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1.
18份广东香蕉种质对枯萎病的抗性评价   总被引:1,自引:0,他引:1  
【背景】香蕉枯萎病是世界性的香蕉毁灭性病害,尚无有效药剂防控,筛选抗病品种是目前理想的防治方法。【方法】采用组培苗伤根接种法,研究了18份香蕉种质对香蕉枯萎病菌4号生理小种的抗性水平,并根据病情指数进行抗性分级。【结果】在供试的18份香蕉种质中,2份(东莞大蕉、抗枯5号)高抗,2份(碧盛、大丰)抗病,3份(抗枯1号、粉杂、农科1号)中抗,7份(粤优抗1号、广东-741、泰国B9、大蕉、台湾8号、海贡蕉、威廉斯8818)感病,4份(巴西、广东2号、广粉1号、粉蕉)高感。【结论与意义】不同香蕉种质对香蕉枯萎病菌4号生理小种的抗病性存在较大差异,本研究初步筛选出7份抗枯萎病的香蕉种质,为香蕉枯萎病抗病育种提供了依据,为病区种植香蕉品种提供了有效参考。  相似文献   

2.
【目的】了解抗感品种香蕉植株中内生细菌与香蕉枯萎病间的关系,从而为香蕉枯萎病的发生与防控提供一定的理论基础。【方法】通过基于16S rRNA的末端标记限制性片段长度多态性技术(Terminal restriction fragment length polymorphism,T-RFLP)分析健康和感枯萎病香蕉植株不同品种各组织,以及香蕉植株不同发病时间根组织中内生细菌的多样性和群落结构。【结果】抗病品种\"农科一号\"植株根、假茎、叶片各组织中内生细菌的种类基本都比感病品种\"巴西蕉\"的相应组织中的要丰富。感枯萎病香蕉植株根、假茎、叶片各组织中内生细菌种类基本都比健康植株各组织的丰富。在植株发病前、发病初期、再到发病后一个月的不同时期,对于抗病品种而言,其内生细菌的多样性都基本保持稳定,而感病品种则变化幅度较大。同时发现不同品种不同组织的内生细菌的优势种群有所不同,且不同品种健康和发病植株都存在一些特有优势种群。【结论】香蕉抗病品种比感病品种植株中内生细菌的多样性更丰富且更稳定;感枯萎病植株中的内生细菌种类比健康的丰富;而且不同抗性品种中健康和感病植株内的优势种群存在明显差异。  相似文献   

3.
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   

4.
农杆菌介导的香蕉枯萎病菌4号生理小种转化体系的优化   总被引:3,自引:0,他引:3  
香蕉枯萎病是世界范围内香蕉种植区最为严重的病害之一,严重威胁和影响着香蕉产业的发展.本文针对香蕉枯萎病病原菌的4号生理小种,建立了农杆菌介导的转化体系,确定了影响转化效率主要因子的优化体系是:农杆菌在IM培养基诱导前农杆菌OD_(600)为0.15、农杆菌经IM液体培养基诱导的时间为7 h、乙酰丁香酮(AS)浓度为150 μmol/L、Focr4孢子浓度为1×10~6个/mL、共培养时间为48 h、培养温度为25℃、诱导培养基pH值为5.5.在此条件下,转化效率能达到700~800个转化子/10~6个香蕉枯萎病菌孢子.PCR验证表明外源的T-DNA已经成功随机地整合到该病原菌基因组中.目前,应用该转化体系已获得2 300多个转化子,为后续克隆相关致病基因打下了良好基础.  相似文献   

5.
[目的] 评价香蕉自主选育品种对枯萎病病原菌尖孢镰刀菌古巴专化型(Fusarium oxysporum f. sp. cubense)热带4号小种(tropical race 4, Foc TR4)的抗性。[方法] 以浸根法和2种灌注法将Foc TR4接种于不同抗性的香蕉品种上,分析接种后香蕉的发病情况,比较筛选这3种评价方法,并评价7个香蕉品种的苗期和田间抗性水平。[结果] 采用浓度为2×105 个·mL-1的PDB培养基Foc TR4孢子悬浮液灌注法进行香蕉苗期抗性评价更为高效可行;综合苗期和田间抗性评价结果,7个香蕉品种的抗性由高到低为:南天黄>红研3号>红研5号>红研2号>滇蕉1号>巴西蕉>红研1号。[结论] 以南天黄作为高抗品种对照,以巴西蕉作为高感品种对照条件下,红研3号和红研5号抗性为中等抗性偏强,红研2号达到中抗水平,滇蕉1号为感病,红研1号为高度感病。  相似文献   

