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1.
植物几丁质酶及其在抗真菌病害中的应用   总被引:12,自引:0,他引:12  
植物几丁质酶的研究是抗真菌基因工程的热点之一。几丁质酶能够水解真菌细胞壁的主要成分几丁质,在植物抗真菌病害反应中发挥重要的作用。介绍了几丁质酶的基本生物学特性、基因的诱导表达,并对植物几丁质酶基因在抗真菌病害基因工程中的应用进行了阐述。  相似文献   

2.
植物中几丁质酶的作用   总被引:4,自引:0,他引:4  
几丁质酶 (EC3.2 .1.14)是降解几丁质的糖苷酶。很多植物包括草本植物和木本植物都能产生几丁质酶 [1] 。由于几丁质酶在植物抗真菌病害中起着重要的作用 ,因而成为近年抗真菌病害研究的热点之一 [2 ] 。随着对几丁质酶研究的深入 ,发现该酶不仅与抗真菌病害有关 ,而且在植物发育、抗胁迫及共生固氮等方面都发挥着作用。1 参与植物的发育调控植物几丁质酶基因的表达具有组织特异性 ,参与了植物的发育调控 ,尤其在早期胚胎发育过程中。胡萝卜中 ,几丁质酶 EP3 参与控制早期胚胎发育 [3 ] 。在云杉体胚发育中 ,几丁质酶也起到了调控作用。…  相似文献   

3.
细菌几丁质酶研究进展   总被引:13,自引:1,他引:12  
真菌病害是影响作物产量的重要原因 ,而几丁质酶能有效抑制其生长、水解其细胞壁。对研究较多的细菌几丁质酶及几丁质酶基因的分子生物学研究进展进行了综述 ,并对细菌几丁质酶基因利用存在的问题进行了探讨。  相似文献   

4.
真菌病害一直是影响作物的主要病害之一 ,每年造成巨大经济损失。几丁质酶可水解许多病原真菌细胞壁所含有的主要成分—几丁质 ,是研究得最多的抗真菌蛋白质。许多几丁质酶基因已从微生物中克隆到 ,芽孢杆菌是一类重要的几丁质酶产生菌。环状芽孢杆菌可产生并分泌多种多糖降解酶类 ,包括几丁质酶、β 1 ,3 葡聚糖酶、β 1 ,6葡聚糖酶和半纤维素酶[1] 。Watanabe克隆了环状芽孢杆菌WL 1 2菌株的几丁质酶基因chiA和chiD ,对该几丁质酶基因的结构和功能进行了深入研究[2~ 4 ] 。我国的陈三凤克隆了黄杆菌的几丁质酶基因 ,…  相似文献   

5.
几丁质酶及其在抗植物真菌病害中的作用   总被引:11,自引:0,他引:11  
几丁质酶 (ChitinaseEc .3.2 .1 4 )广泛存在于植物、动物及微生物细胞和组织中 ,参与多种生理过程。几丁质是构成大多数真菌细胞壁的主要成分。研究发现许多微生物都可以产生几丁质酶。几丁质酶的生物活性可显著抵抗植物真菌病害。对几丁质酶的研究历史和现状进行了综合论述 ,并对几丁质酶及其抗病性、几丁质酶在植物病害生物防治和抗病基因工程中的应用前景进行了展望。  相似文献   

6.
微生物产几丁质酶的研究和应用进展   总被引:25,自引:0,他引:25  
从产几丁质酶的微生物类群生态分布及微生物产几丁质酶的种类、理化性质等方面论述了微生物产几丁质酶的研究进展。着重论述了提高微生物产几丁质酶能力的方法。介绍了微生物产几丁质酶在植物病虫害防治中的应用进展 ,尤其是微生物产碱性几丁质酶在害虫防治中的增效作用。  相似文献   

