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1.
【目的】研究香菇(Lentinula edodes) HMG-box转录因子LELCRP1 (Lentinula edodes lignocellulase genes regulation protein 1)在木质纤维素降解相关酶基因表达中的功能与作用。【方法】通过double-joint及同源重组方法构建lelcrp1基因RNAi载体,采用根癌农杆菌介导转化的方法转入香菇异核菌株W1菌丝中,筛选得到RNAi转化子,通过Southern杂交检测插入片段在菌株W1基因组中的拷贝数量。采用荧光定量PCR检测RNAi转化子木质纤维素降解酶基因表达水平变化,并在含有3.5μg/mL潮霉素的MYG平板上测定RNAi转化子的菌丝生长速度。【结果】获得了4个lelcrp1基因表达水平与出发菌株W1相比显著下调6–7倍的RNAi转化子。Southern杂交结果显示,lelcrp1基因RNAi片段已成功整合至香菇菌株W1基因组内,并以单拷贝形式存在。对其中2个RNAi转化子的26个木质纤维素降解酶基因表达水平进行分析,发现其中9个纤维素酶基因、1个半纤维素酶基因、2个辅助酶AA9基因和1个锰过氧化物酶基因的表达水平均表现出明显的下调。平板生长试验表明,RNAi转化子菌丝生长速度均显著慢于出发菌株W1。【结论】通过RNAi技术成功抑制了香菇异核菌株中lelcrp1基因表达水平,并导致部分纤维素及木质素酶基因表达水平相应下调,首次发现HMG-box结构域的转录因子能调控木质纤维素降解相关酶基因表达。  相似文献   

2.
【背景】糖苷水解酶(glycoside hydrolase, GH) 3基因家族成员主要编码胞外β-葡萄糖苷酶,是纤维素降解中的关键酶。【目的】鉴定棘孢木霉GH3基因家族成员,探究其在纤维素降解过程中转录水平的表达模式。【方法】通过生物信息学方法对棘孢木霉GH3基因家族成员进行鉴定,对其基因结构、系统进化、蛋白理化性质、亚细胞定位及蛋白质三级结构进行分析,并采用荧光定量PCR技术对纤维素诱导下转录水平的表达模式进行综合分析。【结果】棘孢木霉基因组共鉴定到16个GH3基因家族成员,含有1-8个外显子,编码蛋白质长度为533-934个氨基酸,分子量为57.82-101.91 kDa,大多数为胞外蛋白。系统发育表明,该基因家族成员可分为4组,与里氏木霉的相似性较高。基因表达模式分析表明,纤维素诱导下,16个GH3基因均有表达,但不同成员在转录水平的表达存在差异。其中,1个基因呈组成型表达,2个基因表达下调,13个基因表达上调。棘孢木霉的胞外β-葡萄糖苷酶活力在纤维素诱导下明显提升,与GH3基因家族成员在转录水平的整体表达模式相一致。【结论】棘孢木霉基因组共包含16个GH3基因家族成员,而且多...  相似文献   

3.
嗜热厌氧菌Caldicellulosiruptor bescii具有强大的木质纤维素降解能力,能以多种模式植物细胞壁多糖如微晶纤维素Avicel和木聚糖,甚至未经预处理的木质纤维素如柳枝稷作为唯一碳源快速生长,该菌还具有少见的厌氧降解木质素的能力。对基因组注释发现,该菌所编码的蛋白大多为多结构域双功能酶,即在多肽链的N端和C端分别是不同家族的糖苷水解酶,间隔以2-3个碳水化合物结合结构域。该菌降解纤维素相关的酶基因多集中于一个植物细胞壁多糖降解利用的基因簇,例如纤维素酶/木聚糖酶、纤维素酶/甘露聚糖酶和纤维素酶/木葡聚糖酶等。C.bescii的木聚糖酶主要属于GH10家族,该家族的酶底物特异性较为宽泛,氨基酸序列的同源性在18.7%-59.5%间。Caldicellulosiruptor属细菌进化出了一系列的机制使得糖苷水解酶和底物、细菌和木质纤维素能更好的吸附在一起,从而有利于木质纤维素的酶解。C.bescii有12个含SLH结构域的蛋白,以及新发现的黏附蛋白Tāpirin,可能参与了木质纤维素的吸附与利用。综述了近年来对C.bescii降解植物细胞壁的糖苷水解酶的基因资源挖掘方面和降解分子机制方面的研究进展,对高效、多功能高效木质纤维素降解酶的设计和优化具有积极的意义。  相似文献   

