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1.
香蕉枯萎病是目前国内和世界很多地区香蕉种植区的一种毁灭性病害,目前尚未找到有效的防治方法.本文采集了海南省不同地区香蕉枯萎病的病原菌,通过经典病理学与分子生物学的方法进行了鉴定,此外还优化了快速检测的方法.结果表明,通过接种巴西香蕉和粉蕉进行致病性检测以及分离菌rDNA-ITS测序结果,明确鉴定出供试的香蕉分离菌株为4号生理小种,粉蕉分离菌株为1号生理小种.为了对1号、4号生理小种有更多的了解,本文还对1号、4号小种菌株生物学特性进行了测定,确定了影响菌丝生长的最佳条件.结果显示,pH 5时最适合1号、4号生理小种的菌丝生长,适合菌丝生长的温度为19~28℃之间,温度达到37℃时菌丝不能生长,碳源对菌丝的生长影响不大.这些方法和数据可以有利于田间香蕉枯萎病病害的检测和最终确定,生物学特性的测定可以为耕作技术的改进和农药的研发提供参考依据.  相似文献   

2.
海南省香蕉枯萎菌生理小种的RAPD分析   总被引:13,自引:1,他引:13  
利用随机扩增多态性DNA(RAPD)分子标记方法对海南省香蕉枯萎病菌2个生理小种(小种1和小种4)进行遗传多样性分析,以筛选出的15个随机引物对采自海南省各市县发病蕉区的分别属于1号生理小种和4号生理小种的16个代表菌株及广东省2个1号和4号生理小种对照菌株进行RAPD-PCR扩增,结果产生97个RAPD分子标记,其中多态性的条带有76条,通过聚类分析探讨了供试小种间的亲缘关系,并寻找到了1、4号生理小种的特异性条带,为在分子水平上进行香蕉枯萎病菌生理小种鉴定提供更为便利的手段。  相似文献   

3.
由尖孢镰孢菌古巴专化型Fusarium oxysporum f. sp. cubense, Foc引起的香蕉枯萎病是香蕉生产上的毁灭性病害,自1996年以来已对我国华南地区香蕉生产造成了严重危害。传统上香蕉枯萎病菌生理小种的鉴定主要采用人工接种鉴别寄主尔后测定病菌致病性的方法,但实验周期长,且受季节影响。以来自澳大利亚的香蕉枯萎病菌生理小种1号(BW1)、2号(Race 2)、3号(Race 3)以及亚热带4号(BW4)为对照,对分离自我国华南地区主要香蕉产区(广东、广西、海南、福建等省区)的14株香蕉枯萎病菌的单孢菌株进行致病性测定,并结合热带4号小种(TR4)和亚热带4号小种(ST4)的分子特异检测方法,确定其生理小种类型;同时,利用ITS、TEF-1α、IGS、histone H3、β-tubulin等 5个主要用于镰孢菌系统发育学研究的基因,研究不同地区不同来源的Foc菌株之间的亲缘关系及其与非病原尖孢镰孢菌的关系,并评价这5个基因在香蕉枯萎病菌生理小种鉴定上的应用价值。研究结果表明:(1)来源于我国华南地区的4号小种主要为热带4号小种;(2)TEF-1α、IGS、histone H3等3个基因片段能够将Foc中不同生理小种的菌株划分成不同的系统发育谱系,与致病性测定的结果具有对应关系,也能较好地反映尖孢镰孢菌种内菌株的亲缘关系,可用于香蕉枯萎病菌生理小种鉴定;(3)我国Foc 1号生理小种的遗传多样性高于4号生理小种,Foc 1号生理小种的菌系与来自香蕉果实上的非病原尖孢镰孢菌的亲缘关系比其与Foc 4号生理小种的菌系的亲缘关系更近。  相似文献   

