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1.
碱性螺旋环螺旋(basic/Helix Loop Helix, bHLH)转录因子是植物最大的转录因子家族之一,其广泛参与植物逆境胁迫响应。该研究从野生‘潘那利’番茄(Solanum pennellii Correll)中成功克隆出bHLH转录因子基因SpbHLH89(Sol Genomics登录号Sopen04g001150),采用qRT PCR分析其在干旱胁迫下的表达模式,并利用异源表达初步分析其对非生物胁迫的响应。结果表明:(1)SpbHLH89编码区包含684 bp,编码227个氨基酸,具有典型的碱性螺旋环螺旋区,主要定位于细胞核中;进化树结果显示,SpbHLH89转录因子高度保守,与拟绒毛烟草NtbHLH94(Nicotiana tomentosiformis)存在高度相似性。(2)qRT PCR结果显示,SpbHLH89在‘潘那利’番茄的茎、叶和花中均有表达,其表达量受干旱胁迫诱导。(3)SDS PAGE与Western bloting结果显示,pET 30a SpbHLH89重组蛋白大小约为31 kD。(4)在盐胁迫(400 mmol/L NaCl)和干旱胁迫(600 mmol/L甘露醇)条件下,异源表达重组蛋白的E. coli BL21(DE3)重组菌生长速度提高,说明异源表达SpbHLH89转录因子基因可提高细菌对非生物胁迫的耐受性。  相似文献   

2.
该研究以野生型番茄(Solanum lycopersicum)为材料,采用PCR技术克隆得到了番茄 SlWRKY31 基因起始密码子 ATG 上游启动子序列,并利用该启动子驱动 GUS基因在野生型番茄中表达,对获得的转基因番茄采用不同胁迫处理后进行GUS 染色和定量分析。结果表明:(1)序列分析显示,该启动子全长1 849 bp,含有多个与非生物胁迫和激素响应相关的顺式作用元件,主要包括热胁迫响应元件 HSE、干旱诱导响应元件 MBS、防卫和胁迫响应元件 TC rich repeats、创伤诱导响应元件 WUN motif、脱落酸(ABA)响应元件 ABRE 和水杨酸(SA)响应元件 TCA element。(2)实时荧光定量 PCR 结果显示,SlWRKY31 基因呈组成型表达模式,且在叶和果实中表达量较高,茎中较低;在NaCl、甘露醇、SA、ABA 和42 ℃ 高温的胁迫处理下,其表达量显著升高。(3)构建 SlWRKY31 启动子和 GUS 基因融合的植物表达载体,并通过农杆菌介导法将其转化野生型番茄,对获得的转基因番茄进行 GUS 组织化学染色分析结果显示,SlWRKY31 基因在番茄的各个组织(根、茎、叶、花、果实和种子)中均有表达,表明 SlWRKY31 启动子是组成型表达启动子。(4)对转基因番茄在不同胁迫处理后的 GUS 染色和定量分析显示,SlWRKY31 启动子显著受到NaCl、甘露醇、SA、ABA 和42 ℃ 高温的诱导表达,说明该启动子是一个可以响应多种逆境胁迫的诱导型启动子。  相似文献   

3.
[目的] 构建一株以廉价原料乳糖为底物合成塔格糖的重组菌株,实现一步法高效生物合成稀有糖——塔格糖。[方法] 从Escherichia coli K-12基因组中,PCR扩增出阿拉伯糖异构酶araA和β-半乳糖苷酶lacZ基因,以SD-AS为连接子,利用pET28a-1载体串联表达于Escherichia coli BL21(DE3),获得重组菌E.coli BL21/pET28a-araA-lacZ,对重组菌全细胞催化合成塔格糖的条件进行了工艺优化与放大研究。[结果] araAlacZ基因在E.coli BL21中同时高效表达,在最优条件(pH 8.0、温度50℃、5 mmol/L Mn2+、添加0.5 mol/L硼酸和0.1% SDS)下,E.coli BL21/pET28a-araA-lacZ全细胞转化100 g/L乳糖,合成塔格糖最高产量达24.03±2.03 g/L,乳糖到塔格糖的摩尔转化率为45.67%,随着底物乳糖浓度的提高,塔格糖产量呈不同程度的提高,当投加500 g/L底物乳糖时,全细胞合成塔格糖产量最高达83.81±1.38 g/L。[结论] 通过2个关键靶酶的编码基因araAlacZ在E.coli BL21细胞中进行共表达,实现了以重组菌全细胞为催化剂转化廉价底物乳糖,一步法高效合成稀有糖塔格糖,该研究为生物法制备低能量的功能性稀有糖奠定了较好的研究基础。  相似文献   