4.
POXC是糙皮侧耳合成最多的一种漆酶。应用启动子替代技术,用构巢曲霉的甘油醛-3-磷酸脱氢酶基因(gpd)启动子替代POXC基因的启动子,构建了超量表达POXC糙皮侧耳转化子。转化子中POXC基因表达量比出发菌株提高了0.72–3倍。在PDA平板培养、PD摇瓶培养和棉籽壳试管培养条件下,转化子漆酶活力显著提高,比出发菌株提高了1.5倍以上。用棉籽壳栽培,转化子菇产量比出发菌株提高了16.2%,培养料中木质素含量比出发菌株减少21%。结果表明,应用高效启动子替代能够显著提高糙皮侧耳漆酶基因的表达量、漆酶活力及其木质纤维素降解能力。  相似文献   

5.
放线菌是一种高GC含量的革兰氏阳性细菌,在陆生、高温的木质纤维素降解生境中占据十分重要的地位.降解木质纤维素菌株的功能基因组分析发现降解纤维素的酶种类和数目相对较多,而降解半纤维素以及果胶成分的酶相对真菌较少.其中,降解纤维素的酶类主要以GH6家族外切酶为主,部分含有GH9和GH48家族的纤维素酶,基因组中还含有AA10家族的多糖裂解氧化酶,因此放线菌可通过持续性水解与氧化双重机制高效降解结晶纤维素.放线菌可通过双精氨酸转运系统快速将已正确折叠的降解酶类分泌至胞外,这些酶分子常具有多个功能结构域,具有耐高温、耐碱性以及高活力等特征.放线菌在木质纤维素降解及次级代谢产物等方面的特点与优势使得其具有巨大的工业应用前景.  相似文献   

6.
香菇单核体菌株在传统PDA培养基上生长时具有生长缓慢、容易老化等问题,本研究以1株香菇双核体Y0040以及相对应的2株单核体(Y0040-1和Y0040-3)为研究材料,通过添加不同比例木屑粉的PDA培养基筛选适合香菇单核体生长的配比,结果表明添加木屑能够显著促进单核体菌丝的生长,最适添加比例为2%。将Y0040-1和Y0040-3在PDA和2%木屑PDA上培养后进行转录组表达谱差异分析,结果显示Y0040-1和Y0040-3两个单核菌株在木屑-PDA培养基上生长有1066个共有的差异表达基因,进一步对其注释发现,这些差异基因在细胞结构合成以及碳水化合物代谢等途径上得到富集。同时1066个共有的差异基因中有113个共上调,富集于氧化还原反应,267个共下调主要富集于蛋白质折叠和去折叠等途径。进一步对1066个差异基因进行CAZYmes家族和木质纤维素酶分析,发现有36个家族基因差异表达,包括了4个多铜氧化酶、6个β-葡萄糖苷酶和2个内β-1,4-葡聚糖酶,其中多铜氧化酶基因表达在木屑培养基上都显著上升。木质纤维素降解酶基于氧化还原反应等将木质素降解为菌丝体生长发育所必需的小分子单糖,可...  相似文献   