4.
香蕉上的镰孢菌种类及其系统发育关系(英文)   总被引:1,自引:0,他引:1  
镰孢菌属真菌是香蕉上的重要病原菌,主要引起香蕉枯萎病以及香蕉冠腐病,在我国已明确引起香蕉枯萎病的病原为尖孢镰孢古巴专化型 Fusarium oxysporum f. sp. cubense(FOC)1号和4号生理小种,但是引起香蕉冠腐病的镰孢菌种类还未明确。为了解香蕉上镰孢菌在种间及种内水平上的多样性,2008–2011 年间作者从华南地区不同的水果市场及香蕉果园采集香蕉样品90份,分离得到143株镰孢菌。通过形态学观察及基于 EF-1α基因的系统进化分析鉴定出10种镰孢菌,即F. oxysporum、F. solani、F. camptoceras、F. pallidoroseum、F. stiloides、F. chlamydosporum、F.verticillioides、F. proliferatum、F. concentricum、F. sacchari,以及藤仓赤霉复合种(Gibberella fujikuroi species complex,GFC)中 3 个未定名的类群。轮纹镰孢 F. concentricum 及甘蔗镰孢 F.sacchari 是香蕉果实中最常见种,前菌为我国首次报道,后菌是首次报道与香蕉有关。对从香蕉上分离的藤仓赤霉复合种(GFC)及尖孢镰孢复合种(FOSC)的EF-1α序列进行了系统发育分析,其GFC中的27个菌株组成的单系群可分为7个不同的亚群,分别为 F.verticillioides、F. proliferatum、F. concentricum、F. sacchari 以及3个没有描述过的菌系 Fusarium sp. 1、Fusarium sp.2和 Fusarium sp.3;FOSC中的50个菌株形成2大分枝共12个谱系,分离自我国华南地区的21株尖孢镰孢形成7个谱系,其中 13株已知的香蕉枯萎病病原菌分布在3个谱系中,我国大陆的香蕉枯萎病病原菌菌株与来源于台湾地区及东南亚的菌株亲缘关系较近,FOC1号生理小种的遗传分化大于4号生理小种,FOC 1号生理小种与分离自香蕉果实上的尖孢镰孢菌的亲缘关系比与FOC 4号生理小种的亲缘关系更近。研究结果表明,我国香蕉上存在着丰富的镰孢菌种类,而且种内遗传多样性丰富。  相似文献   

5.
通过比较解淀粉芽孢杆菌SC1150 菌株发酵液对香蕉枯萎病菌4 号生理小种的抑菌活性, 对解淀粉芽孢杆菌SC1150 菌株液体发酵条件进行了优化研究。结果显示: 在固体培养条件下解淀粉芽孢杆菌SC1150 菌株对测试的8 种作物病原菌均有抑制作用, 其中对香蕉枯萎病菌4 号生理小种的抑制作用特别强烈, 其抑菌圈直径达到23.31 mm。以香蕉枯萎病菌4 号生理小种为指示菌, 对该活性SC1150 菌株的液体发酵条件进行优化, 液体发酵培养基各组分的最佳配比为0.5%可溶性淀粉(碳源)、1.5%蛋白胨+酵母粉(1︰1)的混合氮源、0.1%NaCl; 最佳培养条件: pH 6.5、30 ℃、摇床转速确180 rmin–1。优化后SC1150 菌株对香蕉枯萎病菌4 号生理小种的抑菌圈直径达到 28.33 mm。  相似文献   

6.
对我国云南、海南和广东咖啡植区收集到的58个咖啡锈菌菌株标本进行生理小种鉴定,鉴定出小种有7个。各咖啡植区除共同出现Ⅱ号生理小种外,云南咖啡植区还出现Ⅰ,XV,XXIII和XXIV号生理小种;海南则出现VI和XXII号小种;广东咖啡栽培地区未发现有新的生理小种。各咖啡植区新生成的生理小种种类有明显不同。  相似文献   

