首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 46 毫秒
1.
该研究以茶树基因组数据库为基础,采用RT-PCR技术,从茶树‘龙井43’中克隆得到基因CsCIGR。序列分析显示,CsCIGR基因开放阅读框长度为1 677 bp,编码588个氨基酸。进化分析表明,CsCIGR属于GRAS家族的PAT1亚家族。多序列比对显示,茶树CsCIGR蛋白与其他植物的GRAS蛋白氨基酸序列具有很高的相似性。氨基酸理化性质分析显示,CsCIGR转录因子属于亲水性蛋白。亚细胞定位预测显示,CsCIGR可能位于细胞核中。启动子预测分析发现,CsCIGR启动子区域包含胁迫响应元件(STRE)、干旱应答元件(MYC)、厌氧诱导元件(ARE)等多种与逆境响应相关的顺式作用元件。荧光定量PCR分析结果显示,CsCIGR基因在低温(4℃)、高温(38℃)、干旱(200 g·L~(-1) PEG)、高盐(200 mmol·L~(-1) NaCl)胁迫下均能诱导表达,且对高盐,低温和高温胁迫响应更为明显,推测CsCIGR基因在茶树响应逆境胁迫中发挥重要作用。该研究为茶树抗性育种筛选基因提供了重要理论依据。  相似文献   

2.
蛋白磷酸酶PP2C作为调节因子直接或间接调控逆境胁迫信号途径和生长发育过程。本研究从已构建好的抑制性消减文库(SSH)中获得1条PP2C基因序列,对其进行了克隆。测序表明该基因c DNA长为999 bp,共编码333个氨基酸,推导该蛋白分子量为36.12 k D,等电点为6.71,是一种亲水蛋白。经氨基酸序列比对和进化树分析表明,该基因属于PP2C家族成员,并命名为Ci PP2C8-like。实时荧光定量PCR检测表明中间锦鸡儿Ci PP2C8-like基因表达受盐和脱水胁迫诱导。  相似文献   

3.
黑毛雪兔子(Saussurea inversa Raab-Straube)是一种典型的高山植物,具有发达的通气组织。该研究以黑毛雪兔子为材料,利用同源克隆和RACE技术克隆了通气组织形成相关基因(ShCTR1),并对其进行序列分析、系统进化分析、表达分析和亚细胞定位分析,以探讨该基因的功能及其与通气组织的关系。结果表明:(1)成功克隆获得ShCTR1基因cDNA全长为2891 bp(NCBI登录号为:ON081649),包含2550 bp的开放阅读框,编码849个氨基酸,理论等电点5.90,分子式C_(4066)H_(6417)N_(1159)O_(1268)S_(43),为疏水蛋白,无跨膜结构。(2)系统进化树分析显示,黑毛雪兔子ShCTR1与菜蓟(Cynara cardunculus L.)CcCTR1的氨基酸序列相似度最高;非编码区序列分析发现ShCTR1基因含有大量的光响应元件,表明ShCTR1基因可能参与对紫外胁迫的响应。(3)实时荧光定量分析显示,ShCTR1基因在根、茎和叶中均有表达,且在根中的表达量最高;在紫外、低温和低氧胁迫下,ShCTR1基因的表达量均上调,证明ShCTR1基因参与了对以上3种环境胁迫的响应。(4)亚细胞定位显示,ShCTR1主要分布于细胞核。研究推测,黑毛雪兔子ShCTR1基因可能在通气组织的形成以及对逆境胁迫的响应中具有重要作用。  相似文献   

4.
从天山雪莲叶片低温诱导的EST文库中获得了1个胚胎发育晚期丰富蛋白基因(LEA)cDNA全长序列。序列分析表明,该基因含有1个468bp编码155个氨基酸的开放阅读框。NCBI保守域预测此蛋白属于LEA_2家族,命名为SiLEA14。系统进化分析表明,该蛋白与北柴胡的LEA-2蛋白亲缘关系最近。荧光定量PCR结果显示,SiLEA14表达量在低温、盐和干旱胁迫条件下迅速升高。亚细胞定位结果表明,SiLEA14蛋白定位于细胞核中。利用农杆菌介导法将该基因导入烟草,测定并分析转基因植株在冷冻和盐胁迫处理下的生理指标,结果表明,SiLEA14基因在烟草中的过量表达提高了烟草的抗冻和耐盐能力。  相似文献   