7.
李帆  陈利丁  艾柳英  刘云超  闫苗  孙淑静 《菌物学报》2018,37(12):1586-1597
为了探讨刺芹侧耳子实体生长发育时期的基因表达变化,本文利用高通量测序技术对刺芹侧耳不同发育时期(菌丝期、原基期、子实体时期)进行RNA-Seq分析,在转录水平上解析差异表达基因在刺芹侧耳生长发育过程中的作用和功能。KEGG功能富集显示,菌丝期差异表达基因主要富集在碳代谢和氨基酸代谢中,其中三羧酸循环中编码柠檬酸合酶、乌头酸水合酶、异柠檬酸脱氢酶、琥珀酰辅酶A合成酶、琥珀酸脱氢酶、苹果酸脱氢酶的基因表达量均上调,说明碳代谢和氨基酸代谢是菌丝时期的主要能量来源;原基期上调的差异表达基因主要富集在脂肪酸代谢,其中RT-PCR定量结果显示原基期编码脂肪酸合酶的基因和编码脂酰辅酶A合成酶的基因下调,编码超氧化物酶的基因和编码过氧化氢酶的基因上调,表明脂肪酸代谢和抗氧化酶对刺芹侧耳原基期维持机体的稳定和生物应激方面起着重要作用。子实体时期上调的差异表达基因主要富集在剪接体、类固醇的生物合成以及AMPK信号通路中,说明环境因子对子实体时期有一定的影响。  相似文献   

8.
为了探究曲酸增加子实体产量的机制,首先考察了搔菌后外源添加曲酸对不同菌丝培养时间出菇的影响。研究发现当菌丝培养时间过短或者过长添加曲酸都得不到很好的增产效果,菌丝培养时间在60-80d之间增产效率最高,并且后熟期60d的增产效率大于80d的增产效率。进一步研究发现添加曲酸可以提高菌丝利用基质中木质纤维素的利用率。更深入地研究发现,基质中的漆酶和纤维素酶活性在斑玉蕈的不同发育时期受到曲酸调控。漆酶活性在最初的菌丝恢复期和转色期酶活性低于对照组,但是在原基期、钉头期和子实体期酶活性显著地高于对照组;纤维素酶活性在整个发育周期中曲酸组都高于对照组,在子实体发育后期酶活性被提高3.16倍。最后,从分子水平上分析了漆酶基因和纤维素酶基因的表达量,研究显示添加曲酸后漆酶基因和纤维素酶基因在不同程度上被上调,这个结果与酶活的结果相一致。这些结果说明外源添加曲酸通过提高生殖生长阶段的菌丝利用培养基质中的漆酶和纤维素酶活性,进而提高菌丝利用木质纤维素,为斑玉蕈子实体生长发育提供更多的能源,实现增加子实体产量的目的。  相似文献   

9.
【目的】了解牦牛瘤胃微生物木聚糖酶多样性及其降解特征,为木聚糖降解提供新的基因资源。【方法】根据对已构建的瘤胃微生物元基因组细菌人工染色体(BAC)克隆文库高通量测序结果的注释,筛选其中编码木聚糖酶的基因并进行多样性分析;对其中一个木聚糖酶基因及其连锁的木糖苷酶基因进行克隆表达和酶学性质表征,分析其协同作用。【结果】共筛选到14个木聚糖酶基因,均编码GH10家族木聚糖酶,其氨基酸序列之间的相似性为20.5%-91.3%;其中7个木聚糖酶基因所在的不同的DNA片段(contig)上存在木糖苷酶基因,编码的木糖苷酶属于GH43或GH3糖苷水解酶家族。将其中一对连锁的木聚糖酶(Xyn32)和木糖苷酶基因(Xyl33)分别克隆、表达和纯化。纯化后的木聚糖酶比活为1.98 IU/mg,但不具有阿魏酸酯酶活性;木糖苷酶比活为0.07 U/mg,且具有α-阿拉伯呋喃糖苷酶活性。体外实验证明,木糖苷酶Xyl33对与之连锁的木聚糖酶Xyn32的木聚糖降解具有协同作用。  相似文献   

