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1.
瑞氏木霉表达黑曲霉葡萄糖氧化酶   总被引:8,自引:0,他引:8  
利用高表达分泌纤维素酶的真菌瑞氏木霉表达重组的黑曲霉葡萄糖氧化酶。在大肠杆菌DH5α中构建瑞氏木霉纤维素酶CBHI启动子和CBHI信号肽基因黑曲霉葡萄糖氧化酶基因瑞氏木霉纤维素酶CBHI终止子构巢曲霉的甘油醛3磷酸脱氢酶启动子大肠杆菌抗潮霉素B磷酸转移酶基因构巢曲霉色氨酸C终止子pUC19(命名为pCBHGOD)质粒,线性化后用瑞氏木霉纤维素酶CBHI启动子和CBHI信号肽基因黑曲霉葡萄糖氧化酶基因瑞氏木霉纤维素酶CBHI终止子构巢曲霉的甘油醛3磷酸脱氢酶启动子大肠杆菌抗潮霉素B磷酸转移酶基因构巢曲霉色氨酸C终止子(命名为CBHGOD)核酸片段转化瑞氏木霉QM9414原生质体。用PCR扩增方法筛选出同源重组葡萄糖氧化酶基因的瑞士木霉突变株。用麦杆诱导瑞氏木霉突变株,生产黑曲霉葡萄糖氧化酶,Westernblot分析重组的葡萄糖氧化酶分子量与Sigma公司的天然黑曲霉葡萄糖氧化酶一致,生产的重组酶活性25umL,相当于Sigma公司葡萄糖氧化酶标准品的产量为0.5gL。瑞氏木霉可用于生产黑曲霉葡萄糖氧化酶。  相似文献   

2.
产黄青霉(Pennicillium chrysogenum)是重要的工业丝状真菌,为更好地提高青霉素产量,了解青霉素合成的调控途径及相关基因的功能,突变体库的构建是一种有效途径。本研究以PCR扩增得到的T-DNA片段为外源DNA,通过PEG介导转化至产黄青霉原生质体中,成功地将含有外源博来霉素抗性基因(ble)和绿色荧光蛋白基因(gfp)的T-DNA插入到产黄青霉基因组中,构建了产黄青霉突变体库,并实现了ble基因和gfp基因在产黄青霉中的表达。该方法不依赖于农杆菌介导,无需构建二元表达载体,只需一步PCR即可实现外源基因的制备,简单快速,也为研究其它真菌基因功能和突变体库构建提供参考。  相似文献   

3.
本文利用来自质粒pUCATPH的构巢曲霉色氨酸合成基因trpC的启动子(PtrpC)、终止子(Ttrpc)和潮霉素磷酸转移酶抗性基因(hph)以及植物表达载体pROK Ⅱ成功构建了适用于丝状真菌的根癌农杆菌介导转化的双元载体pROKIIHPH,并转化根癌农杆菌Agrobacterium tumefaciens LBA4404,建立了根癌农杆菌LBA4404介导的链格孢Alternaria alternata分生孢子转化体系;再从乙酰丁香酮(AS)浓度、不同的共培养时间、受体菌分生孢子浓度和农杆菌菌液浓度对A.alternata转化效率的影响对体系进行优化.结果确定了根癌农杆菌菌液体积为200 mL(OD_(600)=0.15),A.alternata分生孢子浓度为10~6个/mL,在A.tumefaciens的预培养时期以及与A.alternata共培养时期分别加入200 μmol/LAS,共培养时间48 h,转化率达120~200个/10~5分生孢子.在所筛选的约800个转化子中获得了1株毒性明显低于野生菌sd1的弱毒突变株t108,通过PCR验证推测其毒力降低可能由于T-DNA插入阻断了基因的表达.该实验结果为与突变相关基因的研究以及弱毒株t108的进一步研究和利用提供了实验材料,也为深入研究链格孢sd1菌株的基因功能奠定了基础.  相似文献   