5.
以东方百合‘索邦’为材料,克隆获得VAL2基因(以下称LoVAL2)。序列分析显示,LoVAL2编码序列长度为2 793 bp,共编码930个氨基酸;预测LoVAL2蛋白具有5个结构域:PHD-L、B3、CW、ZnF-like和EAR结构域。系统进化分析显示,LoVAL2与天门冬亲缘关系较近,与玉米、铁皮石斛等亲缘关系次之,与拟南芥亲缘关系较远。荧光定量表达分析显示,LoVAL2在茎生根、嫩茎、成熟叶、嫩叶及花部组织中均有表达;LoVAL2在雌蕊和雄蕊中的表达于5 mm花蕾中呈现较高水平,随着花蕾发育表达水平下调,之后在雌、雄蕊中的表达水平又分别于20 mm、25 mm花蕾中显著上调,表明LoVAL2基因可能参与雌、雄蕊的早期以及后续发育;亚细胞定位发现LoVAL2在烟草表皮细胞中定位于细胞核,符合转录因子的核定位特征。  相似文献   

6.
利用茶树转录组数据库,检索得到2个NAC家族转录因子基因CsNAC1和CsNAC2。通过RT-PCR方法,将其从茶树‘迎霜’中分离克隆,利用荧光定量PCR方法,对CsNAC1和CsNAC2基因在‘迎霜’和‘安吉白茶’2个茶树品种不同组织以及温度胁迫处理下的表达进行分析,以探讨NAC家族转录因子在温度胁迫下的响应特征。结果表明:(1)CsNAC1和CsNAC2基因开放阅读框长度分别为1 044和1 047bp,分别编码347个和348个氨基酸;蛋白功能域预测和多重对比显示,CsNAC1和CsNAC2蛋白N端均含有典型NAC家族成员所具有的NAM保守结构域。(2)进化分析表明,CsNAC1和CsNAC2分别属于NAC家族的NAP和AtNAC3亚家族。(3)三维分子模型建模显示,CsNAC1和CsNAC2蛋白分别含有3个和2个α-螺旋,6个和7个β-折叠。(4)荧光定量PCR结果显示,CsNAC1在2个茶树品种中具有较相似的组织特异性,均在茶树成熟叶中表达量最高;CsNAC2则分别在‘安吉白茶’的幼叶中,‘迎霜’的根中表达量最高;高温(38℃)和低温(4℃)处理下,CsNAC1和CsNAC2基因的表达均受不同温度胁迫影响,不同茶树品种、不同时间段的表达存在差异。  相似文献   

7.
核不均一蛋白A1(hnRNPA1)是一个重要的RNA结合蛋白。本研究旨在获得家蚕hnRNPA1基因的cDNA,并对其在家蚕翅原基组织进行表达和定位分析。以家蚕幼虫期翅原基mRNA为模板通过反转录克隆家蚕BmhnRNPA1基因的全长cDNA,并对其进行生物信息学分析。构建pET32a-BmhnRNPA1蛋白表达载体,表达且纯化得到BmhnRNPA1重组蛋白,并制备该蛋白多克隆抗体,通过实时荧光定量RT-PCR、Western blot和免疫组化方法检测BmhnRNPA1在家蚕幼虫和蛹翅原基组织中的表达与定位。克隆得到了家蚕hnRNPA1基因的全长cDNA片段,其开放阅读框(ORF)序列为951 bp,编码316个氨基酸,预测分子量为34.98 kDa,等电点为5.15。编码蛋白在第18~90个氨基酸和109~181个氨基酸处为保守的RRM结构域。系统进化分析显示,家蚕hnRNPA1与小菜蛾hnRNPA1的亲缘关系最近。QRT-PCR结果显示,BmhnRNPA1在家蚕幼虫和蛹期的翅原基组织中均有表达,且在蛹期第3天的表达量达到峰值。Western blot进一步证实了实验结果。免疫组化分析结果显示,该蛋白存在于翅原基组织中,并定位于细胞核内。家蚕BmhRNPA1具有两个RNA结合结构域,属于hnRNPs家族,定位于细胞核内,表明其可能参与mRNA的选择性剪接作用。本研究结果为进一步探索该基因的功能提供了基础。  相似文献   

8.
C2H2锌指蛋白转录因子家族在真核生物中具有重要的生物学功能,广泛参与植物叶的发生、花器官的调控、侧枝的形成及逆境胁迫等生命过程。植物C2H2锌指蛋白不仅结合DNA和RNA,而且与蛋白质之间相互作用。本研究利用普通烟草(Nicotiana tabacum)基因组数据库,运用Blastp比对,结合Pfam和SMART分析,鉴定了118条普通烟草C2H2锌指蛋白家族成员;对烟草C2H2锌指蛋白家族进行了进化树分析、结构域分析、物理化学性质分析、染色体定位、基因结构分析、三维结构分析及组织表达分析等。结果表明:不同成员的氨基酸长度差异较大;系统进化及结构域分析显示,所有C2H2家族成员可以被分为5个亚家族,同一亚家族成员之间在结构域和理化性质上呈现较高一致性;每个成员都含有C2H2结构域,在数量上存在较大差异;将所有基因家族成员定位在22条染色体上;组织表达分析表明,每个C2H2亚家族都有成员在不同组织中表达,在叶及根中有些基因的表达量较高。  相似文献   