4.
翻译延伸因子EF 1α(elongation factor 1 alpha)是细胞中最丰富的蛋白质之一,其在确保mRNA正确解码以产生细胞蛋白质方面发挥重要作用。该研究采用RT PCR扩增方法克隆香菜CsEF 1α基因序列,利用生物信息学对CsEF 1α基因结构、序列特征及系统进化等进行分析,并采用qPCR探究CsEF 1α基因在香菜不同生长时期和非生物胁迫下的表达模式,为进一步揭示EF 1α基因调控机制的研究奠定基础。结果显示:(1)成功克隆获得香菜CsEF 1α基因序列;CsEF 1α基因包含1个1 344 bp的开放阅读框,编码447个氨基酸,分子式为C2202H3544N594O644S20,蛋白质分子量为49.29 kD,等电点为9.12;氨基酸序列组成中赖氨酸数量最多(49个,占11.0%),色氨酸数量最少(3个,占0.7%);属碱性蛋白。(2)CsEF 1α蛋白主要由无规则卷曲(36.91%)和α 螺旋(30.43%)构成,定位于细胞质;系统进化树分析显示,CsEF 1α与胡萝卜、野生番茄、青蒿素和非洲菊的亲缘关系较接近;启动子分析包括4种植物生长发育元件、3种激素响应元件和3种胁迫响应元件。(3)qRT PCR结果显示,CsEF 1α基因的表达量随着香菜生长发育时间的延长而升高,并且与转录丰度的变化一致;CsEF 1α基因对4种不同非生物胁迫的响应表达模式有所差异;随着胁迫时间的延长,在盐胁迫下CsEF 1α基因表现出先升高后降低趋势,而在低温、高温和干旱胁迫下表现出先降低再升高的趋势。研究表明,CsEF 1α基因参与了香菜对非生物胁迫的应答,在香菜生长发育和非生物胁迫中具有重要调控作用。  相似文献   

5.
[目的]来自Paenibacillus polymyxa WLY78的固氮基因簇(nifBHDKEfNXhesAnifV)可以转化入Escherichia coli中表达并使重组大肠杆菌合成有固氮活性的固氮酶。本文拟通过对重组大肠杆菌E.coli 78-7的转录组分析以提高其固氮能力。[方法]对固氮条件(无氧无NH4+)和非固氮条件(空气和100 mmol/L NH4+)培养的重组大肠杆菌E.coli 78-7进行转录组分析。[结果]nif基因在两种培养条件下显著表达,说明在重组大肠杆菌中可规避原菌中氧气和NH4+nif基因的负调控。对于固氮过程必需的非nif基因,如参与钼、硫、铁元素转运的modcysfeoAB,这些基因在两种培养条件下表达水平有差异。而参与铁硫簇合成的sufisc基因簇在两条件下表达水平差异巨大。此外,参与氮代谢的基因在固氮条件下显著上调。[结论]重组大肠杆菌中与固氮相关的非nif基因在该菌的固氮过程中具有较大影响,本文对在异源宿主中调高固氮酶活性研究具有重要意义。  相似文献   

6.
通过对保加利亚乳杆菌(Lactobacillus delbrueckii subsp.bulgaricus)L-乳酸脱氢酶(L-lactate dehydrogenase,L-LDH)同工酶基因的异源表达、酶活测定和摇瓶发酵研究L-LDH在乳酸合成中的作用。将保加利亚乳杆菌ATCC11842中L-乳酸脱氢酶基因ldb0120和ldb0094分别克隆至载体pET28a(+)中,构建重组表达载体pET28aldb0120和pET28aldb0094,并转化到大肠埃希菌(Escherichia coli) BL21(DE3)中进行表达。进一步对重组蛋白进行Ni-NTA柱亲和层析和酶学活性测定,结果显示,LDB0120和LDB0094的比活力分别为0 和25 U/mg,表明LDB0094是具有低活性的L-乳酸脱氢酶,而LDB0120不具有活性。对两株重组菌分别进行好氧和微好氧发酵,重组菌E.coli BL21/pET28aldb0094在好氧和微好氧条件可以合成L-乳酸,浓度分别为41.9和227.9 mg/L,而菌株E.coli BL21/pET28aldb0120在两种培养条件下均基本不合成L-乳酸,推测保加利亚乳杆菌中L-乳酸脱氢酶LDB0094为催化L-乳酸合成的关键酶。首次对保加利亚乳杆菌的L-乳酸脱氢酶同工酶基因进行研究,通过基因异源表达、蛋白纯化、酶活测定和摇瓶发酵,揭示Ldb0094酶为保加利亚乳杆菌ATCC11842中催化L-乳酸合成的关键酶。  相似文献   

