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1.
【背景】防御假单胞菌(Pseudomonas protegens) H78是分离于油菜根际的一株生防菌,其能合成藤黄绿菌素(pyoluteorin,Plt)等多种广谱抗生素,H78的rsmA/E双突变体中Plt合成被完全抑制。【目的】通过转座子诱变技术,筛选H78ΔrsmA/E双突变体中重新激活Plt合成的下游调控因子。【方法】通过同源重组的方法在pltL基因下游插入红色荧光蛋白(redfluorescentprotein,RFP)基因来指示Plt操纵子表达的激活情况;利用转座子随机插入突变、半随机PCR技术筛选并定位目标基因;通过基因回补等方法进一步验证基因功能。【结果】从约2万株H78ΔrsmA/E的转座子突变体中筛选到一株高产Plt和某种黑色素的菌株,并确定其插入位点为hmgA基因,hmgA基因回补能重新抑制H78ΔrsmA/E的Plt合成。【结论】假单胞菌双突变体H78ΔrsmA/E中hmgA基因对Plt的合成存在强烈抑制作用,是潜在的RsmA/E下游调控基因。本研究为进一步阐明Plt合成的调控机制与网络及通过基因工程提高Plt产量奠定了基础。  相似文献   

2.
【目的】根际铜绿假单胞菌M18能产生藤黄绿菌素(Plt)和吩嗪-1-羧酸(PCA)两种主要的抗生素。其PqsR/PQS群体感应系统由应答调控蛋白PqsR与信号分子PQS组成。前期研究已经表明pqsR负调控Plt生物合成及基因簇表达。本论文旨在研究PQS分子对Plt合成及基因表达的调控作用。【方法】从M18基因组中扩增PQS合成基因pqsA,通过同源重组技术构建假单胞菌M18的pqsA突变菌株M18pqsA。利用lacZ报告基因分析、信号分子添加实验等,研究PQS对Plt合成及基因表达的调控作用。【结果】在KMB培养基中,分别比较野生型菌株M18和突变菌株M18pqsA的Plt产量,突变菌株的Plt产量存在较小幅度的升高,约为野生型菌株的1.53倍。添加PQS对plt表达存在一定程度但不是很显著的负调控作用。【结论】PQS分子对Plt生物合成及基因表达存在部分负调控作用。  相似文献   

3.
【目的】研究根际荧光假单胞菌(Pseudomonas protegens)H78中双组分系统PhoR/B对Pst磷转运系统以及Plt生物合成的调控作用。【方法】通过同源重组的方法敲除pho R和pho B基因;使用lac Z报告基因融合质粒研究PhoR/B系统对Pst磷转运系统表达的调控;在不同磷浓度下测定H78野生型及H78pho BR突变株的生长,并在KMB培养基中测定其Plt产量。【结果】H78野生型中pst S′-′lac Z融合质粒表达的Lac Z酶活是H78pho BR突变株的15倍;在磷饥饿条件下H78的生长是H78pho BR菌株的3倍;在KMB培养基中,H78的Plt产量为H78phoBR菌株的2倍。【结论】PhoR/B系统正调控Pst转运系统的表达;在磷饥饿条件下,PhoR/B促进磷元素的吸收和利用;PhoR/B同时对Plt生物合成存在一定程度的正调控作用。  相似文献   

4.
【目的】假单胞菌M18是一株能同时合成吩嗪-1-羧酸(PCA)和藤黄绿菌素(Plt)两种抗生素的植物根际促生细菌。PsrA为细菌TetR家族转录调控因子。为了研究PsrA对PCA与Plt生物合成的影响,从M18菌株基因组中扩增psrA基因。【方法】通过同源重组技术,构建庆大霉素抗性片段置换psrA的突变菌株M18psrA。利用基因互补、lacZ报告基因融合分析实验,验证PsrA对抗生素合成基因的调控作用。【结果】在PPM和KMB培养基中,分别比较野生型菌株M18和突变菌株M18psrA的PCA与Plt产量,突变菌株M18psrA的PCA产量显著下降;Plt产量显著升高,为野生型菌株的10-15倍。基因互补、lacZ报告基因融合分析,进一步证明了psrA正调控PCA的phz2合成基因簇,负调控Plt的合成基因簇。【结论】PsrA区别性调控抗生素PCA与Plt的生物合成。  相似文献   