9.
该研究以水母雪莲为实验材料,通过RT-PCR结合RACE技术克隆了通气组织形成相关基因SmLSD1(GenBank登录号为OL690334),并对该基因在不同胁迫下的表达量及编码蛋白结构进行测定分析。结果表明:(1)水母雪莲SmLSD1基因全长965 bp,包含537 bp的开放阅读框,编码178个氨基酸。(2)同源序列比对发现,水母雪莲SmLSD1蛋白与菊科植物牛蒡LSD1的氨基酸序列相似性最高,达到98.31%。(3)亚细胞定位显示SmLSD1基因主要在细胞核和细胞膜上表达;原核表达显示,SmLSD1基因编码氨基酸的分子量约为18 kD。(4)荧光定量分析显示,SmLSD1基因在根、茎、叶中均有表达,且在叶片中表达量最高;在低温、低氧及紫外胁迫下,SmLSD1基因的表达量下调。研究推测,SmLSD1基因在水母雪莲通气组织的形成以及对逆境胁迫的响应中发挥着重要作用。  相似文献   

10.
AP2/EREBP家族的转录因子在调控植物生长发育和应答环境胁迫方面具有重要作用。利用同源克隆结合RACE(rapid-amplification of cDNA ends)技术, 从四合木(Tetraena mongolica)中克隆了AP2/EREBP家族的基因, 将其命名为TmAP2-1(GenBank登录号: JQ676996)。序列分析结果表明, 该基因的开放阅读框长度为1 452 bp, 编码483个氨基酸; 比对结果显示TmAP2-1有2个AP2/ERF结构域, 属于AP2/EREBP转录因子家族的AP2亚家族。亚细胞定位实验结果表明, TmAP2-1定位在细胞核中。该基因编码的蛋白在酵母中没有转录激活活性。利用Real-time PCR检测发现该基因在根、茎、叶等器官中均表达, 且在叶中表达量最高。此外, TmAP2-1还受到NaCl、低温、PEG和ABA的强烈诱导, 推测TmAP2-1可能参与四合木的逆境胁迫响应。在四合木愈伤组织中过表达该基因能够降低四合木愈伤组织中油脂的含量, 同时提高可溶性糖的含量, 暗示该基因可能通过影响糖代谢过程参与逆境胁迫响应。  相似文献   

11.
12.
Ohne Zusammenfassung  相似文献   

13.
14.
Genetic engineering has improved the product yield of a variety of compounds by overexpressing, inactivating, or introducing new genes in microbial systems. The production of flavor-enhancing ester compounds is an emerging area of heterologous gene expression for desired product yield in Escherichia coli. Isoamyl acetate, butyl acetate, ethyl acetate, and butyl butyrate are reported here to be produced by expressing Saccharomyces cerevisiae genes ATF1 or ATF2 and the strawberry gene SAAT in E. coli when the appropriate substrates are provided. Increasing the concentration of alcohol added to the reaction generally resulted in increased ester production. ATF1 expression was found to produce more isoamyl acetate and butyl acetate than ATF2 expression or SAAT expression in the strains and culture conditions examined. Additionally, SAAT expression resulted in greater isoamyl acetate and butyl acetate production than ATF2 expression. Butyl butyrate is produced by cell-free extracts of E. coli harboring SAAT but not ATF1 or ATF2.  相似文献   

15.
Ohne Zusammenfassung  相似文献   

16.
Ohne Zusammenfassung  相似文献   

17.
Data from microscopic morphology, single-spore cultures, and DNA analyses of teleomorphs and anamorphs support the recognition of five species of Prosthecium with Stegonsporium anamorphs on Acer: P. acerinum sp. nov., the teleomorph of S. acerinum; P. acerophilum comb. nov., formerly known as Dictyoporthe acerophila; P. galeatum comb. nov., originally described as Massaria galeata; P. opalus sp. nov.; and P. pyriforme sp. nov., the teleomorph of S. pyriforme s. str. The morphology of both type specimens and freshly collected material was investigated. The teleomorphs have brown ellipsoidal ascospores with five distosepta and often a longitudinal distoseptum. The anamorphs of all species described here belong to Stegonsporium; their connection to the Prosthecium teleomorphs was demonstrated by morphology and DNA sequences of single spore cultures derived from both ascospores and conidia. The anamorphs and teleomorphs of all five Prosthecium species are described and illustrated by LM images, and a key to these species is provided. As perceived from this work, S. pyriforme is restricted to Europe and does not occur in North America, whereas S. acerinum is restricted to North America, not found in Europe. The host associations given in the literature are revised and evidence is provided that only A. opalus, A. pseudoplatanus, and A. saccharum are confirmed hosts of Prosthecium with Stegonsporium anamorphs. Molecular phylogenetic analyses of tef1, ITS rDNA, and partial nuLSU rDNA sequences confirm that the species with Stegonsporium anamorphs are closely related to P. ellipsosporum, the generic type species. Stilbospora macrosperma is confirmed as the anamorph of P. ellipsosporum by DNA data of single spore isolates obtained from both ascospores and conidia.  相似文献   