10.
白蚁及共生微生物木质纤维素水解酶的种类   总被引:2,自引:2,他引:0  
相辉  周志华 《昆虫知识》2009,46(1):32-40
白蚁是热带生态系统重要的木质纤维素降解者。白蚁种类丰富,可分成高等白蚁和低等白蚁,食性也具有各自特点。白蚁自身可以产生纤维素酶,主要是GHF9的内切葡聚糖酶(EG),也有β-葡萄糖苷酶(GB)。低等白蚁共生的原虫中已发现丰富的纤维素酶基因,属于GHF5,7和45。同时还有其他相关功能基因,如木聚糖酶和果胶类物质水解酶。高等白蚁肠道中没有共生原虫。高等培菌白蚁可以利用共生蚁巢伞属真菌促进木质纤维素降解,真菌可以产生纤维素酶,果胶质水解酶类、木聚糖酶,同时还产生可能与木质素分解相关的一种漆酶,但是从分子水平,关于共生真菌纤维素水解酶的研究还较少。白蚁肠道已分离出许多具有木质纤维素降解能力的菌株,最近的研究也发现了大量细菌纤维素酶基因。白蚁-共生系统丰富的木质纤维素水解酶类为发展生物方法开发纤维素乙醇这一思路提供有价值的资源。  相似文献   

11.
Soda lakes are one of the most stable naturally occurring alkaline and saline environments, which harbor abundant microorganisms with diverse functions. In this study, culture-independent molecular methods were used to explore the genetic diversity of glycoside hydrolase (GH) family 10 and GH11 xylanases in Lake Dabusu, a soda lake with a pH value of 10.2 and salinity of 10.1%. A total of 671 xylanase gene fragments were obtained, representing 78 distinct GH10 and 28 GH11 gene fragments respectively, with most of them having low homology with known sequences. Phylogenetic analysis revealed that the GH10 xylanase sequences mainly belonged to Bacteroidetes, Proteobacteria, Actinobacteria, Firmicutes and Verrucomicrobia, while the GH11 sequences mainly consisted of Actinobacteria, Firmicutes and Fungi. A full-length GH10 xylanase gene (xynAS10-66) was directly cloned and expressed in Escherichia coli, and the recombinant enzymes showed high activity at alkaline pH. These results suggest that xylanase gene diversity within Lake Dabusu is high and that most of the identified genes might be novel, indicating great potential for applications in industry and agriculture.  相似文献   

12.
13.
G Wang  K Meng  H Luo  Y Wang  H Huang  P Shi  P Yang  Z Zhang  B Yao 《PloS one》2012,7(8):e43480

Background

Xylan is one of the most abundant biopolymers on Earth. Its degradation is mediated primarily by microbial xylanase in nature. To explore the diversity and distribution patterns of xylanase genes in soils, samples of five soil types with different physicochemical characters were analyzed.

Methodology/Principal Findings

Partial xylanase genes of glycoside hydrolase (GH) family 10 were recovered following direct DNA extraction from soil, PCR amplification and cloning. Combined with our previous study, a total of 1084 gene fragments were obtained, representing 366 OTUs. More than half of the OTUs were novel (identities of <65% with known xylanases) and had no close relatives based on phylogenetic analyses. Xylanase genes from all the soil environments were mainly distributed in Bacteroidetes, Proteobacteria, Acidobacteria, Firmicutes, Actinobacteria, Dictyoglomi and some fungi. Although identical sequences were found in several sites, habitat-specific patterns appeared to be important, and geochemical factors such as pH and oxygen content significantly influenced the compositions of xylan-degrading microbial communities.

