into three types, based on their phenotypes. To explain the phenotypic differences among the dic1 mutant alleles, we cloned and sequenced the mutant dic1 genes and compared their sequences with that of the wild-type strain. Null mutants for Dic1, and mutants with a deletion or point mutation in the N-terminal repeat region, were highly sensitive to osmotic stress and highly resistant to both fungicides. A single amino acid change within the kinase domain or the regulator domain altered the sensitivity to osmotic stress and conferred moderate resistance to the fungicides. These results suggest that this predicted protein, especially its repeat region, has an important function in osmotic adaptation and fungicide resistance.Communicated by C. A. M. J. J. van den Hondel  相似文献   

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