7.
为探讨水稻(Oryza sativa L.)中CPR5 基因的功能,以其cDNA 文库为基础进行序列比对,并将1 个同源性较高的序列命名为OsCPR5.生物信息学分析表明,OsCPR5 的开放阅读框长度为1551 bp,编码516 个氨基酸.软件预测该编码蛋白可能是1 个具有5 个跨膜区的膜蛋白和核定位蛋白.组织表达和亚细胞定位分析表明,OsCPR5 在根中的表达水平较高,且广泛分布在细胞膜、细胞质和细胞核上.逆境胁迫分析实验表明,植物激素脱落酸(Abscisic acid, ABA)、过氧化氢(Hydrogen peroxide,H2O2)、氯化钠(NaCl)、甲基紫精(Methyl viologen, MV)等环境胁迫可诱导OsCPR5 的上调表达,其中氧化胁迫相关的MV 和H2O2 处理效果最为明显.拟南芥(Arabidopsis thaliana)转基因株系atcpr5/OsCPR5 在浓度为0.5 μmol L-1、 1.0 μmol L-1 的MV以及6 mmol L-1、 8 mmol L-1 的H2O2 处理下,种子萌发率明显高于atcpr5 突变体.这揭示了OsCPR5 基因在植物抗氧化胁迫响应中具有一定的作用.  相似文献   

8.
以番茄‘哈大粉801’为试材,利用RT-PCR技术,克隆得到1个E3泛素蛋白连接酶基因LeRma1(GenBank登录号XM_004243764.1)。对LeRma1基因进行序列分析,并对LeRma1基因在番茄植株的不同部位以及在非生物胁迫(干旱、盐、碱、高温、低温)下的表达和生理特性进行研究,为培育和改良番茄品种提供理论依据。结果表明:(1)序列分析显示,LeRma1基因的cDNA全长序列729 bp,编码242个氨基酸,分子量为27.05 kD,理论pI 7.97;同源分析显示,番茄LeRma1蛋白与马铃薯的一致性最高(91%)。(2)半定量PCR检测表明, LeRma1基因在番茄根、茎、叶、花、果实中均有表达,且表达差异不明显。(3)干旱胁迫下,LeRma1基因在番茄叶片中优势表达,而在整个干旱过程中根部的LeRma1基因表达量变化不明显;抗旱相关基因LEA、 DREB2A、ABI3在干旱胁迫过程中,番茄叶片中均有表达,且其表达量呈上升趋势,而在根部DREB2A、ABI3基因基本没有检测到。(4)干旱胁迫过程中,番茄植株中丙二醛(MDA)含量呈显著升高趋势,质膜系统严重损伤,体内保护酶(SOD、POD、CAT)活性上升,且根部活性总体明显高于叶片。(5)在非生物逆境(盐、碱、高温、低温)胁迫过程中,LeRma1基因在番茄叶片和根部的表达几乎都有增强的趋势,且在叶片中均是胁迫3 h后诱导起始增强表达。研究认为,LeRma1基因是一个受干旱胁迫诱导增强表达的基因,且在叶片中优势表达,说明LeRma1基因对植物耐受干旱胁迫所起的作用存在一定的组织差异性,而且LeRma1基因可能参与番茄的干旱应答及信号转导过程,在番茄抵抗其他非生物胁迫中LeRma1基因也可能具有一定的作用。  相似文献   