7.
几丁质酶的分子生物学特性及其在转基因植物中的应用   总被引:10,自引:0,他引:10  
吴志刚  朱旭芬 《生命科学》2002,14(2):117-121
几丁质酶及其底物几丁质均广泛存在于自然界。由于几丁质酶及其解产物在生物学,医学、化学、主环境科学等方面潜在的价值越来越受到重视,对酶的基础理论和应用研究已逐步深入,作者综合论述了近年来质酶在分子结构,同源性等方面的研究进展,以及在抗病害基因工程中的发现与应用,并对其进一步的研究提出展望。  相似文献   

8.
昆虫几丁质酶及其在害虫防治中的应用   总被引:2,自引:0,他引:2  
李瑶  范晓军 《昆虫知识》2011,48(5):1489-1494
几丁质是昆虫重要的结构性组分,在昆虫生长发育的各个时期都需要一定量的几丁质来维持其代谢平衡.昆虫几丁质酶可以降解昆虫体壁和围食膜中的几丁质,作为一种潜在的生物杀虫剂在害虫防治方面具有广阔的应用前景.随着对昆虫几丁质酶研究的不断深入,目前已克隆到了30余种昆虫几丁质酶,并应用于转基因作物和基因工程微生物中,对害虫具有一定...  相似文献   

9.
韩琦  王铌翔 《微生物学报》2024,64(1):98-107
抑制真菌细胞壁的合成常作为防治真菌感染的安全有效手段。几丁质是真菌细胞壁及隔膜的重要结构成分,几丁质合酶是催化几丁质合成的关键酶。真菌细胞中几丁质合酶家族的不同成员在调控几丁质的合成中存在着差异,因此产生不同的生物学效应。本文通过综述几丁质合酶在人体三大条件致病真菌白色念珠菌、烟曲霉、新生隐球菌中的研究进展,分析了几丁质合酶对真菌致病性影响的机制,总结了几丁质合酶调控真菌细胞增殖、形态转换、病原菌与宿主的相互作用和细胞壁损伤诱导的补偿效应,展望了抗真菌感染的新策略及关于真菌几丁质合酶的未来研究方向。  相似文献   

10.
昆虫几丁质酶的研究历史很长,研究内容也非常广泛;但仅局限于传统的方法研究某个昆虫单个基因的功能及应用。近年来,随着生物信息学和RNAi技术在生命科学研究工作中的广泛应用,在昆虫几丁质酶的研究方面也取得了较大进展。本文主要以生物信息学在几丁质酶家族基因鉴定和分类研究过程中的应用,以及利用RNAi技术分析几丁质酶不同家族成员在赤拟谷盗和褐飞虱两种昆虫生长发育中的功能比较分析,对全面认识昆虫几丁质酶基因家族功能和作用机理,并利用几丁质酶基因防治害虫奠定良好的基础。  相似文献   

11.
An antagonistic bacillus S2BC-2 isolated from apple rhizosphere soil was identified to be highly chitinolytic on chitinase detection agar. Standard bacteriological tests and sequencing of 16S rRNA, and gyrA and rpoB genes, indicated a taxonomic affiliation of the strain to Bacillus atrophaeus. The strain was studied for its ability to grow and produce chitinase on different substrates. Bacterial cells grown on chitin-containing media showed enhanced growth and chitinase production with increased anti-fungal activity against vascular wilt pathogens. Extracellular proteins of cell-free extracts of media amended with chitin and fungal cell wall contained 4–10 novel polypeptides. In polyhouse (bamboo structures that provide protective shade made of polyvinyl sheet) studies, a chitin-supplemented talc-based formulation of the S2BC-2 challenge inoculated with Fusarium oxysporum f. sp. zingiberi recorded low percent disease indices of 84.9 % and 79.2 % for yellows and rhizome rot, respectively, over the non-bacterised pathogen control. The low disease incidences correlated with 113.3 % maximum rhizome production and 2-fold higher chitinase induction over the pathogen control. In native gel activity assays, upon challenge-inoculation, S2BC-2 expressed more chitinase isoforms than the pathogen control. The results suggest that chitinolytic B. atrophaeus can be used in the biocontrol of rhizome rot of ginger.  相似文献   