Conclusion/Significance

These results provide insight into the GH 10 xylanases in various soil environments and reveal that xylan-degrading microbial communities are environment specific with diverse and abundant populations.  相似文献   

14.
15.
王伟科  宋吉玲  闫静  陆娜  袁卫东  周祖法 《菌物学报》2020,39(10):1874-1885
通过对桑树桑黄Sanghuangporus sanghuang菌丝体和子实体2个不同生长阶段的转录组进行分析,为研究桑黄子实体生长发育相关机制奠定基础。采用Illumina测序技术,对桑树桑黄菌株S23菌丝体和子实体2个不同生长发育阶段进行了全转录组测序。将转录组测序reads比对到参考序列上,菌丝体测序样本的reads比对率为82.89%;子实体测序样本的reads比对率为83%。基因差异表达分析显示,与菌丝体相比,子实体中显著上调表达基因为2 898个,显著下调表达基因为1 965个。经过Blast nr比对发现,桑黄菌在子实体阶段表达量上升的基因主要与各种氧化酶活性、疏水蛋白等相关;表达量下降的基因主要与糖类、氨基酸结合、运输等相关。基因本体(gene ontology,GO)富集分析表明,菌丝体及子实体两个阶段与跨膜转运相关的差异表达基因富集明显。代谢通路(pathway)富集分析表明,类固醇生物合成、精氨酸生物合成、丝裂原活化蛋白激酶(mitogen-activated protein kinase,MAPK)信号通路等差异基因富集明显。  相似文献   

16.
Wang G  Luo H  Meng K  Wang Y  Huang H  Shi P  Pan X  Yang P  Diao Q  Zhang H  Yao B 《PloS one》2011,6(2):e16731

Background

The rumen harbors a complex microbial ecosystem for efficient hydrolysis of plant polysaccharides which are the main constituent of the diet. Xylanase is crucial for hemicellulose hydrolysis and plays an important role in the plant cell wall degradation. Xylanases of ruminal strains were widely studied, but few studies have focused on their diversity in rumen microenvironment.

Methodology/Principal Findings

We explored the genetic diversity of xylanases belonging to two major glycosyl hydrolase families (GH 10 and 11) in goat rumen contents by analyzing the amplicons generated with two degenerate primer sets. Fifty-two distinct GH 10 and 35 GH 11 xylanase gene fragments (similarity <95%) were retrieved, and most had low identities with known sequences. Based on phylogenetic analysis, all GH 10 xylanase sequences fell into seven clusters, and 88.5% of them were related to xylanases from Bacteroidetes. Five clusters of GH 11 xylanase sequences were identified. Of these, 85.7% were related to xylanases from Firmicutes, and 14.3% were related to those of rumen fungi. Two full-length xylanase genes (one for each family) were directly cloned and expressed in Escherichia coli. Both the recombinant enzymes showed substantial xylanase activity, and were purified and characterized. Combined with the results of sheep rumen, Bacteroidetes and Firmicutes are the two major phyla of xylan-degrading microorganisms in rumen, which is distinct from the representatives of other environments such as soil and termite hindgut, suggesting that xylan-degrading microorganisms are environment specific.

Conclusion/Significance

The numerous new xylanase genes suggested the functional diversity of xylanase in the rumen microenvironment which may have great potential applications in industry and agriculture. The phylogenetic diversity and different distributions of xylanase genes will help us understand their roles in plant cell wall degradation in the rumen microenvironment.  相似文献   

17.
向虹  阳小胡  艾亮霞  潘燕平  胡勇 《遗传》2020,(2):172-182,I0002,I0003
利用生物信息学方法分析脱发相关差异表达基因,有望帮助了解脱发发生发展的分子机制。本研究从NCBI的子数据库GEO中选择基因表达谱GSE45512和GSE45513数据集,利用R语言limma工具包,筛选出两个物种斑秃样本与正常样本的共同显著差异表达基因。对这部分基因进行功能注释和蛋白互作网络分析,同时对全部差异表达基因进行基因集富集分析。结果发现,人头皮斑秃样本共筛选出225个差异表达基因;C3H/HeJ小鼠自发斑秃皮肤样本共筛选出337个差异表达基因;两个物种的共同显著差异表达基因有23个。GO功能富集分析和蛋白互作网络分析显示,这部分差异基因显著富集于免疫相关功能,并且彼此间存在蛋白互作关系。基因集富集分析显示两个物种的差异基因都能显著富集到趋化因子信号通路、细胞因子受体相互作用、金葡菌感染及抗原加工与呈递通路;而且人的下调差异基因不仅映射到了人类表型数据库的脱发表型,也映射到皮肤附属物病理相关表型。综上所述,本研究通过生物信息方法分析脱发皮肤组织与正常皮肤组织的差异表达基因,最终筛选出23个在人和小鼠中共同存在的显著差异表达基因;此外,分析发现脱发与免疫过程及皮肤附属物病变密切相关,这些结果为脱发的诊断和治疗提供了新思路。  相似文献   

