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1.
【背景】粮食在生长和收储期极易受到病原真菌或产毒真菌的污染,造成严重的损失。众多实践证明木霉属(Trichoderma)可以有效防治植物病原真菌。【目的】鉴定和筛选能有效抑制粮食常见危害真菌的木霉生防菌株,开发生防菌剂,保障粮食生产安全。【方法】从粮食上分离筛选出35株木霉,通过多基因系统发育分析和形态学观察方法进行菌种鉴定,利用平板对峙试验筛选出对粮食常见危害真菌有抑制作用的菌株。【结果】35株木霉分属于8个种,分别为非洲哈茨木霉(Trichodermaafroharzianum)、类棘孢木霉(Trichodermaasperelloides)、 Trichoderma amoenum、近深绿木霉(Trichoderma paratroviride)、Trichoderma obovatum、长枝木霉(Trichoderma longibrachiatum)、东方木霉(Trichodermaorientale)和深绿木霉(Trichodermaatroviride)。对峙试验结果表明,这8种木霉对于粮食上分离到的10种危害真菌均具有较好的抑制效果。非洲哈茨木霉(T.afroharzi...  相似文献   

2.
为探明安国药用植物根区土壤木霉Trichoderma spp.群落组成和物种分布,2017年7月在河北省安国市中药材种植基地选取麦冬Ophiopogon japonicus、半枝莲Scutellaria barbata和亚麻Linum usitatissimum等26种药用植物,采集根区0~30 cm土层土壤样品,采用形态特征结合r DNA ITS序列分析方法对木霉种类进行分类鉴定,探讨木霉属真菌群落组成、物种多样性以及土壤因子的生态功能。共分离鉴定出10种木霉,包括绿色木霉Trichoderma viride、深绿木霉Trichoderma atroviride、哈茨木霉Trichoderma harzianum、短密木霉Trichoderma brevicompactum、长枝木霉Trichoderma longibrachiatum、突里巴木霉Trichoderma turrialbense、贵州木霉Trichoderma guizhouense、猬木霉Trichoderma erinaceus、康宁木霉Trichoderma koningii和黄绿木霉Trichoderma aureoviride,其中优势种为绿色木霉、深绿木霉和哈茨木霉,分离频率分别为38%、18%和17%。金银花Lonicera japonica根区土壤木霉物种分离频率最高(15%),分离到绿色木霉、深绿木霉、哈茨木霉、贵州木霉和康宁木霉,其香农维纳指数最高(1.359),均匀度指数较小(0.845);甘草Glycyrrhiza uralensis分离频率次之(9%),分离到绿色木霉、哈茨木霉、长枝木霉和突里巴木霉,其香农维纳指数为1.330,均匀度指数为0.959;其他植物均分离到绿色木霉或深绿木霉,多样性指数较低,表明不同药用植物根区木霉群落组成差异显著。主成分分析发现,土壤磷酸酶、有机碳和速效氮是影响河北安国样地土壤理化性质的主要变量。深绿木霉与土壤脲酶和酸性磷酸酶显著正相关,哈茨木霉与土壤有机碳显著正相关,与速效磷显著负相关;短密木霉与植物种类和p H显著负相关,长枝木霉与速效氮正相关,表明土壤理化性质和植物对木霉分布有显著影响。方差分解表明木霉多样性主要受植物种类的影响。  相似文献   