4.
构巢曲霉是丝状真菌的模式生物,已对其无性发育机制进行了比较充分的研究。本文以FluG-BrlA途径参与构巢曲霉无性发育机制的研究为切入点,综述了构巢曲霉无性发育中心调控路径中各主要成员如brlA、abaA、wetA,中心调控路径修饰基因如stuA、medA及中心调控路径激活因子fluG、flbA-E的研究进展,绘制出构巢曲霉无性发育相关基因遗传位置模式图。研究将为其它丝状真菌无性发育机制的研究提供参考。  相似文献   

5.
冯慧云  邢伟  胡昌华 《微生物学报》2011,51(9):1141-1145
全局调控在丝状真菌次级代谢调控及其生长发育过程中有着重要的作用。LaeA是2004年首次在构巢曲霉中被发现的第一个丝状真菌全局性调控因子,继而在烟曲霉、黄曲霉、产黄青霉、橘青霉中相继被报道。LaeA能够全局性调控抗生素和真菌毒素等次级代谢产物的合成,影响真菌形态分化,另外还通过影响沉默基因的表达从而调控未知代谢产物的产生,因而能为真菌中天然产物的开发提供新的重要途径。本文就其在丝状真菌中的发现、功能、作用机制及其应用等方面进行综述。  相似文献   

6.
【背景】天然蛹虫草是蛹虫草菌侵染昆虫蛹或虫形成的子实体,具有非常重要的生物药理活性。目前蛹虫草基因组测序已经完成,但是其分子生物学研究较少。【目的】在蛹虫草中构建一种以尿苷/尿嘧啶营养缺陷型为筛选标记的农杆菌介导的转基因体系。【方法】乳清酸核苷-5′-磷酸(orotidine-5′-monophosphate,OMP)脱羧酶为尿嘧啶合成必需酶,利用根癌农杆菌介导的转化(Agrobacterium tumefaciens-mediated transformation,ATMT)方法,通过同源重组对蛹虫草野生型菌株中该酶的编码基因pyrG进行敲除,构建尿苷/尿嘧啶营养缺陷型突变体。然后,利用本实验室已有的米曲霉pyrG为筛选标记的二元转化载体,通过农杆菌转化法对该营养缺陷型菌株进行遗传转化。【结果】通过同源重组法,成功敲除pyrG构建了尿嘧啶营养缺陷型蛹虫草,以此为背景,在22℃共培养66h,成功对蛹虫草实现转基因,转化效率为(75±35)/106孢子。另外,本研究还发现丝状真菌常用的构巢曲霉3-磷酸甘油醛脱氢酶启动子PgpdA及α淀粉酶启动子PamyB不能在蛹虫草...  相似文献   

7.
绿色木霉内切几丁质酶基因的克隆及其毛壳菌转化   总被引:5,自引:0,他引:5  
利用PCR方法人Ttichoderma viride的基因组DNA中克隆了一个42kDa的内切几丁质酶基因,扩增的长度为1672bp其中包含了启动子和mRNA的编码区。将该基因与来自构巢曲霉的色氨酸启动子相连后,通过原生质体转化将该基因导入球壳毛壳菌CG10。内切几丁质酶活性的测定结果表明,约1/3转化子的内切丁质酶活性得到了明显提高。本实验为利用基因工程方法提高毛壳菌的生防能力打下了较好的基础。  相似文献   

8.
为了增加工程集胞藻PCC 6803的乙醇合成产量,通过选用强启动子Pcpc560 驱动并提高外源乙醇合成基因(pdc,yqhD)的表达,从而促进乙醇的生产。具体方法利用同源双交换引入来源于运动型发酵单胞菌的丙酮酸脱羧酶基因(pdc)与来源于大肠杆菌的NADPH依赖型醛还原酶基因(yqhD)并选用不同的启动子来驱动其表达。通过逆转录定量PCR分析,比较在不同启动子驱动的情况下,外源乙醇合成基因(pdc,yqhD)的表达情况并检测相应突变株的乙醇产量。结果显示相较于中等启动子,铜离子诱导启动子PpetE,来源于集胞藻PCC 6803的光强启动子Pcpc560显著促进了外源乙醇合成基因(pdc,yqhD)的表达,并增加了工程菌株乙醇合成的产量。超强启动子Pcpc560搭配pdc,yqhD的组合表达,显著提高了工程菌株的乙醇合成产量。  相似文献   