9.
晏婷婷  刘展志  李光耀  吴敬 《微生物学报》2022,62(12):4918-4926
【目的】通过探究特异腐质霉角质酶-OMP25融合蛋白(HiC-OMP25)在不同大肠杆菌(Escherichia coli)菌株中的表达情况、底物降解情况、热稳定性及宿主菌细胞膜通透性与细胞表面疏水性,揭示表达HiC-OMP25时不同宿主菌的差异性,并进一步提高HiC-OMP25在大肠杆菌中的表达量。【方法】分别在E.coli BL21(DE3)及E.coli C43(DE3)中表达HiC-OMP25,并测定其对对硝基苯丁酸酯(4-nitrophenol butyrate,pNPB)、聚丙烯酸乙酯(polyethyl acrylate,PEA)的降解效果、50℃稳定性;测定表达HiC-OMP25时宿主菌的细胞膜通透性及细胞表面疏水性变化;共表达伴侣蛋白提高HiC-OMP25在E.coli C43(DE3)中的表达量。【结果】HiC-OMP25在E.coli BL21(DE3)与E.coli C43(DE3)中均成功表达并降解pNPB,但前者对PEA的降解效果及50 ℃稳定性均低于后者。同时,表达HiC-OMP25显著增强了E.coli BL21(DE3)的细胞膜通透性及细胞表面疏水性。HiC-OMP25与巯基氧化酶(Erv1p)、二硫键异构酶(DsbC)在E.coli C43(DE3)中共表达时,其表达量为原始菌株的2.14倍,且对pNPB及PEA均有良好的降解效果。【结论】异源表达时,HiC-OMP25在E.coli C43(DE3)中正确折叠,而在E.coli BL21(DE3)中未完全正确折叠;通过共表达伴侣蛋白提高了HiC-OMP25在E.coli C43(DE3)中的表达量,为以后HiC-OMP25的工业化生产及应用奠定了基础。  相似文献   

10.
将基因工程菌株E.coliBL21(DE3) pET22b-mETIa高密度发酵,用异丙基硫代-β-D-半乳糖苷(IPTG)诱导,重组刺桐胰蛋白酶抑制剂a(rETIa)蛋白在E.coli中得到较高水平表达,表达量占菌体总蛋白的40%以上.经菌体破碎、包涵体变性、复性,二步柱层析纯化得到电泳纯的rETIa蛋白.测得rETIa对t-PA突变体(NTA)的抑制平衡常数Ki为8.72×10-8 mol/L.据此利用纯化的rETIa蛋白制备rETIa-Sepharose 4B亲和层析柱.直接一步纯化NTA复性液,纯化的NTA纯度达90 %以上,收率为96.2 %,纯化倍数为13.2,比活为(565.7±71.3) U/μg.  相似文献   

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12.
Ohne Zusammenfassung  相似文献   

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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.
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   

17.
Ohne Zusammenfassung  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.
Seven bean rhizobial strains EBRI 2, 3, 21, 24, 26, 27 and 29 identified as Rhizobium etli, and EBRI 32 identified as Rhizobium gallicum, isolated from Egyptian soils and which nodulated Phaseolus vulgaris efficiently, were subjected to hybridization with a nifH probe in order to estimate the copy number of this gene. Seven strains (EBRI 2, 3, 21, 24, 26, 27 and 29) which were only able to nodulate Phaseolus vulgaris, contained three copies of the nifH gene, consistent with their identification as Rhizobium etli bv. phaseoli. Only one strain (EBRI 32) which nodulated both Phaseolus vulgaris and Leucaena leucocephala, had one copy of nifH gene. This confirmed the classification of this strain as Rhizobium gallicum bv. gallicum.  相似文献   

20.
To understand the biogeography of truffle-like fungi, DNA sequences were analysed from representative taxa of Hysterangiales. Multigene phylogenies and the results of ancestral area reconstructions are consistent with the hypothesis of an Australian, or eastern Gondwanan, origin of Hysterangiales with subsequent range expansions to the Northern Hemisphere. However, neither Northern Hemisphere nor Southern Hemisphere taxa formed a monophyletic group, which is in conflict with a strictly vicariant scenario. Therefore, the occurrence and importance of long-distance dispersal could not be rejected. Although a pre-Gondwanan origin of Hysterangiales remains as a possibility, this hypothesis requires that Hysterangiales exist prior to the origin of the currently recognized ectomycorrhizal plants, as well as the arrival of mycophagous animals in Australia. This also requires that a basal paraphyletic assemblage represents parallel evolution of the ectomycorrhizal symbiosis, or that Hysterangiales was mycorrhizal with members of the extinct flora of Gondwana. Regardless, models for both ancient and more recent origins of Hysterangiales are consistent with truffle-like fungi being capable of transoceanic dispersal.  相似文献   

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