5.
【目的】研究Crp家族转录调节因子fnr N突变对土壤杆菌ATCC 31749发酵性能和基因表达的影响。【方法】利用三亲结合法将构建的自杀式质粒p JQ-fnr N-kan导入土壤杆菌ATCC31749中,从而获得fnr N基因突变株(Δfnr N);分析Δfnr N的发酵特性;基于RNA-Seq对产胶期土壤杆菌ATCC 31749野生菌和Δfnr N差异表达基因进行分析。【结果】fnr N的突变使土壤杆菌合成热凝胶能力下降了22.0%,转录组分析发现在Δfnr N中186个基因表达发生显著性变化(|log2(|fold change|)|≥1且q≤0.001),其中65%的基因表达上调。热凝胶合成的关键基因crd ASC的表达受到不同程度的抑制,fnr N的突变使编码σ因子的ecf R和编码生物膜合成调节因子的sin R显著下调;Δfnr N菌中与细胞色素有关基因cyd AB、cy2、fix NOPQ的转录水平下调2-13倍。【结论】fnr N通过调控ecf R和sin R的表达调控热凝胶合成,通过调控fix NOPQ等基因的表达参与氧信号调控,该研究有助于丰富对土壤杆菌氧调控系统的认识。  相似文献   

6.
【背景】卡西霉素(Calcimycin)是由教酒链霉菌NRRL3882产生的吡咯聚醚类抗生素,结构独特且具有广泛的生物活性,但其生物合成调控机制尚不清楚。【目的】研究卡西霉素生物合成基因簇上编码LuxR家族同源蛋白的潜在调控基因calR2的功能。【方法】通过PCR-targeting的方法对卡西霉素基因簇上的calR2基因进行中断,HPLC对突变株及回补菌株的代谢产物进行分析。利用荧光定量RT-PCR分析ΔcalR2突变菌株和野生菌株的基因转录水平差异。【结果】calR2基因中断的突变株不能产生卡西霉素,回补菌株则恢复产生卡西霉素的能力。RT-PCR结果表明卡西霉素生物合成的一些重要骨架基因在ΔcalR2突变株中的转录水平明显降低。【结论】LuxR家族转录调控基因calR2在卡西霉素生物合成过程中起正调控作用。  相似文献   

7.
【目的】斜卧青霉(Penicillium decumbens)作为高效分泌纤维素酶的重要丝状真菌,其纤维素酶的合成与分泌在转录水平上被调控。进一步研究纤维素酶基因表达的转录调控,构建高效高产纤维素酶的工业菌株。【方法】根据斜卧青霉114-2在不同碳源生长条件下基因组表达谱的差异,发现新的转录调控因子BglR(PDE-01706),该蛋白与产黄青霉(Penicillium chrysogenum)Pc20g04780的锌指结构蛋白具有59%同源性。通过基因同源双交换,得到BglR缺失突变株ΔbglR-1,对突变株ΔbglR-1的表型、营养生长、产纤维素酶活、蛋白分泌能力及发酵液pH变化进行研究。【结果】转录调控因子BglR的缺失可导致突变株ΔbglR-1的β-葡萄糖苷酶活力提高40%,并造成其滤纸酶活、内切葡聚糖酶及木聚糖酶活明显降低。【结论】结果表明转录调控因子BglR对于斜卧青霉纤维素酶的调控有重要作用。  相似文献   