7.
对我国云南、海南和广东咖啡植区收集到的58个咖啡锈菌菌株标本进行生理小种鉴定,鉴定出小种有7个。各咖啡植区除共同出现Ⅱ号生理小种外,云南咖啡植区还出现Ⅰ,XV,XXIII和XXIV号生理小种;海南则出现VI和XXII号小种;广东咖啡栽培地区未发现有新的生理小种。各咖啡植区新生成的生理小种种类有明显不同。  相似文献   

8.
陈振佳  Rodr.  CJ 《菌物系统》1998,17(1):21-28
对我国云南、海南和广东咖啡植区收集到的58个咖啡锈菌菌株标本进行生理小种鉴定,鉴定出小种有7个。各咖啡植区除共同出现Ⅱ号生理小种外,云南咖啡植区还出现Ⅰ,XV,XXⅢ和XXⅣ号生理小种;海南则出现Ⅵ和XXⅡ号小种;广东咖啡栽培地区未发现有新的生理小种。各咖啡植区新生成的生理小种种类有明显的不同。  相似文献   

9.
菜豆炭疽菌生理小种鉴定及普通菜豆种质的抗性评价   总被引:7,自引:1,他引:7  
对来源于黑龙江、吉林、内蒙古、河北、云南等8个省(市)的15个菜豆炭疽菌分离物进行生理小种鉴定,鉴别出5个菜豆炭疽菌生理小种,其中81号小种出现的频率高达67%,是中国的优势小种。用81号小种对181份菜豆进行抗性鉴定,发现高抗材料2份,抗病材料43份,高感材料33份,说明我国菜豆种质资源对炭疽菌81号小种抗感差异显著,抗病资源丰富。  相似文献   

10.
香蕉枯萎病拮抗放线菌Da08006的筛选与鉴定   总被引:1,自引:0,他引:1  
以尖孢镰刀菌4号小种为指示菌株,对海南尖峰岭原始森林和发病香蕉园健康植株根际土壤的放线菌进行筛选,获得一株具有较强拮抗作用、遗传稳定的放线菌Da08006.通过形态特征、生理生化特征、16S rDNA序列及其系统发育分析研究,鉴定菌株Da08006为Streptomyces morookaense.  相似文献   

11.
《Mycological Research》2006,110(8):929-935
Fusarium wilt of banana is a potentially devastating disease throughout the world. Options for control of the causal organism, Fusarium oxysporum f.sp. cubense (Foc) are limited. Suppressive soil sites have previously been identified where, despite the presence of Foc, Fusarium wilt does not develop. In order to understand some aspects of this disease suppression, endophytic Fusarium oxysporum isolates were obtained from banana roots. These isolates were genetically characterized and compared with an isolate of Fusarium oxysporum previously identified as being capable of suppressing Fusarium wilt of banana in glasshouse trials. Three additional isolates were selected for glasshouse trials to assess suppression of Fusarium wilt in two different cultivars of banana, Cavendish and Lady Finger. One isolate (BRIP 29089) was identified as a potential biocontrol organism, reducing the disease severity of Fusarium wilt in Lady Finger and Cavendish cultivars. Interestingly, one isolate (BRIP 45952) increased Fusarium wilt disease severity on Cavendish. The implications of an isolate of Fusarium oxysporum, non-pathogenic on banana, increasing disease severity and the potential role of non-pathogenic isolates of Fusarium oxysporum in disease complexes are discussed.  相似文献   

12.
耐热木霉菌株筛选及其对热作区香蕉促生效应的研究   总被引:1,自引:0,他引:1  
[目的]为筛选安全、高效的耐热木霉功能菌株,有效促进热作区香蕉的生产,本研究从热作区土壤分离筛选适温范围较宽的木霉菌株,研制木霉生物有机肥,并研究其对香蕉枯萎病发病率、果实产量及品质的影响.[方法]通过稀释涂布法筛选出木霉菌株,根据菌株在不同温度下的生长情况、拮抗尖孢菌能力及酶活强弱进行菌株复筛;将复筛所得菌株试制成生...  相似文献   