6.
韭菜对香蕉枯萎病菌生长及香蕉枯萎病发生的抑制作用   总被引:3,自引:0,他引:3  
结合实验室抑菌试验和大棚人工接菌盆栽试验,研究韭菜对香蕉枯萎病菌4号生理小种(Foc4)的拮抗作用及其对香蕉枯萎病发生的防控效果.结果显示:离体条件下,韭菜粗提取液显著抑制Foc4菌丝的生长,造成菌丝变形、细胞的解体;也能显著抑制孢子的萌发并导致孢子失去活性.大棚盆栽试验中,韭菜处理的巴西香蕉苗枯萎病发病率降低70%,病情指数降低86.9%;韭菜处理的广粉1号粉蕉苗枯萎病的发病率降低76.7%,病情指数降低93.4%.研究表明,韭菜对Foc4有很高拮抗效果,而且对香蕉枯萎病有很高的防控作用.  相似文献   

7.
【背景】香蕉枯萎病菌4号生理小种(镰刀菌)是香蕉产业的致命威胁。已有研究表明土壤pH值越高,香蕉枯萎病发病率越低,但是现有pH值对镰刀菌影响的研究大都是用强酸强碱调节pH值,pH值没有缓冲体系保护,而且尚未检测试验终点时介质的pH值。此外,关于pH值对香蕉枯萎病菌4号生理小种(Foc4)影响的研究尚不系统,难以用于指导生产实践。【目的】为系统地了解土壤酸碱度对Foc4生长的影响。【方法】在pH 3.0-11.0之间设定9个pH值梯度,模拟酸性到碱性土壤pH值条件,于室内培养条件下系统研究pH值对Foc4生长、产孢、孢子萌发的影响及其生长过程对环境pH值的影响。【结果】弱酸性至中性环境(pH 5.0-7.0)最适宜于香蕉枯萎病菌的生长、产孢和孢子萌发。弱碱性处理(pH8.0和pH9.0)孢子平均萌发率较弱酸性环境处理(pH5.0和pH6.0)下降了73.1%。与pH 6.0酸性处理相比,pH 8.0和pH 9.0处理的产孢量分别下降了52.3%和68.1%。【结论】香蕉枯萎病菌Foc4生长和萌发过程会产酸,但是在缓冲体系液体培养基中,除了pH 9.0和pH10.0处理终点培养液pH值分别下降了0.34和0.27个单位外,其它处理起始和终点的pH值无差异。说明在缓冲体系液体培养基中的研究结果可以反映环境pH值对Foc4生长和萌发的影响。在作物可以生长的pH值范围内(pH5.0-9.0),碱性和微碱性条件(pH8.0-9.0)能明显抑制Foc4生长、产孢和孢子萌发。  相似文献   