18.
Molecular detection and diversity of xylanase genes in alpine tundra soil   总被引:2,自引:0,他引:2  
Xylan is a major polysaccharide in plant cell walls, and its degradation is mainly conducted by microbial xylanases in nature. To explore the xylanase diversity in the environment, two sets of degenerate primers were designed based on the microbial xylanase sequences in Pfam database of glycosyl hydrolase (GH) family 10 and 11 and were used to amplify objective gene fragments directly from the alpine tundra soil DNA of the Tianshan Mountains, China. Ninety-six distinct GH 10 and 31 GH 11 xylanase gene fragments were retrieved, and most of them have low identities with known sequences in GenBank. Based on phylogenetic analysis, all of the GH 10 xylanase sequences fell into six clusters and were related to xylanases from Actinobacteria, Proteobacteria, Verrucomicrobia, Bacteroidetes, Firmicutes, and Acidobacteria. Three clusters of GH 11 xylanase sequences were established, and two of them were related with enzymes from fungi. These results indicated the diversity of xylanase genes in this cold environment. Four xylanolytic strains were isolated from the soil, and GH 10 xylanase gene fragments were cloned using the same primers. A full-length gene was obtained and expressed in Escherichia coli, and the recombinant enzyme showed some cold-related characteristics. Our study provides an efficient molecular approach to study xylanase in complex environments and casts an insight into the diversity and distribution of xylanases in a cold environment, which is very meaningful to understand their roles in xylan degradation in nature.  相似文献   

19.
The endo-1,4-β-xylanase gene xyn11a from Fusarium oxysporum, member of the fungal glycosyl hydrolase (GH) family 11, was cloned and expressed in Pichia pastoris. The mature xylanase gene, which generates after the excision of one intron and the secreting signal peptide, was placed under the control of an alcohol oxidase promoter (AOX1) in the plasmid pPICZαC. The final construction was integrated into the genome of the methylotrophic yeast P. pastoris X33 and the ability to produce xylanase activity was evaluated in flask cultures. Recombinant P. pastoris efficiently secreted xylanase into the medium and produced high level of enzymatic activity (110 U/ml) after 216 hours of growth, under methanol induction. To achieve higher enzyme production, the influence of initial pH, methanol concentration, agitation and flask design was evaluated. Under optimum culture conditions, production of the recombinant xylanase increased by 50%, reaching a final yield of 170 U/ml, underpinning aeration as the most important factor in improving enzyme production.  相似文献   

20.
A xylanase gene (thxyn11A) from the Thermobifida halotolerans strain YIM 90462(T) was cloned and expressed in Escherichia coli. The open reading frame (ORF) of thxyn11A has 1,008 bp encoding a mature xylanase with a high degree of similarity (80 %) to the xylanase from Nocardiopsis dassonvillei subsp. dassonvillei DSM 43111. This enzyme (Thxyn11A) also possesses a glycosyl hydrolases family 11 (GH11) domain and a high isoelectric point (pI = 9.1). However, Thxyn11A varies from most GH11 xylanases, due to its large molecular mass (34 kDa). Recombinant Thxyn11A demonstrated a strong pH and temperature tolerance with a maximum activity at pH 9.0 and 70 °C. Xylotriose, the end-product of xylan hydrolysis by Thxyn11A, serves as a catalyst for hemicellulose pretreatment in industrial applications and can also function as a food source or supplement for enterobacteria. Due to its attractive biochemical properties, Thxyn11A may have potential value in many commercial applications.  相似文献   

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