3.
作物根围土壤木霉菌物种多样性及其体外拮抗病原菌效应   总被引:1,自引:0,他引:1  
对采自我国西北地区青海、宁夏、甘肃、陕西和新疆农作物根围土壤中的木霉菌进行分离纯化后,采用形态与分子生物学技术进行菌种鉴定,获得14个木霉种属346个菌株。其中哈茨木霉(Trichoderma harzianum)和棘孢木霉(Trichoderma asperellum)为优势菌种,分别占总数的35%和30%;其次为长枝木霉(Trichoderma longibrachiatum)占12%;绿木霉(Trichoderma virens)、深绿木霉(Trichoderma atroviride)、拟康宁木霉(Trichoderma koningiopsis)和平菇木霉(Trichoderma pleurotum)分别占8%,5%,2%和1%;绿色木霉(Trichoderma viride)/钩状木霉(Trichoderma hamatum)和短密木霉(Trichoderma brevicompactum)/矩孢木霉(Trichoderma oblongisporum)分别皆占2%和1%;渐绿木霉(Trichoderma viridescens)、侧耳木霉(Trichoderma pleuroticola)和康宁木霉(Trichoderma koningii)为我国西北地区农作物根围土壤中最小的木霉种群,各仅占0.3%。将纯化的菌株分别与5个靶标病原真菌在马铃薯葡萄糖培养基(PDA)平板上进行拮抗测试,研究结果表明各木霉菌株对病原菌的拮抗效果有明显差异,且其平均拮抗指数均60%。将2株短密木霉(TR1294TR1295)进行液体发酵培养,并用稀释5倍的发酵液配制PDA平板,对靶标病原真菌进行抑菌测试。结果显示,这5个病原真菌在含有TR1294和TR1295发酵液PDA平板上的生长抑制率可达72%,表明TR1294和TR1295在液体发酵过程中能产生抑菌次级代谢物。  相似文献   

4.
辽宁木霉属(Trichoderma)真菌的形态分类研究   总被引:10,自引:0,他引:10  
对采自辽宁省内14个地方的173份土样和植物组织材料进行分离,获得了54株Trichoderma菌株,采用形态学分类方法鉴定出12种木霉菌,分别是拟康氏木霉(Trichoderma pseudokoningii)、长枝木霉(T.longi-brachiatum)、粘绿木霉(T.virens)、卷曲木霉(T.spirale)、顶孢木霉(T.fertile)、粗壮木霉(T.strigosum)、长孢木霉(T.longipile)、钩状木霉(T.hamatum)、绿色木霉(T.viride)、康氏木霉(T.koningii)、深绿木霉(T.atroviri-de)和哈茨木霉(T.harzianum)。其中长孢木霉为中国新记录种,粗壮木霉和卷曲木霉为东北地区首次报道。文中列有辽宁省木霉属真菌的分种检索表,并附有各木霉菌的生境和分布。  相似文献   

5.
【背景】菌核病是北细辛根部主要病害之一,木霉菌作为目前应用最广泛的生物防治真菌,利用木霉菌防治北细辛菌核病是目前研究的热点。【目的】通过稀释分离法对健康北细辛植株根际土壤进行菌株分离,以期筛选出有效拮抗北细辛菌核病的生防木霉菌。【方法】以北细辛菌核病菌为靶标菌,采用平板对峙培养、挥发性与非挥发性物质抑菌的方法对分离得到的木霉菌进行筛选,采用生长速率法对筛选出的木霉菌的发酵液进行抑菌效果测定,并采用硫代巴比妥酸法测定筛选出的木霉对北细辛菌核病菌的丙二醛(Malondialdehyde,MDA)含量、紫外吸收法测定过氧化氢酶(Catalase,CAT)活性、氮蓝四唑法测定超氧化物歧化酶(Superoxide Dismutase,SOD)活性、愈创木酚法测定过氧化物酶(Peroxidase,POD)活性的影响。【结果】从土壤中分离出木霉菌共14株,通过形态学和ITS-RPB2双基因联合构建系统发育树,鉴定其为哈茨木霉(Trichoderma harzianum)、钩状木霉(Trichoderma hamatum)、拟康氏木霉(Trichoderma koningiopsis)、深绿木霉(Tr...  相似文献   

