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1.
几丁质酶是昆虫病原真菌金龟子绿僵菌致病力的主要因子之一。本实验用RT-PCR方法,从本实验室分离筛选到的高毒力金龟子绿僵菌Metarhizium anisopliae HN1中,扩增得到几丁质酶基因全长,此基因全长为1275bp,登录号为DQ011865,经Blastn分析此基因序列与M. anisopliae E6的chi1基因(AF02749)同源率为96% 。以pET-22b(+)为基础载体,构建pET-chi重组表达载体,在大肠杆菌(Escherichia. coli )BL 21中进行表达。经SDS-PAGE分析,获得了42kDa大小的重组目的蛋白,目的蛋白占表达总蛋白含量的63.3%。菌体经冷冻与超声波破碎后,按DNS法可测得几丁质酶的活性。  相似文献   

2.
根据中性海藻糖酶NTL基因的同源序列设计引物,PCR扩增出杀蝗专一菌株———金龟子绿僵菌CQMa102NTL基因片段,利用5′_RACE和3′_RACE扩增出NTLcDNA的5′和3′端序列,经拼接得到CQMa102NTL基因cDNA全长。根据其全长cDNA序列,设计引物PCR扩增出CQMa102NTL的完整基因。为了解该基因的上游调控信息,采用PanhandlePolymeraseChainReactionAmplification方法扩增其上游序列。序列分析表明,CQMa102NTL全长DNA3484bp,cDNA全长2385bp,编码737个氨基酸的蛋白,推测蛋白分子量为83.1kD;含有3个内含子,包含一个依赖于cAMP的磷酸化作用位点(RRGS)和一个钙附着位点(DTDGNMQITIED);上游序列含有一个压力反应元件(CCCCT);与金龟子绿僵菌广谱性菌株ME1NTL的核苷酸序列和氨基酸序列分别具有93%和99%同源性,由此确定该序列为金龟子绿僵菌中性海藻糖酶基因序列。Southern杂交表明,NTL基因在CQMa102基因组中为单拷贝。Northern杂交表明,NTL基因转录出约2.5kb的mRNA单带,在液体培养条件下,对数生长前期表达水平最高,对数生长后期降到最低,进入稳定生长期后表达水平又有所提高。金龟子绿僵菌CQMa102中性海藻糖酶基因DNA全长和cDNA全长登录GenBank,登录号分别为:AY557613,AY557612。  相似文献   

3.
绿僵菌Ma83几丁质酶的发酵研究   总被引:1,自引:0,他引:1  
本实验从虫生真菌中筛选出金龟子绿僵菌M a83菌株,它的几丁质酶合成能力最强。其产酶的适宜条件是,碳源为胶体几丁质加葡萄糖,氮源为NaNO3,培养温度为28℃,培养基起始pH 6.0;接种量为5 mL液态种,最适装液量为5 mL,添加维生素C可以提高酶活;正交实验表明培养因子的最佳组合是:NaNO31 g/L,胶体几丁质0.6 g/L,酵母膏0.05 g/L,葡萄糖0.10 g/L。根据液态培养产酶过程结果可知,当M a83菌培养6天时,几丁质酶活力达到8.1 U/mL。  相似文献   

4.
绿僵菌属的三个新种   总被引:5,自引:0,他引:5  
作者从广东、贵州、北京等地收集的虫生真菌中,发现在我国具有绿僵菌属特征的真菌可分为四个种。根据菌落颜色、分生孢子团块大小、紧密和牢固程度、孢子链连接方式、分生孢子形状等,将我们收集的属于本属的菌株分为四个种。本文报道绿僵菌属三个新种的描述。金龟子绿僵菌Metarhizium anisopliae(Metsch.)Sorokin为最常见的甘蔗金龟子致病菌,是本属的模式种。平沙绿僵菌Metarhizium pingshaense Chen et Guo sp.nov.、柱孢绿僵菌Metarhizium cylindrosporae Chen et Guo sp.nov.和贵州绿僵菌Metarhizium guizhouense Chen et Guo sp.nov.是三个新种。  相似文献   