8.
【目的】为了进一步鉴定铜绿假单胞菌转录调控因子σ~(38)对2个拷贝吩嗪合成基因簇(phz A1-G1和phz A2-G2)的具体调控方式并推定介导绿脓菌素合成代谢的可能调控机制。【方法】根据铜绿假单胞菌基因组信息,利用同源重组原理构建rpo S基因缺失突变株Δrpo S以及克隆全长rpo S基因作互补分析;再以单一吩嗪基因簇缺失突变株Δphz1和Δphz2为出发菌株,分别构建rpo S缺失突变株Δrpo Sphz1和rpo S插入突变株Δrpo Sphz2,测定并比较野生株及相关突变株的绿脓菌素合成量,初步推定σ~(38)因子对2个不同吩嗪基因簇表达的调控方式。【结果】在GA培养基中,突变株Δrpo S的绿脓菌素合成量比野生株显著增加;互补分析证实,σ~(38)可使突变株Δrpo S的绿脓菌素降低并接近野生株PAO1水平;与对照株Δphz1相比,突变株Δrpo Sphz1的绿脓菌素合成量因σ~(38)因子缺失而显著减少;而与对照株Δphz2相比,突变株Δrpo Sphz2的绿脓菌素合成量因σ~(38)因子缺失显著增加。【结论】转录调控因子σ~(38)对铜绿假单胞菌绿脓菌素的合成代谢的确具一定的负调控作用;结合已报道的研究结果,初步推定:σ~(38)因子通过负调控吩嗪基因簇phz1,正调控吩嗪基因簇phz2的表达实现对绿脓菌素合成代谢的调控。  相似文献   

9.
经生物信息学分析, 在假单胞菌M18(Pseudomonas sp. M18)菌株的藤黄绿菌素(pyoluteorin, Plt)生物合成基因簇上游定位了一个属于LysR家族的调控因子编码基因pltR. 运用同源重组技术, 构建了pltR失活的突变菌株M18TRG, 在King’s B培养基中, 与野生型菌株相比, Plt合成能力下降了70%, 而吩嗪-1-羧酸(phenazine-1-carboxylic acid, PCA)的合成能力不受影响. 反式互补pltR的突变株能回复Plt的合成能力达到野生型水平. 在菌株M18中过表达pltR, Plt产量提高13倍, PCA产量没有改变. 这些结果表明pltR基因表达产物是Plt生物合成的特异性正调控因子. 在野生型菌株M18和不产Plt的突变株M18T中, pltR基因表达量无显著差异, 表明pltR基因的表达不受Plt调控. 与野生株相比, 突变株M18TRG中的转录融合plt-lacZ表达量显著降低, 表明PltR对Plt的正调控作用主要发生在转录水平上. 对pltR基因在gacA突变株M18G和rsmA突变株M18R中的表达量的进一步研究发现, PltR参与了gacA基因对Plt的合成的正调控, 但不参与rsmA基因对Plt合成的负调控.  相似文献   

10.
【背景】卡西霉素(calcimycin)是重要的离子载体抗生素,其生物合成基因簇已从教酒链霉菌NRRL3882的基因组DNA中成功克隆,但基因簇内的部分生物合成基因及调控基因的功能有待研究。【目的】研究卡西霉素产生菌教酒链霉菌NRRL3882中编码TylR家族同源转录调控蛋白的calR1基因的功能。【方法】通过PCR-targeting的方法,构建calR1基因敲除突变株及回补菌株,对突变菌株及回补菌株进行发酵,通过HPLC分析其代谢产物。利用荧光定量PCR检测ΔcalR1突变菌株和野生菌株的生物合成基因转录水平。【结果】calR1基因敲除突变株丧失产生卡西霉素的能力,但仍有中间产物噻唑霉素的积累,回补菌株中卡西霉素的产量有一定程度的恢复。RT-qPCR结果表明,卡西霉素合成相关的一些重要基因calC、calG、calU3等基因的表达量明显改变。【结论】TylR家族转录调控基因calR1是卡西霉素生物合成的调控基因。  相似文献   