6.
贵州地区木霉菌分离鉴定及对辣椒疫霉的拮抗作用   总被引:3,自引:0,他引:3  
【背景】辣椒疫霉是一种毁灭性的土传病害,当前主要使用化学合成杀菌剂防治,但容易导致环境污染和食品安全等问题。【目的】筛选可拮抗辣椒疫霉的候选菌株,探究分离菌株拮抗辣椒疫霉的生理生化作用机制。【方法】综合应用形态学、核糖体RNA (rRNA)基因非转录区ITS序列相似性方法鉴定分离菌株,通过对峙实验筛选抑菌效果较高的拮抗菌株,基于比色法测定分离菌株发酵液粗提物对辣椒疫霉菌丝脂质过氧化、纤维素酶、β-葡萄糖苷酶(β-GC)和多聚半乳糖醛酸酶(PG)活性的影响。【结果】从腐木和土壤样品中分离得到11株木霉,分属于绿色木霉(Trichodermavirens)、哈茨木霉(Trichoderma harzianum)、钩状木霉(Trichoderma hamatum)和棘孢木霉(Trichoderma asperellum) 4个种。11株木霉对辣椒疫霉均有一定的抑制作用,抑制率达到90%以上的菌株包括:绿色木霉Tv-1(92.68%)、Tv-2 (95.12%),哈茨木霉Thz-2 (92.68%),钩状木霉Tha-1 (90.24%)。以4株高效木霉的发酵液粗提物处理辣椒疫霉菌丝5 d后,因脂质过氧化产生的丙二醛含量显著增加,分别达到1.20、1.48、2.69和3.16 nmol/g,显著高于对照处理的0.77 nmol/g;与对照组相比,β-GC、PG酶活性显著下降,分别降低了12.28%-64.91%、7.2%-15.5%;同时纤维素酶活性呈上升趋势,最显著组为2.647 U/mL,相对于对照组增加了0.831U/mL。【结论】分离得到4株明显抑制辣椒疫霉菌生长的高效木霉菌,主要通过破坏细胞壁结构、降低致病因子酶活力和增强脂质过氧化等方式起拮抗作用,可为辣椒疫病的生物防治提供理论依据和技术支持。  相似文献   

7.
洞庭湖湿地木霉多样性及生防活性   总被引:1,自引:0,他引:1  
【目的】了解湖南省洞庭湖湿地木霉种类及分布,丰富我国的木霉种质资源,为功能菌株筛选应用奠定基础。【方法】利用ITS序列比对分析结合形态学特征对分离到的木霉菌株进行种类鉴定,构建系统发育进化树分析其亲缘关系。通过菌丝生长速率法测定菌株的平板抑菌能力,根据水解带大小检测菌株的水解酶活性,利用灰色关联度分析筛选综合生防效果较好的木霉菌株。【结果】从52个土样和18个水样中分离得到114株木霉菌株,经鉴定分属16个木霉种类:哈茨木霉、绿木霉、刺孢木霉、土星孢木霉、钩状木霉、拟康宁木霉、短密木霉、深绿木霉、猥木霉、毛细木霉(中国新记录种)、长枝木霉、卵孢木霉、侧耳木霉、加纳木霉、厚木霉及一个疑似新种;哈茨木霉为洞庭湖湿地中的优势种,占总菌株数量的19.30%;16种木霉在系统发育树中归于7个进化支:Harzianum Clade、Virens Clade、Longibrachiatum Clade、Lutea Clade、Viride Clade、Hamatum Clade、Unknown Clade。灰色关联度分析表明,菌株TW21990、QT22040和QT22094的灰色关联度较高,分别为0.849 5、0.798 6和0.732 6,综合生防性状较好。【结论】洞庭湖湿地木霉具有种类多样性和分布多样性,发现了一个中国新记录种毛细木霉和一个疑似新种,哈茨木霉TW21990、长枝木霉QT22040和卵孢木霉QT22094是潜在的优良生防菌株。  相似文献   

8.
棘孢木霉菌对钠胁迫的生理响应机制   总被引:1,自引:0,他引:1  
[背景]棘孢木霉菌制剂被广泛应用于生物防治和次生盐渍化土壤的微生物修复,但是关于棘孢木霉在盐渍化胁迫条件下生长的耐盐机理及其富集盐离子的能力尚缺乏深入研究.[目的]揭示一株耐盐棘孢木霉菌(Trichoderma asperellum)CTCCSJ-W-SBW10264(T264)对钠胁迫的生理响应机制及其对钠离子的吸附...  相似文献   