9.
利用PCR方法从Trichoderma viride的基因组DNA中克隆了一个42kDa的内切几丁质酶基因,扩增的长度为1672bp,其中包含了启动子和mRNA的编码区。将该基因与来自构巢曲霉的色氨酸启动子相连后,通过原生质体转化将该基因导入球壳毛壳菌CG10。内切几丁质酶活性的测定结果表明,约1/3转化子的内切几丁质酶活性得到了明显提高。本实验为利用基因工程方法提高毛壳菌的生防能力打下了较好的基础。  相似文献   

10.
为探讨丝状子囊菌基因组的同源保守序列作为标记基因,利用Standalone BLASTN方法将构巢曲霉全基因组基因分别与30种丝状子囊菌基因组比较.构巢曲霉与每个丝状子囊菌基因组之间的同源匹配基因数量似乎可反映子囊菌之间的进化关系,构巢曲霉(10,560个基因)与15种散囊菌纲其他真菌间的匹配基因数量为5,179-7,747个,其中与另外7个同属的种匹配的基因数量为7,434-7,747个,而与亲缘关系较远的2种锤舌菌纲真菌灰葡萄孢和核盘菌的匹配基因数量分别仅有4,318个和4,242个.构巢曲霉的10,560个基因与20余种子囊菌基因组同时匹配的基因数为3,509个,占33.2%,构巢曲霉基因与30种子囊菌共同匹配的基因仅924个.此外,E值大小在10-30_0.1范围的同源序列变异性大,而在0-10-100范围的同源序列高度保守.随着基因组序列数据的增加,比较基因组方法将会在真菌系统学研究领域发挥更大的作用.  相似文献   

11.
An industrial Penicillium chrysogenum strain was transformed using two dominant selection markers, namely the bacterial gene for phleomycin resistance (ble) fused to a fungal promoter, and the acetamidase (amdS) gene from Aspergillus nidulans. Transformation frequencies of up to 20 transformants per microgram of DNA were obtained with the ble system. With the amdS marker the frequency was up to 120 transformants. Cotransformation was very efficient when using amdS as a selection marker. The introduction of pAN5-41B, a plasmid carrying the Escherichia coli lacZ gene fused to the strong glyceraldehyde-3-phosphate dehydrogenase gene (gpd) promoter from A. nidulans, resulted in the formation of blue colonies on XGal plates indicating expression of the lacZ fusion gene in P. chrysogenum. A more detailed analysis of expression levels in several transformants showed that up to 6% of the total amount of soluble protein consists of the beta-galactosidase fusion protein.  相似文献   

12.
The sC sequence from Aspergillus niger was cloned and developed into a homologous marker system for genetic transformation. The coding region of the sC gene amplified by PCR from the A. niger genome was provided with Aspergillus nidulans expression signals (gpdA promoter and trpC terminator). This chimeric construct was used to successfully transform a spontaneous sC- isolate of A. niger to prototrophy. The transformants analyzed by Southern analysis showed integration of multiple copies of the transforming DNA. They also exhibited much higher ATP sulfurylase activity than the wild-type A. niger strain reinforcing the molecular data. This demonstrates the usefulness of the sCniger construct, driven by PgpdA, as a marker for A. niger transformation.  相似文献   

13.
14.
周永力  TANAKA  Chihiro  TSUDA  Mitusya 《菌物学报》2003,22(3):374-379
采用玉米大斑病菌Exserohilum turcicum的无性菌丝作受体,建立了农杆菌Agrobacterium tumefaciens介导的转化方法。采用的载体为 pUR5750, 携有来源于质粒pAN71的潮霉素抗性选择标记。PCR分析表明T-DNA 插入到E. turcicum基因组中。  相似文献   

15.
A new homologous transformation system for the filamentous fungus Penicillium chrysogenum is described. The system is based on complementation of niaD mutants using the nitrate reductase structural gene (niaD) of P. chrysogenum. Spontaneous niaD mutants were identified after selection for chlorate resistance, in growth tests and subsequent complementation with the niaD gene of Aspergillus oryzae. The P. chrysogenum niaD gene was isolated from a genomic library using the Aspergillus nidulans niaD gene as a probe. After subcloning of the hybridizing fragment, the vector obtained, pPC1-1, was capable of transforming a P. chrysogenum niaD mutant at an average of 40 transformants per micrograms of circular DNA. Southern analysis of genomic DNA from a number of transformants showed that pPC1-1 DNA was integrated predominantly at sites other than the niaD locus. Using hybridization analysis it was shown that the niaD gene of P. chrysogenum is clustered with the nitrite reductase gene (niiA). From analysis of the nucleotide sequences of parts of the niaD and niiA genes of P. chrysogenum and comparison of these sequences with nucleotide sequences of the corresponding A. nidulans genes it was deduced that the P. chrysogenum genes are divergently transcribed.  相似文献   