12.
Twenty‐two strains of Pseudomonas fluorescens isolated from the rhizosphere soil of nine plant species were screened in vitro for their inhibitory effect on the mycelial growth of the rice sheath blight fungus, Rhizoctonia solani. Of the 22 strains, two promising strains (Pf1 and FP7) were assessed for their effect on seedling vigour and their ability to promote growth in vitro of four cultivars of rice. Both bacterial strains induced systemic resistance in rice cv. IR 50, which is susceptible to sheath blight. After inoculation of the sheaths with the pathogen, Pseudomonas‐treated plants showed an increase in chitinase activity significantly higher than that of untreated control plants. A twofold increase in chitinase activity occurred 2 days after inoculation of plants with the pathogen. Western blot analysis of chitinase indicated the expression of 28 and 38 kDa proteins in rice sheaths against R. solani. Increased induction of the pathogenesis‐related chitinase isoform in Pseudomonas‐treated rice in response to R. solani infection indicates that the induced chitinase has a definite role in suppressing disease development.  相似文献   

13.
Soil that is suppressive to disease caused by fungal pathogens is an interesting source to target for novel chitinases that might be contributing towards disease suppression. In this study, we screened for chitinase genes, in a phytopathogen-suppressive soil in three ways: (1) from a metagenomic library constructed from microbial cells extracted from soil, (2) from directly extracted DNA and (3) from bacterial isolates with antifungal and chitinase activities. Terminal restriction fragment length polymorphism (T-RFLP) of chitinase genes revealed differences in amplified chitinase genes from the metagenomic library and the directly extracted DNA, but approximately 40% of the identified chitinase terminal restriction fragments (TRFs) were found in both sources. All of the chitinase TRFs from the isolates were matched to TRFs in the directly extracted DNA and the metagenomic library. The most abundant chitinase TRF in the soil DNA and the metagenomic library corresponded to the TRF103 of the isolate Streptomyces mutomycini and/or Streptomyces clavifer . There were good matches between T-RFLP profiles of chitinase gene fragments obtained from different sources of DNA. However, there were also differences in both the chitinase and the 16S rRNA gene T-RFLP patterns depending on the source of DNA, emphasizing the lack of complete coverage of the gene diversity by any of the approaches used.  相似文献   

14.
15.
Investigation of the crude extracellular chitinase of Bacillus sp. 739, an antagonist of phytopathogenic fungi, discerned a relationship between the chitinase and antifungal activities of this bacterium. Purified chitinase lost its ability to inhibit the growth of micromycetes. The antagonistic (antifungal) activity of crude chitinase was found to be located in a low-molecular-weight fraction of the enzyme, which does not possess chitinase activity. Both crude and purified chitinase were able to lyse the cell walls of intact mycelium. Accordingly, it may be inferred that the antagonistic activity of Bacillus sp. 739 against micromycetes is largely determined by low-molecular-weight nonenzymatic substances whereas the role of chitinase is to utilize chitin, which is ubiquitously present in soil.  相似文献   

16.
We report here the first analysis of chitinase regulation in Moniliophthora perniciosa, the causal agent of the witches' broom disease of cacao. A multivariate statistical approach was employed to evaluate the effect of several variables, including carbon and nitrogen sources and cultivation time, on M. perniciosa non-secreted (detected in mycelium, i.e. in symplasm and cell wall) and secreted (detected in the culture medium) chitinase activities. Non-secreted chitinase activity was enhanced by peptone and chitin and repressed by glucose. Chitinase secretion was increased by yeast extract alone or in combination with other nitrogen sources, and by N-acetylglucosamine, and repressed in presence of chitin. The best cultivation times for non-secreted and secreted chitinase activities were 30 and 20 d, respectively. However, chitinase activity was always higher in the mycelium than in the culture medium, suggesting a relatively poor chitinase secretion activity. Conversely, higher mycelial growth was observed when the activity of the non-secreted chitinase was at its lowest, i.e. when the fungus was grown on glucose and yeast extract as sources of carbon and nitrogen, respectively. Conversely, the induction of non-secreted chitinase activity by chitin decreased the mycelium growth. These results suggest that the culture medium, by the induction or repression of chitinases, affected the hyphal growth. Thus, as an essential component of M. perniciosa growth, chitinases may be a potential target for strategies to control disease.  相似文献   