11.
Fluorescent Pseudomonas strains producing the antimicrobial secondary metabolite 2,4-diacetylphloroglucinol (Phl) play a prominent role in the biocontrol of plant diseases. A subset of Phl-producing fluorescent Pseudomonas strains, which can additionally synthesize the antimicrobial compound pyoluteorin (Plt), appears to cluster separately from other fluorescent Pseudomonas spp. based on 16S rRNA gene analysis and shares at most 98.4% 16S rRNA gene sequence identity with any other Pseudomonas species. In this study, a polyphasic approach based on molecular and phenotypic methods was used to clarify the taxonomy of representative Phl+ Plt+ strains isolated from tobacco, cotton or wheat on different continents. Phl+ Plt+ strains clustered separately from their nearest phylogenetic neighbors (i.e. species from the ‘P. syringae’, ‘P. fluorescens’ and ‘P. chlororaphis’ species complexes) based on rpoB, rpoD or gyrB phylogenies. DNA-DNA hybridization experiments clarified that Phl+ Plt+ strains formed a tight genomospecies that was distinct from P. syringae, P. fluorescens, or P. chlororaphis type strains. Within Phl+ strains, the Phl+ Plt+ strains were differentiated from other biocontrol fluorescent Pseudomonas strains that produced Phl but not Plt, based on phenotypic and molecular data. Discriminative phenotypic characters were also identified by numerical taxonomic analysis and siderotyping. Altogether, this polyphasic approach supported the conclusion that Phl+ Plt+ fluorescent Pseudomonas strains belonged to a novel species for which the name Pseudomonas protegens is proposed, with CHA0T (=CFBP 6595T, =DSM 19095T) as the type strain.  相似文献   

12.
假单胞菌M18是一株能同时合成藤黄绿脓菌素(Plt)和吩嗪-1-羧酸(PCA)两种抗生物质的植物根际促生细菌。运用PCR方法, 从M18基因组中扩增得到pqsR基因, 该基因编码LysR家族调控蛋白PqsR。通过同源重组技术, 构建假单胞菌M18的pqsR突变菌株M18PRG。比较野生型菌株M18和突变菌株M18PRG在KMB培养基的Plt产量, 发现M18PRG 菌株合成Plt的量约为野生型M18菌株的3~4倍。在pqsR突变株的反式互补实验中, Plt的产量回复到野生型水平。pltA′-′lacZ翻译融合的测定结果进一步证明PqsR对Plt生物合成基因簇具有负调控作用。分析M18野生型及其pqsR突变株的生长曲线, 发现PqsR对细菌的生长具有抑制作用。另外, 我们还发现pqsR基因调控红色色素的产生。上述结果表明, 在假单胞菌M18中, PqsR作为全局性调控因子参与了细胞内多种生理活动的调控。  相似文献   

13.
Myelodysplastic syndromes (MDS) are clonal stem cell diseases that can result in cytopenias, dysplasia in one or more cell lineages, infective hematopoiesis, and increase the risk of progression to acute myeloid leukemia (AML). MDSs are characterized by several recurrent cytogenetic defects, which can affect diagnosis, prognosis, and treatment. Some of that chromosomal alterations are associated with very poor prognosis. Conventional cytogenetics cannot accurately define the rearranged karyotype. Instead, molecular cytogenetics analyses can provide important diagnostic and prognostic information for patients affected by MDS, allowing the characterization of the whole mutational spectrum and, mainly, novel chromosomal lesions.In this paper, we report a MDS case with a novel chromosomal translocation [t(17;22)(q12;q22)], described for the first time here. Following Giemsa-banding karyotyping, fluorescent in situ hybridization analyses, by using chromosome-specific probes, displayed the breakpoint regions at chromosomes 17 and 22, within which intra and inter-chromosomal segmental duplications (SD) are present. Because of the occurrence of SDs in breakpoint region, it was not possible to finely define the genomic regions where breaks fell. Further investigations could be required to better understand the molecular basis of the novel translocation t(17;22)(q12;q12) acting in MDS context and to explain if SDs could contribute to the pathogenesis of MDS.  相似文献   