18.
Samples of Kochia (K. scoparia), Atriplex (A. dimorphostegia), Suaeda (S. arcuata) and Gamanthus (G. gamacarpus) were collected and analyzed for chemical composition including crude protein (CP), ether extract (EE), ash, neutral detergent fiber (NDFom), acid detergent fiber (ADFom), non-protein N (NPN), Ca, P, Na, K, Cl, Mg, Fe, Cu and Se. In addition, in situ ruminal degradability and post-ruminal disappearance of dry matter (DM) and CP of the samples using a mobile bag technique were determined. Results indicate that the chemical composition of Kochia and Atriplex was notably different from those of Suaeda and Gamanthus. All of these halophytic plants had high concentrations of Na, K, Cl, Cu and Se, and low levels of Ca, P and Mg. The rapidly degradable fractions of DM and CP (g/g) of Kochia (0.31 and 0.35, respectively) and Atriplex (0.39 and 0.50, respectively) were lower than for Suaeda (0.53 and 0.55, respectively) and Gamanthus (0.56 and 0.66, respectively). Ruminal DM and CP disappearance of Kochia (444 and 517 g/kg, respectively) and Atriplex (472 and 529 g/kg, respectively) were lower (P<0.05) than those of Suaeda (553 and 577 g/kg, respectively) and Gamanthus (663 and 677 g/kg, respectively) (P<0.05) using the mobile bag technique. Suaeda had the lowest (P<0.05) NDFom and ADFom disappearance (214 and 232 g/kg, respectively) in the rumen. Kochia scoparia and Atriplex dimorphostegia have more beneficial chemical nutritive components and digestible values versus Suaeda arcuata and Gamanthus gamacarpus.  相似文献   

19.
In order to dissect the genetic regulation of leafblade morphogenesis, 16 genotypes of pea, constructed by combining the wild-type and mutant alleles of MFP, AF, TL and UNI genes, were quantitatively phenotyped. The morphological features of the three domains of leafblades of four genotypes, unknown earlier, were described. All the genotypes were found to differ in leafblade morphology. It was evident that MFP and TL functions acted as repressor of pinna ramification, in the distal domain. These functions, with and without interaction with UNI, also repressed the ramification of proximal pinnae in the absence of AF function. The expression of MFP and TL required UNI function. AF function was found to control leafblade architecture multifariously. The earlier identified role of AF as a repressor of UNI in the proximal domain was confirmed. Negative control of AF on the UNI-dependent pinna ramification in the distal domain was revealed. It was found that AF establishes a boundary between proximal and distal domains and activates formation of leaflet pinnae in the proximal domain.  相似文献   

20.
It has been suggested that two groups ofEscherichia coli genes, theccm genes located in the 47-min region and thenrfEFG genes in the 92-min region of the chromosome, are involved in cytochromec biosynthesis during anaerobic growth. The involvement of the products of these genes in cytochromec synthesis, assembly and secretion has now been investigated. Despite their similarity to other bacterial cytochromec assembly proteins, NrfE, F and G were found not to be required for the biosynthesis of any of thec-type cytochromes inE. coli. Furthermore, these proteins were not required for the secretion of the periplasmic cytochromes, cytochromec 550 and cytochromec 552, or for the correct targeting of the NapC and NrfB cytochromes to the cytoplasmic membrane. NrfE and NrfG are required for formate-dependent nitrite reduction (the Nrf pathway), which involves at least twoc-type cytochromes, cytochromec 552 and NrfB, but NrfF is not essential for this pathway. Genes similar tonrfE, nrfF andnrfG are present in theE. coli nap-ccm locus at minute 47. CcmF is similar to NrfE, the N-terminal region of CcmH is similar to NrfF and the C-terminal portion of CcmH is similar to NrfG. In contrast to NrfF, the N-terminal, NrfF-like portion of CcmH is essential for the synthesis of allc-type cytochromes. Conversely, the NrfG-like C-terminal region of CcmH is not essential for cytochromec biosynthesis. The data are consistent with proposals from this and other laboratories that CcmF and CcmH form part of a haem lyase complex required to attach haemc to C-X-X-C-H haem-binding domains. In contrast, NrfE and NrfG are proposed to fulfill a more specialised role in the assembly of the formate-dependent nitrite reductase.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号