5.
绿僵菌属的一个新种   总被引:1,自引:0,他引:1  
本文报导从贵州省贵阳罹病梨虎Rhynchites Coreanus Kono幼虫虫尸分离的一种绿僵菌新种的鉴定结果,该菌与绿僵菌属模式种金龟子绿僵菌Metarhizium anisopliae (Metsch) s-orkin 有明显区别,根据菌落颜色、分生孢子团块大小、连接紧密和牢固程度、孢子链连接方式和分生孢子形态等,我们鉴定为新种——翠绿绿僵菌Metarhizium iadini chen、Guo et zhou sp.nov.  相似文献   

6.
本文对新疆地区土壤中分离得到的17株绿僵菌Metarhizium菌株以东亚飞蝗Locusta migratoria manilensis为供试昆虫进行毒力测定,筛选获得高毒力菌株,并对筛选后的高毒力绿僵菌菌株进行耐短时高温能力、抗紫外线能力和耐干旱能力的测试,分析高毒力绿僵菌菌株的抗逆性,以期获得致病力高且抗逆性好的菌株,为下一步绿僵菌生物农药的开发提供依据。研究发现,M1-17、M1-13、M1-09、M1-16、M1-05五株菌株为对东亚飞蝗高致病力的菌株,平均僵虫率在80.00%~96.67%之间,LT50在2.92~3.65之间。对高温的抗性效果较好的菌株为M1-17和M1-05;对紫外线的抗性效果较好的菌株为M1-17和M1-16;而菌株M1-09、M1-17和M1-16抗旱能力较好。菌株M1-17较其它菌株具有更好的抗逆性,具有很好的开发利用价值。  相似文献   

7.
东亚飞蝗感染绿僵菌后的组织病理变化   总被引:2,自引:0,他引:2  
将人工培养的绿僵菌分生孢子配制成浓度为 1× 1 0 8分生孢子 mL的孢子油剂 ,涂抹在供试东亚飞蝗Locustamigratoriamanilensis(Meyen)幼虫的腹侧部。通过组织切片研究表明 ,绿僵菌主要是从东亚飞蝗体表侵入的 ,72h后可见体腔内有菌丝和组织病变 ,侵入体内的菌丝在血腔中不断增殖 ,使得脂肪体、肌肉组织、马氏管和消化道发生病变解体。 96h后 ,肠壁细胞结构开始疏松、内膜解体。 1 2 0h后 ,多数幼虫死亡 ,消化道内外布满菌丝。  相似文献   

8.
本文报道绿僵菌属的修订和修订后本属区分种的主要标准。这对于自然界本属复杂类群的研究将起到新的推动和助益。  相似文献   

9.
利用马铃薯葡萄糖琼脂培养基,对一株绿僵菌进行了分离培养。对不同生长发育天数的菌落特征即颜色、大小、孢子堆的形成等特点进行了描述。在光学显微镜下观察了菌丝的形态,成熟孢子及分生孢子梗的形状、颜色及连接状况。利用扫描电镜观察了分生孢子和孢子梗的超微形态。经培养特征和形态学鉴定,确定该昆虫病原真菌是金龟子绿僵菌。  相似文献   

10.
绿僵菌属血清学的初步研究   总被引:4,自引:0,他引:4  
本文采用凝集试验和免疫电泳的方法对不同来源的七株绿僵菌属真菌进行了免疫学对比研究。抗原是孢子悬液和菌丝体清液,通过对角兔接种抗原而获得抗血清。每一种抗原与其同源抗血清和异源抗血清进行交叉试验,并对凝集试验的结果以及免疫电泳反应产生的沉淀弧数目和免疫电泳图谱加以对比分析,试验结果表明:不同菌株间存在明显的抗原类似性,同时各菌株间也表现出一定的抗原专一性。根据试验数据对供试菌株进行血清学分型的结果与形  相似文献   