13.
Fusarium wilt caused by Fusarium oxysporum f. sp. cubense (Foc) is considered as a lethal disease of bananas worldwide. To manage the disease effectively, 20 rhizospheric and 43 endophytic Trichoderma isolates obtained from 12 different Foc resistant banana accessions were evaluated against Foc in vitro and in vivo. In vitro screening among Trichoderma isolates for their multiple functions (mycelial and spore germination inhibition, hydrogen cyanide, chitinolytic enzymes, non-volatile and volatile metabolites production) in suppressing Foc and promoting plant growth (IAA production and phosphate solubilisation) indicated that the multiple biocontrol actions were significantly higher in 6 isolates of rhizospheric Trichoderma and 10 isolates of endophytic Trichoderma compared to other isolates. The greenhouse evaluation of individual application of these rhizospheric and endophytic Trichoderma isolates against Fusarium wilt pathogen in cv. Grand Naine (AAA) indicated significant suppression of Fusarium wilt disease and increased plant growth characters as compared to Foc pathogen inoculated plants. However, none of these individual Trichoderma isolates recorded complete suppression of Fusarium wilt disease. Therefore, the greenhouse evaluation involving combination of rhizospheric Trichoderma sp. NRCB3 + endophytic Trichoderma asperellum Prr2 recorded 100% reduction of Fusarium wilt disease and increased plant growth parameters up to 250% when compared to individual isolates application and Foc alone-inoculated plants. Further, the field evaluation of this combination of Trichoderma isolates applied for three times: (1) at 15 days before planting, (2) second month after planting and (3) fourth month after planting resulting in significant reduction of Fusarium wilt disease and also increase in bunch weight as compared to untreated control plants. Therefore, these Trichoderma isolates may be used in combination for the effective suppression of Fusarium wilt disease in banana.  相似文献   

14.
刘增亮  汪茜  宋娟  周双云  车江旅  陈廷速 《菌物学报》2019,38(11):1958-1964
为筛选得到优良植物病害生防菌,对广西生姜Zingiber officinale种植区健康生姜根系和叶片中的共生真菌进行了组织分离,以生姜茎腐病菌群结腐霉Pythium myriotylum和香蕉枯萎病菌尖孢镰刀菌古巴专化型4号生理小种Fusarium oxysporum f. sp. cubense race 4为指示菌,通过平板对峙培养法和发酵液菌落直径法试验进行筛选评价,并结合形态学观察及ITS序列分析对筛选出的生防效果最好的共生真菌进行了鉴定。结果表明,从生姜植株共分离得到34株共生真菌,其中根系分离22株,叶片分离12株;对峙培养发现有6株共生真菌对生姜茎腐病菌和香蕉枯萎病菌均有抑制作用;其中菌株SBM-11拮抗作用最强,对生姜茎腐病菌抑制率达到93%,对香蕉枯萎病菌抑制率达到82%;SBM-11的发酵液对生姜茎腐病菌和香蕉枯萎病菌抑制率分别为82%、73%,与其他菌株发酵液抑制效果相比差异明显;结合形态和分子鉴定结果表明SBM-11菌株为绿色木霉Trichoderma viride,极具生防潜力。  相似文献   

15.
Endophytic bacteria reside within plant hosts without having pathogenic effects, and various endophytes have been found to functionally benefit plant disease suppressive ability. In this study, the influence of banana plant stress on the endophytic bacterial communities, which was achieved by infection with the wilt pathogen Fusarium oxysporum f. sp. cubense, was examined by cultivation-independent denaturing gradient gel electrophoresis analysis of 16S ribosomal DNA directly amplified from plant tissue DNA. Community analysis clearly demonstrated increased bacterial diversity in pathogen-infected plantlets compared to that in control plantlets. By sequencing, bands most similar to species of Bacillus and Pseudomonas showed high density in the pathogen-treated pattern. In vitro screening of the isolates for antagonistic activity against Fusarium wilt pathogen acquired three strains of endophytic bacteria which were found to match those species that obviously increased in the pathogen infection process; moreover, the most inhibitive strain could also interiorly colonize plantlets and perform antagonism. The evidence obtained from this work showed that antagonistic endophytic bacteria could be induced by the appearance of a host fungal pathogen and further be an ideal biological control agent to use in banana Fusarium wilt disease protection.  相似文献   