9.
【背景】新疆野苹果病害发生严重,而木霉(Trichoderma spp.)是重要的植物病害生防菌,因此可利用其对新疆野苹果病害进行防治。【目的】分离鉴定新疆野果林木霉菌株,分析其对新疆野苹果2种病原菌的抑菌能力,为新疆野苹果专用木霉菌肥的制备提供菌种资源。【方法】利用平板稀释法对新疆野果林4种草本植物根围木霉菌进行分离,通过形态学与分子生物学方法进行菌种鉴定,平板对峙试验检测其抑菌能力并优化木霉菌株的固态发酵配方。【结果】共分离得到2种木霉菌共42株,分别为34株棘孢木霉(T. asperellum)和8株深绿木霉(T. atroviride);棘孢木霉TasT01对苹果炭疽病菌(Colletotrichum gloeosporioides,Cgl)和苹果斑点落叶病病原菌(Alternaria alternariaf.sp.mali,Aal)的抑菌率分别为58.60%和57.14%;深绿木霉TatT35对Cgl和Aal的抑菌率分别为43.86%和36.90%。进一步显微镜观察发现,TasT01可通过菌丝缠绕的方式抑制2种病原菌的生长。TatT35菌株固态发酵配方为稻壳90%、麦麸10%...  相似文献   

10.
【背景】藜麦作为风靡全球的功能性食品,其种子内生非洲哈茨木霉的研究尚未见报道。【目的】从藜麦种子中筛选出有抑菌活性的内生真菌,分析其抑菌和促生作用。【方法】通过形态学及ITS、tef1和rpb2基因序列等方法对筛选出的内生真菌进行鉴定;采用平板对峙和平板倒扣等方法测定内生真菌的抑菌活性;利用盆栽试验测定内生菌株对藜麦生长的影响。【结果】综合形态学特征和系统发育分析结果,确定菌株LMNS-M9为非洲哈茨木霉(Trichoderma afroharzianum)。30℃、pH 5.0和镁离子适宜菌株LMNS-M9菌丝生长和产孢;葡萄糖、乳糖、蛋白胨、磷酸二氢钾适宜菌株LMNS-M9菌丝生长;葡萄糖、硝酸铵、磷酸氢二钾适宜菌株LMNS-M9产孢。菌株LMNS-M9对Botrytis cinerea、Ascochyta caulina、Fusarium citri、Alternaria alternata和Trichothecium roseum的抑制率分别为12.53%、51.96%、52.38%、59.25%和62.04%,挥发物的抑制率分别为35.86%、61.54%、33.33%、41...  相似文献   

11.
Put the metal to the petal: metal uptake and transport throughout plants   总被引:5,自引:0,他引:5  
Compared to other organisms, plants have expanded families of transporters that are involved in the uptake and efflux of metals. Fortunately, in many cases, the examination of double mutants has been sufficient to overcome the challenge of studying functionally redundant gene families. Plants that lack two heavy-metal-transporting P-type ATPase family members (HMA2 and HMA4) reveal a function for these transporters in Zn translocation from roots to shoots. Likewise, the phenotype of plants that lack two natural resistance associated macrophage protein (NRAMP) homologs (NRAMP3 and NRAMP4) implicate these metal uptake proteins in the mobilization of vacuolar Fe stores during seed germination. Most families of metal transporters are ubiquitous but the Yellow Stripe1-Like (YSL) family is plant specific and YSL family members have been implicated in the transport of metals that are complexed with a plant specific chelator called nicotianamine (NA).  相似文献   

12.
环境重金属污染物的生物有效性   总被引:24,自引:1,他引:23  
刘宗平 《生态学报》2005,25(2):273-278
利用生态系统研究了白银有色金属冶炼矿区周围环境中重金属的分布及生物有效性。结果表明 ,工厂在冶炼过程中已造成 Pb、Cd、Cu、Zn对周围环境不同程度的污染 ,其含量与距工厂的距离呈负相关 ;重金属在各种生物体内均有不同程度的吸收和累积 ,其吸收累积量随重金属和生物种类的不同而有差异 ;土壤的污染 ,使农作物和牧草中 Pb、Cd含量超过动物的最大耐受量和中毒的临界值 ;动物研究发现 ,肾脏、骨骼和肝脏是机体内重金属蓄积的主要器官。因此 ,放牧动物可作为环境重金属污染状况的标识 ,对评价重金属环境污染对当地人群的危害也有重要意义  相似文献   