11.
12.
Conidiation of the entomopathogenic fungus Metarhizium acridum on agar media was investigated. M. acridum CQMa102 exhibits two different conidiation patterns on agar media: normal conidiation in which conidia are formed on extended hyphae and microcycle conidiation in which conidiation occurs directly after conidia germination. Microcycle conidiation resulted in a mass of conidia produced via budding by accelerated development at the inoculation site. The mean total conidial yield (conidiation at day 10) was 4–5-fold greater after microcycle conidiation than during normal conidiation. Insect pathology assays indicated that microcycle conidia produced on SYA agar were as effective as normal aerial conidia against the locust. Ultraviolet (UV)-resistance tests showed no significant differences between the two types of cell propagules. However, microcycle conidia were more heat resistant than normal aerial conidia, and accumulated higher levels of trehalose in response to heat induction compared to normal aerial conidia.  相似文献   

13.
14.
Dericorys albidula Serville (Orthoptera: Dericorythidae) is a major pest of Haloxylon ammodendron and other saxaul plant species in the Qom province, Iran. Using fungal insecticides can be an alternative method for chemical insecticides. Effect of insecticide fungi, Metarhizium anisopliae var. acridum, on the various nymphs of D. albidula was studied in the field through 2005 and 2006. Fixed concentrations of fungi (106, 107, 108, 109, 1010 and 1013 spore mL?1) were prepared as gasoline formulation and were sprayed on the locusts on H. ammodendron trees, and mortality percentage was recorded 15 days after treatment. The results showed that various concentrations significantly affected on the second, third, fourth and fifth nymphal instars of D. albidula compared to control in 2006, although this effect was lower in 2005 on nymphs. Mortality of the highest concentration (1013 spore mL?1) was higher (17.6–24%) than other concentrations in all tests, but these values were not notable. The results of this study showed that using M. anisopliae var. acridum diluted in gasoline can be effective on nymphal instars of locust, D. albidula, in two continuous years.  相似文献   

15.
A model for the residual effect of previous years' treatment with the mycoinsecticide Metarhizium anisopliae var. acridum has been constructed based on field data from treatment of two different grasshopper species in east Niger. This model was incorporated in an earlier developed simulation model to evaluate control strategies for the grasshopper Oedaleus senegalensis in West Africa and the model system was used to assess the potential importance of second year's residual effects for the efficiency of different treatment strategies. It has earlier been hypothesized that the persistence of M. anisopliae and the ability of this agent to impose long-term control on grasshopper populations through secondary cycling in some cases might render the use of M. anisopliae more efficient than the use of chemical insecticides like fenitrothion. Results show that this effect is possible if M. anisopliae is used in a repetitive treatment strategy where control operations are concentrated in the main millet production areas.  相似文献   

16.
Aims:  The genetic relationships and conidial tolerances to high and low temperatures were determined for isolates of several Metarhizium species and varieties.
Methods and Results:  Molecular-based techniques [AFLP and rDNA (ITS1, ITS2 and 5·8S) gene sequencing] were used to characterize morphologically identified Metarhizium spp. isolates from a wide range of sources. Conidial suspensions of isolates were exposed to wet heat (45 ± 0·2°C) and plated on potato dextrose agar plus yeast extract (PDAY) medium. After 8-h exposure, the isolates divided clearly into two groups: (i) all isolates of Metarhizium anisopliae var. anisopliae ( Ma-an ) and Metarhizium from the flavoviride complex ( Mf ) had virtually zero conidial relative germination (RG), (ii) Metarhizium anisopliae var. acridum ( Ma-ac ) isolates demonstrated high heat tolerance ( c . 70–100% RG). Conidial suspensions also were plated on PDAY and incubated at 5°C for 15 days, during which time RGs for Ma-an and Ma-ac isolates were virtually zero, whereas the two Mf were highly cold active (100% RG).
Conclusions:  Heat and cold exposures can be used as rapid tools to tentatively identify some important Metarhizium species and varieties.
Significance and Impact of the Study:  Identification of Metarhizium spp. currently relies primarily on DNA-based methods; we suggest a simple temperature-based screen to quickly obtain tentative identification of isolates as to species or species complexes.  相似文献   