16.
Total cellular DNA was extracted from 28 isolates of Fusarium oxysporum from vascular wilt of banana. The DNA samples were digested with the restriction endonuclease Hae III, and separated in agarose gels. Two characteristic banding patterns were seen in ethidium bromide stained gels. The two patterns correlated to strains believed to be of pathogenic races 1 and 4. A minor variation to these was detected with isolates of race 1 from Tanzania, which gave a typical race 1 band pattern, with an additional band of approx. 10 kb.  相似文献   

17.

Background

Fusarium wilt, caused by the fungal pathogen Fusarium oxysporum f. sp. cubense (Foc), is one of the most destructive diseases of banana. Toxins produced by Foc have been proposed to play an important role during the pathogenic process. The objectives of this study were to investigate the contamination of banana with toxins produced by Foc, and to elucidate their role in pathogenesis.

Methodology/Principal Findings

Twenty isolates of Foc representing races 1 and 4 were isolated from diseased bananas in five Chinese provinces. Two toxins were consistently associated with Foc, fusaric acid (FA) and beauvericin (BEA). Cytotoxicity of the two toxins on banana protoplast was determined using the Alamar Blue assay. The virulence of 20 Foc isolates was further tested by inoculating tissue culture banana plantlets, and the contents of toxins determined in banana roots, pseudostems and leaves. Virulence of Foc isolates correlated well with toxin deposition in the host plant. To determine the natural occurrence of the two toxins in banana plants with Fusarium wilt symptoms, samples were collected before harvest from the pseudostems, fruit and leaves from 10 Pisang Awak ‘Guangfen #1’ and 10 Cavendish ‘Brazilian’ plants. Fusaric acid and BEA were detected in all the tissues, including the fruits.

Conclusions/Signficance

The current study provides the first investigation of toxins produced by Foc in banana. The toxins produced by Foc, and their levels of contamination of banana fruits, however, were too low to be of concern to human and animal health. Rather, these toxins appear to contribute to the pathogenicity of the fungus during infection of banana plants.  相似文献   

18.
Plant Cell, Tissue and Organ Culture (PCTOC) - Fusarium wilt of banana, caused by Fusarium oxysporum f. sp. cubense (Foc), is one of the most destructive diseases of banana. Several experimental...  相似文献   

19.
尖孢镰孢菌古巴专化型(Fusarium oxysporum f.sp.cubense)是香蕉枯萎病的病原菌,该菌是一种土壤习居菌,了解香蕉根区土壤中真菌多样性及镰孢菌属(Fusarium)真菌所占比例,对如何减少土壤中的病原菌、预防香蕉枯萎病的发生有重要的指导意义。该文通过采集不同宿根年限的香蕉健康植株和枯萎病植株的根区土壤,利用高通量测序技术测定土壤样品中的真菌种群。结果表明:(1)同一宿根年限的香蕉植株中,健康植株根区土壤中所获的reads及OTUs数量均高于枯萎病植株,说明健康植株根区土壤的真菌多样性丰富于枯萎病植株。(2)除了一年生香蕉枯萎病植株以担子菌门(Basidiomycota)为主外,其他土壤样品中均以子囊菌门(Ascomycota)为主,其中的丛赤壳科最高相对丰度来自三年生健康植株的根区土壤(26.02%),其次是五年生的枯萎病植株根区土壤(15.56%)。(3)在丛赤壳科中,镰孢菌属在三年生健康植株土壤中的相对丰度最高(2.54%),在其他样品中的相对丰度在0.1%~0.65%之间;在镰孢菌属中,腐皮镰孢菌(Fusarium solani)的相对丰度(0~1.59%...  相似文献   

20.
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