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Curcumin is the yellow pigment of turmeric that interacts irreversibly forming an adduct with thioredoxin reductase (TrxR), an enzyme responsible for redox control of cell and defence against oxidative stress. Docking at both the active sites of TrxR was performed to compare the potency of three naturally occurring curcuminoids, namely curcumin, demethoxy curcumin and bis-demethoxy curcumin. Results show that active sites of TrxR occur at the junction of E and F chains. Volume and area of both cavities is predicted. It has been concluded by distance mapping of the most active conformations that Se atom of catalytic residue SeCYS498, is at a distance of 3.56 from C13 of demethoxy curcumin at the E chain active site, whereas C13 carbon atom forms adduct with Se atom of SeCys 498. We report that at least one methoxy group in curcuminoids is necessary for interation with catalytic residues of thioredoxin. Pharmacophore of both active sites of the TrxR receptor for curcumin and demethoxy curcumin molecules has been drawn and proposed for design and synthesis of most probable potent antiproliferative synthetic drugs.  相似文献   

16.
正Dear Editor,In December 2019, a novel human coronavirus caused an epidemic of severe pneumonia(Coronavirus Disease 2019,COVID-19) in Wuhan, Hubei, China(Wu et al. 2020; Zhu et al. 2020). So far, this virus has spread to all areas of China and even to other countries. The epidemic has caused 67,102 confirmed infections with 1526 fatal cases  相似文献   

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The young pistils in the melanthioid tribes, Hewardieae, Petrosavieae and Tricyrteae, are uniformly tricarpellate and syncarpous. They lack raphide idioblasts. All are multiovulate, with bitegmic ovules. The Petrosavieae are marked by the presence of septal glands and incomplete syncarpy. Tepals and stamens adhere to the ovary in the Hewardieae and the Petrosavieae but not in the Tricyrteae. Two vascular bundles occur in the stamens of the Hewartlieae and Tricyrtis latifolia. Ventral bundles in the upper part of the ovary of the Hewardieae are continuous with compound septal bundles and placental bundles in the lower part. Putative ventral bundles occur in the alternate position in the Tricyrteae and putative placental bundles in the opposite. position in the Petrosavieae. The dichtomously branched stigma in each carpel of the Tricyrteae is supplied by a bifurcated dorsal bundle.  相似文献   

20.
Some closely related members of the monocotyledonous familiesAlismataceae, Liliaceae, Juncaceae, Cyperaceae, Poaceae andAraceae with variable modes of pollination (insect- and wind-pollination) were studied in relation to the ultrastructure of pollenkitt and exine (amount, consistency and distribution of pollenkitt on the surface of pollen grains). The character syndromes of pollen cementing in entomophilous, anemophilous and intermediate (ambophilous or amphiphilous) monocotyledons are the same in principal as in dicotyledons. Comparing present with former results one can summarize: 1) The pollenkitt is always produced in the same manner by the anther tapetum in all angiosperm sub-classes. 2) The variable stickiness of entomophilous and anemophilous pollen always depends on the particular distribution and consistency of the pollenkitt, but not its amount on the pollen surface. 3) The mostly dry and powdery pollen of anemophilous plants always contains a variable amount of inactive pollenkitt in its exine cavities. 4) A step-by step change of the pollen cementing syndrome can be observed from entomophily towards anemophily. 5) From the omnipresence of pollenkitt in all wind-pollinated angiosperms studied one can conclude that the ancestors of anemophilous angiosperms probably have been zoophilous (i.e. entomophilous) throughout.
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