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YiiP is a representative member of the cation diffusion facilitator (CDF) family, a class of ubiquitous metal transporters that play an essential role in metal homeostasis. Recently, a pair of Zn2+/Cd2+-selective binding sites has been localized to two highly conserved aspartyl residues (Asp157), each in a 2-fold-symmetry-related transmembrane segment 5 (TM5) of a YiiP homodimer. Here we report the functional and structural interactions between Asp157 and yet another highly conserved Asp49 in the TM2. Calorimetric binding analysis indicated that Asp49 and Asp157 contribute to a common Cd2+ binding site in each subunit. Copper phenanthroline oxidation of YiiP(D49C), YiiP(D157C), and YiiP(D49C/D157C) yielded inter- and intra-subunit cross-links among Cys49 and Cys157, consistent with the spatial proximity of two (Asp49-Asp157) sites at the dimer interface. Hg2+ binding to YiiP(D49C) or YiiP(D49C/D157C) also yielded a Cys49-Hg2+-Cys49 biscysteinate complex across the dimer interface, further establishing the interfacial location of a (Asp49-Asp157)2 bimetal binding center. Two bound Cd2+ ions were found transported cooperatively with a sigmoidal dependence on the Cd2+ concentration (n = 1.4). The binding affinity, transport cooperativity, and rate were modestly reduced by either a D49C or D157C mutation, but greatly diminished when all the bidentate aspartate O-ligands in (Asp49-Asp157)2 were replaced by the monodentate cysteine S-ligands. The functional significance of these findings is discussed based on the unique coordination chemistry of aspartyl residues and a model for the translocation pathway of metal ions at the YiiP dimer interface.  相似文献   

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Particles of copper, bronze and zinc were embedded into a polymer using cold-spray technology to produce loading density gradients of metal particles. The gradients were used to identify the species with the highest tolerance to the release of copper and zinc ions. The gradients also established the minimum effective release rates (MERRs) of copper and zinc ions needed to prevent the recruitment of fouling under field conditions. Watersipora sp. and Simplaria pseudomilitaris had the highest tolerances to the release of metal ions. Copper and bronze gradient tubes were similar in their MERRs of copper ions against Watersipora sp. (0.058?g?m?2?h?1 and 0.054?g?m?2?h?1, respectively) and against S. pseudomilitaris (0.030?g?m?2?h?1 and 0.025?g?m?2?h?1, respectively). Zinc was not an effective antifoulant, with failure within two weeks. In conclusion, cold-spray gradients were effective in determining MERRs and these outcomes provide the basis for the development of cold-spray surfaces with pre-determined life-spans using controlled MERRs.  相似文献   

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Alkaline phosphatases (APs) are commercially applied enzymes that catalyze the hydrolysis of phosphate monoesters by a reaction involving three active site metal ions. We have previously identified H135 as the key residue for controlling activity of the psychrophilic TAB5 AP (TAP). In this article, we describe three X‐ray crystallographic structures on TAP variants H135E and H135D in complex with a variety of metal ions. The structural analysis is supported by thermodynamic and kinetic data. The AP catalysis essentially requires octahedral coordination in the M3 site, but stability is adjusted with the conformational freedom of the metal ion. Comparison with the mesophilic Escherichia coli, AP shows differences in the charge transfer network in providing the chemically optimal metal combination for catalysis. Our results provide explanation why the TAB5 and E. coli APs respond in an opposite way to mutagenesis in their active sites. They provide a lesson on chemical fine tuning and the importance of the second coordination sphere in defining metal specificity in enzymes. Understanding the framework of AP catalysis is essential in the efforts to design even more powerful tools for modern biotechnology.  相似文献   

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