17.
Field-based experiments were conducted to evaluate the fate and infectivity of the entomopathogenic fungus Metarhizium anisopliae var. acridum (Deuteromycotina: Hyphomycetes) in grasshopper cadavers in the Sahel. Unlike uninfected cadavers, which were rapidly scavenged, those infected with the fungus persisted in the environment for a number of weeks. The environmental factor most associated with cadaver disappearance was rainfall. The high environmental humidity associated with rainfall was also required for sporulation of the fungus on host cadavers, although the likelihood of sporulation differed between microsites. Characteristics of the infection profile from infective cadavers were investigated by the sequential exposure of uninfected hosts to sporulating cadavers in field cages. This experiment revealed that cadavers remained infective for > 30 days, with the net infectivity changing through time. The most likely explanation for these changes is climatic influences on both the fungus and host. High humidity was not required for infection. A measurement of the transmission coefficient between healthy hosts and sporulating cadavers in the field was obtained at a realistic density of infectious cadavers. This revealed a figure of 0.45 m2 day–1. Overall, these experiments show that following host death, M. anisopliae var. acridum can be persistent in the environment, sporulate on host cadavers and reinfect new hosts at a realistically low field density, although at least in arid or semi-arid areas, rainfall may be critical to the horizontal transmission of this pathogen.  相似文献   

18.
The Cht gene encoding cyanide hydratase (CHT, EC 4.2.1.66), which detoxifies HCN and is thought to be important in fungal infection of cyanogenic plants, has been cloned from the phytopathogenic fungus Gloeocercospora sorghi. The gene was isolated by screening an expression library of G. sorghi using a CHT-specific antibody and using one of the positive cDNA clones as a probe in Southern hybridization to identify a 3.1 kb PstI genomic fragment. This PstI fragment expressed CHT activity when transformed into Aspergillus nidulans, a fungus that normally lacks CHT activity. Sequence analysis identified a single open reading frame of 1,107 base pairs which encodes a polypeptide of 40,904 daltons. The deduced amino acid sequence of CHT shares 36.5% identity to a nitrilase from the bacterium Klebsiella pneumoniae subsp. ozaenae.  相似文献   

19.
黄绿绿僵菌对两种稻田蜘蛛捕杀褐飞虱作用的影响   总被引:2,自引:0,他引:2  
耿博闻  张润杰 《昆虫学报》2004,47(3):349-353
在室内研究了喷施黄绿绿僵菌Metarhizium anisopliae var. acridum Driver et Milner孢子悬液对稻田蜘蛛捕杀褐飞虱作用的影响。结果表明,黄绿绿僵菌不感染拟水狼蛛Pirata subpiraticus Bsenberg et Strand和食虫沟瘤蛛Ummeliata inse cticeps Bsenberg et Strand,只对蜘蛛喷施菌液不影响它们的捕杀褐飞虱的能力。而对褐飞虱喷施黄绿绿僵菌液后,褐飞虱活力明显下降,导致蜘蛛对其捕杀效果显著提高。在喷施黄绿绿僵菌106 、107、108/mL孢子浓度后,拟水狼蛛的平均捕杀量分别为10.5头/d、11.1头/d和11.4头/d,食虫沟瘤蛛的平均捕杀量分别为3.8头/d、4.3头/d和4.7头/d,均显著大于对照组。对蜘蛛和褐飞虱同时喷施黄绿绿僵菌不影响前者的捕杀力。这些结果提示,在稻田施用黄绿绿僵菌防治稻飞虱对蜘蛛天敌没有不良影响。  相似文献   

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