17.
Investigation of the crude extracellular chitinase of Bacillussp. 739, an antagonist of phytopathogenic fungi, discerned a relationship between the chitinase and antifungal activities of this bacterium. Purified chitinase lost its ability to inhibit the growth of micromycetes. The antagonistic (antifungal) activity of crude chitinase was found to be located in a low-molecular-weight fraction of the enzyme, which does not possess chitinase activity. Both crude and purified chitinase were able to lyse the cell walls of intact mycelium. Accordingly, it may be inferred that the antagonistic activity of Bacillussp. 739 against micromycetes is largely determined by low-molecular-weight nonenzymatic substances, whereas the role of chitinase is to utilize chitin, which is ubiquitously present in soil.  相似文献   

18.
Mechanisms of biocontrol of soil-borne plant pathogens by Rhizobacteria   总被引:3,自引:0,他引:3  
Bacterial antagonism, responsible for biological control, may operate by antiobiosis, competition or parasitism. Parasitism relies on lytic enzymes for the degradation of cell walls of pathogenic fungi. Serratia marcescens was found to be an efficient biocontrol agent of Sclerotium rolfsii and Rhizoctonia solani under greenhouse conditions. Populations of 105 or 106 colony forming units g-1 soil were the most effective. Drench and drip application of S. marcescens suspension were more effective in controlling S. rolfsii than spraying, mixing in soil or seed coating. The highest population density of the bacteria in the rhizosphere was found on the proximal portion of the root, decreasing significantly until the tips, where it increased again. The isolated Serratia, found to possess chitinolytic activity, was able to release N-acetyl D-glucosamine from cell walls of S. rolfsii. The gene coding for chitinase was cloned into Escherichia coli and the enzyme was uniquely excreted from the bacterium into its growth medium. When S. rolfsii was sprayed by partially purified chitinase produced by the cloned gene, rapid and extensive bursting of the hyphal tips was observed. This chitinase preparation was effective in reducing disease incidence caused by S. rolfsii in beans and R. solani in cotton, under greenhouse conditions. A similar effect was obtained when a viable E. coli cell, containing the plasmid with the chitinase gene (pLCHIA), was applied. It appears that genetic engineering of the lytic enzymes, such as chitinase which play an important role in plant disease control, may improve the efficacy of biocontrol agents.  相似文献   

19.
The producer of the antifungal polyene antibiotic, aimed to protect against fungial biodeterioration, has been isolated from the soil due to a target search. Based on the morphological, cultural, and biochemical abilities, the producer is related to the Streptomyces genus. It has been shown by chromatographic, spectral, physical, and chemical methods that the antibiotic synthesized by the isolated culture consists of two main components—the polyene hexaene antibiotic with a high antifungal activity and a non-polyene antibiotic with antibacterial activity. The antifungal activity of the low purified hexaene antibiotic is comparable with the antifungal activity of the well-known highly purified antibiotics—amphotericin B, clotrimazole, and itrakonazol. This antibiotic inhibits the synthesis of the biodeterioration factors in fungi, i.e., pigments and organic acids.  相似文献   

20.
几丁质酶产生菌筛选鉴定及产酶性能研究   总被引:2,自引:0,他引:2  
从土壤样品中筛选得到一株高产几丁质酶菌株C65-2,经形态学观察和18S rDNA序列测定,鉴定为Aspergillus fumigatus,对产酶培养基进行初步优化,测得最高酶活可达6.9U/ml,酶活力较优化之前提高了210%。酶学性质研究表明该几丁质酶分子量约为20kDa,酶在60℃下保温50min酶活降为0,最适酶反应温度是55℃,酶反应最适pH为7.0,Mg2+,Cu2+对酶反应有促进作用,Fe3+对酶反应有抑制作用。  相似文献   

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