8.
香蕉枯萎病主要由尖孢镰刀菌 4 号生理小种(Fusarium oxysporum f. sp. cubense,Foc4)引起的一种土传病害,严重威胁香蕉产业的可持续发展。为寻求一种经济有效且环保的防治措施,以韭菜化感物质的衍生物草莓酸(strawberry acid,SA)为材料,通过平板和盆栽实验,研究了SA对Foc4的菌丝生长、香蕉枯萎病病情指数、土壤微生物数量、土壤酶活性的影响。结果表明:(1)随着SA浓度的增加,Foc4的菌落生长直径显著减小,第5天时菌落直径在SA浓度为300、450 μL·L-1时比150 μL·L-1分别减小了49.15%、70.89%; 液体培养条件下SA浓度为600 μL·L-1时Foc4的分生孢子数量显著低于对照处理(相差 470 多倍); pH为5时SA对Foc4的抑制效果显著比pH为7和9时好。(2)随实验处理时间的延长,添加 SA后香蕉幼苗的病情指数显著低于对照。(3)土壤细菌、真菌数量和微生物总量在SA为600 μL·L-1时均为最高; Foc4数量随SA浓度升高而降低,在1 200 μL·L-1时显著降低。(4)各土壤酶在浓度(300~600 μL·L-1)SA处理时活性较高; 1 200 μL·L-1时显著降低,过氧化氢酶和多酚氧化酶较对照分别降低了41.88%、54.82%。(5)相关性分析得出,土壤微生物总量与细菌、真菌数量极显著正相关; 土壤真菌与放线菌显著负相关; 土壤细菌、真菌和放线菌数量均与蔗糖酶、多酚氧化酶显著正相关; 蔗糖酶与脲酶、过氧化氢酶与多酚氧化酶均显著正相关。综上认为,添加SA浓度为600 μL·L-1能较好地抑制Foc4的菌丝生长且能提高其抑制率,病情指数明显降低,有利于改善香蕉的生长环境。该研究结果为有效利用SA防治香蕉枯萎病提供了科学依据。  相似文献   

9.
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       下载免费PDF全文
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   

10.
枯萎病严重危害香蕉生产;可致香蕉大幅减产甚至绝收。该病害通过土传、种苗调运等途径进行传播扩散;其病原菌产生的厚垣孢子在土壤中存活的时间长达30年;防治非常困难;是政府、学术界和产业界高度关注的对象之一。为了攻克这一难题;国内外科研工作者及相关从业者进行了广泛而深入的研究。本文从香蕉枯萎病的发生与危害、植物根际微生态及其与土传病害的关系、香蕉根际微生态及其在枯萎病防治中的作用和贡献等方面进行综述;并对其研究趋势进行了展望;以期为后续香蕉根际微生态的深入研究、优良生防资源的挖掘与创新利用及香蕉枯萎病的有效防治提供参考。  相似文献   

11.
齐兴柱  刘磊  汪军 《微生物学报》2019,59(5):891-906
尖孢镰刀菌古巴专化型4号小种(Fusarium oxysporum f. sp. cubense race 4,Foc4)是香蕉枯萎病的强致病性病原菌。Foc4在侵染香蕉植株早期必须面对寄主的活性氧迸发。【目的】了解Foc4应对外源氧化胁迫的分子机制。【方法】利用Illumina 2500 RNA-Seq测序平台分析了经外源氧化胁迫(H_2O_2)处理的Foc4与对照在转录组水平的基因表达差异。【结果】在外源氧化胁迫条件下,Foc4的生长受到抑制。转录组测序获得了超过2千万条clean reads。进一步的差异基因表达分析以差异倍数FC (fold change)≥2且FDA值≤0.001为选择标准,发现496个基因表达上调,298个基因表达下调。GO功能富集分析显示,429个基因比对到GO功能分析数据库,在这些差异表达基因中,许多与代谢过程、生物调节、细胞过程和刺激应答有关。KEGG通路富集分析显示,有141个表达差异显著基因比对到KEGG中的50条代谢途径。其中,主要是各类氨基酸代谢途径、脂肪酸代谢途径。同时也包括与抗氧化胁迫直接相关的代谢途径,包括DNA的损伤修复、类胡萝卜素的生物合成、过氧化物酶体、谷胱甘肽代谢等。【结论】这些结果暗示,为了在强氧化胁迫环境下生存,Foc4细胞从包括直接应对氧化胁迫的信号调控途径在内的物质代谢和能量代谢均发生改变以应对环境变化的胁迫。  相似文献   

12.
Two hundred and forty-two actinomycete strains were isolated from the interior of leaves and roots of healthy and wilting banana plants. Most of them were streptomycetes, Streptomyces griseorubiginosus-like strains were the most frequently isolated strains. Community analysis demonstrated increased actinomycete diversity in wilting leaves compared to that in healthy leaves, similar actinomycete communities were found in wilting and healthy roots. Screening of the isolates for antagonistic activity against Fusarium oxysporumf. sp. cubenserevealed that the proportion of antagonistic streptomycetes in healthy roots was higher than that in wilting roots (P < 0.01), but no difference was found between antagonistic strains isolated from healthy and wilting leaves. The potential biological control of Panama disease of banana by endophytic streptomycetes, especially Streptomyces griseorubiginosus-like strains was discussed.  相似文献   