16.
17.
In industrial fermentations, Penicillium chrysogenum uses sulfate as the source of sulfur for the biosynthesis of penicillin. By a PCR-based approach, two genes, sutA and sutB, whose encoded products belong to the SulP superfamily of sulfate permeases were isolated. Transformation of a sulfate uptake-negative sB3 mutant of Aspergillus nidulans with the sutB gene completely restored sulfate uptake activity. The sutA gene did not complement the A. nidulans sB3 mutation, even when expressed under control of the sutB promoter. Expression of both sutA and sutB in P. chrysogenum is induced by growth under sulfur starvation conditions. However, sutA is expressed to a much lower level than is sutB. Disruption of sutB resulted in a loss of sulfate uptake ability. Overall, the results show that SutB is the major sulfate permease involved in sulfate uptake by P. chrysogenum.  相似文献   

18.
B Austin  R M Hall  B M Tyler 《Gene》1990,93(1):157-162
To provide a dominant selectable marker for transformation of Neurospora crassa strains lacking specific auxotrophic mutations, we have engineered the bleomycin (Bm) resistance-encoding gene (ble) from the bacterial transposon Tn5 for expression in N. crassa. The coding region of the ble gene was fused to the promoter and terminator regions of the N. crassa am gene. In some vectors, multiple cloning sites were placed flanking the ble gene to provide a versatile ble cassette. When introduced into N. crassa, the hybrid ble gene conferred resistance to greater than 15 micrograms Bm/ml. Under optimal conditions, the levels of Bm required (2.5 micrograms/ml) make even large-scale transformation experiments very economical. Aspergillus nidulans could also be efficiently transformed to Bm resistance using the N. crassa ble gene fusion. Since the ble gene functions in both N. crassa and A. nidulans, the gene should be useful as a transformation marker for the many other filamentous fungi which are sensitive to Bm.  相似文献   

19.
20.
The isopenicillin N acyltransferases (IATs) of Aspergillus nidulans and Penicillium chrysogenum differed in their ability to maintain the 40-kDa proacyltransferase alphabeta heterodimer in an undissociated form. The native A. nidulans IAT exhibited a molecular mass of 40 kDa by gel filtration. The P. chrysogenum IAT showed a molecular mass of 29 kDa by gel filtration (corresponding to the beta subunit of the enzyme) but the undissociated 40-kDa heterodimer was never observed even in crude extracts. Heterologous expression experiments showed that the chromatographic behaviour of IAT was determined by the source of the penDE gene used in the expression experiments and not by the host itself. When the penDE gene of A. nidulans was expressed in P. chrysogenum npe6 and npe8 or in Acremonium chrysogenum, the IAT formed had a molecular mass of 40 kDa. On the other hand, when the penDE gene originating from P. chrysogenum was expressed in A. chrysogenum, the active IAT had a molecular mass of 29 kDa. The intronless form of the penDE gene cloned from an A. nidulans cDNA library and overexpressed in Escherichia coli formed the enzymatically active 40-kDa proIAT, which was not self-processed as shown by immunoblotting with antibodies to IAT. This 40-kDa protein remained unprocessed even when treated with A. nidulans crude extract. In contrast, the P. chrysogenum penDE intronless gene cloned from a cDNA library was expressed in E. coli, and the IAT was self-processed efficiently into its alpha (29 kDa) and beta (11 kDa) subunits. It is concluded that P. chrysogenum and A. nidulans differ in their ability to self-process their respective proIAT protein and to maintain the alpha and beta subunits as an undissociated heterodimer, probably because of the amino-acid sequence differences in the proIAT which affect the autocatalytic activity.  相似文献   

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