13.
Fusarium wilt is an economically important disease in carnation and tomato plants. The use of suppressive plant growth media has become an alternative method for plant disease control due to the lack of effective chemical control measures. Plant disease suppressiveness is sustained only in plant growth media with an adequate organic matter (OM) composition. Carbohydrate polymers are the most important sources of carbon nutrient for microbial community in these media, mainly consisting of cellulose and hemicellulose. This determines microbial activity, biomass and selects microbial communities in plant growth media, which are reported factors associated with Fusarium wilt suppressiveness.This work determined OM carbon functional groups using Single Pulse Magic Angle Spinning 13C-Nuclear Magnetic Resonance (SP-MAS 13C-NMR) in three plant growth media with different suppressiveness levels to Fusarium wilt in two crops, carnation and tomato. We propose that the critical role of OM to sustain naturally occurring suppressiveness in those media is not related with cellulose reserve. This could be explained because cellulose protected by lignin encrustation is not available to microbial degradation, meaning that cellulose availability is critical to sustenance of microorganism-mediated biological control. However, the hemicellulose relative abundance (peak 175 ppm) was associated to Fusarium wilt suppression level in plant growth media studied.Carbon source availability in OM was related to microbial biomass and econutritional group population densities involved in biocontrol. For these composts, Bacillus spp., oligotrophic and cellulolytic actinomycetes, and oligotrophic actinomycetes/oligotrophic bacteria and cellulolytic actinomycetes/cellulolytic bacteria ratios were indicated as microbial populations potentially involved in suppression.  相似文献   

14.
Summary The locus, I2, which in tomato confers resistance against Fusarium oxysporum f. sp. lycopersici race 2, was introgressed into Lycopersicon esculentum from the wild species L. pimpinellifolium (P.I. 126915). We searched for restriction fragment length polymorphisms (RFLPs) between nearly isogenic lines (NILs) in clones that map to the region introgressed from the wild species. Since I2 maps to chromosome 11, we used DNA clones from this chromosome as hybridization probes to Southern blots containing bound DNA of the NILs digested with 23 restriction enzymes. Of the 14 chromosome 11 clones, 9 exhibited polymorphism. These clones were further hybridized to verification filters that contained DNA from resistant and susceptible L. esculentum varieties digested with the enzymes that gave the polymorphism. One clone, TG105, was found to be associated with I2; 19 susceptible lines showed a different RFLP with this probe than 16 resistant lines, including the original L. pimpinellifolium accession used as a source for the resistance gene. These results together with our mapping analysis indicate that TG105 is closely linked to the resistance gene.  相似文献   

15.
The potential of the biological control fungus Penicillium oxalicum to suppress wilt caused by Fusarium oxysporum f. sp. melonis and F. oxysporum f. sp. niveum on melon and watermelon, respectively, was tested under different growth conditions. The area under disease progress curve of F. oxysporum f. sp. melonis infected melon plants was significantly reduced in growth chamber and field experiments. In glasshouse experiments, it was necessary to apply P. oxalicum and dazomet in order to reduce Fusarium wilt severity in melons caused by F. oxysporum f. sp. melonis. For watermelons, we found that P. oxalicum alone reduced the area under the disease progress curve by 58% in the growth chamber experiments and 54% in the glasshouse experiments. From these results, we suggested that P. oxalicum may be effective for the management of Fusarium wilt in melon and watermelon plants.  相似文献   

16.
Streptomyces sp. strain g10 exhibited strong antagonism towards Fusarium oxysporum f.sp. cubense (Foc) races 1, 2 and 4 in plate assays by producing extracellular antifungal metabolites. Treating the planting hole and roots of 4-week-old tissue-culture-derived Novaria banana plantlets with strain g10 suspension (108 cfu/ml), significantly (P<0.05) reduced wilt severity when the plantlets were inoculated with 104 spores/ml Foc race 4. The final disease severity index for leaf symptom (LSI) and rhizome discoloration (RDI) was reduced about 47 and 53%, respectively, in strain g10-treated plantlets compared to untreated plantlets. Reduction in disease incidence was not significant (P<0.05) when plantlets were inoculated with a higher concentration (106 spores/ml) of Foc race 4. Rhizosphere population of strain g10 showed significant (P=0.05) increase of more than 2-fold at the end of the 3rd week compared to the 2nd week after soil amendment with the antagonist. Although the level dropped, the rhizosphere population at the end of the 6th week was still nearly 2-fold higher than the level detected after 2 weeks. In contrast, the root-free population declined significantly (P=0.05), nearly 4-fold after 6 weeks when compared to the level detected after 2 weeks. Neither growth-inhibiting nor growth-stimulating effects were observed in plantlets grown in strain g10-amended soil.  相似文献   

17.
    
Plant products along with biocontrol agents were tested against Fusarium wilt of banana caused by Fusarium oxysporum f. sp. cubense (Foc). Of the 22 plant species tested, the leaf extract of Datura metel (10%) showed complete inhibition of the mycelial growth of Foc. Two botanical fungicides, Wanis 20 EC and Damet 50 EC along with selected PGPR strains with known biocontrol activity, Pseudomonas fluorescens 1, Pf1 and Bacillus subtilis, TRC 54 were tested individually and in combination for the management of Fusarium wilt under greenhouse and field conditions. Combined application of botanical formulation and biocontrol agents (Wanis 20 EC + Pf1 + TRC 54) reduced the wilt incidence significantly under greenhouse (64%) and field conditions (75%). Reduction in disease incidence was positively correlated with the induction of defense-related enzymes peroxidase (PO) and polyphenol oxidase (PPO). Three antifungal compounds (two glycosides and one ester) in D. metel were separated and identified using TLC, RP-HPLC (Reverse Phase-High Pressure Liquid Chromatography) and mass spectrometry. In this study it is clear that combined application of botanical formulations and biocontrol agents can be very effective in the management of Fusarium wilt of banana.  相似文献   

18.
香蕉枯萎病田间分布型及病原菌在植株上的分布   总被引:4,自引:0,他引:4       下载免费PDF全文
为探讨香蕉枯萎病大田病株及其体内尖孢镰刀菌(Fusarium oxyporum f.sp.cubense)的分布情况,首先对大田病株的发病情况进行调查,通过分布频次检验、聚集指标测定、Taylor幂法则、Iwao m*-m模型等对田间病株的空间分布型进行研究,在此基础上,检验聚集均数λ,分析其聚集原因。同时,在香蕉植株不同部位取样,检测病原菌在植株体内的分布情况。结果表明:香蕉枯萎病大田病株的理论分布符合聚集类型,各项聚集度指标均满足C1、I0、m*/m1、CA0、K0。大田病株的空间图式也趋于聚集分布,聚集程度随着种群密度升高而升高,病株间互相吸引,以病株群为单元在蕉地分布均匀,其相对聚集度随种群密度变化的速率为(11.0962+0.1752)m,密度越高,相对聚集度随密度变化速率越大。这种聚集分布是环境作用导致。建立最适理论抽样数模型后,根据一定置信水平下的允许误差值可估测相应发病情况时所配套的最适理论抽样数,且随着病情加重,配套抽样数随之减少。在进行序贯抽样时,假如累计病情等级高于判据上限即可视为防治蕉地,若累计病情等级低于判据下限可视为安全蕉地,如果累计病情等级在判据上限和下限之间,需增加抽样量,但可以理论抽样模型中的最大抽样量终止抽样。最适宜的抽样方法为棋盘式取样法和单、双对角线取样法。此外,枯萎病菌在香蕉植株体内的分布因样地发病程度和植株部位不同而有显著差异,植株球茎的平均含菌量显著高于其它部位。  相似文献   

19.
Effect of precolonization of banana cv Neeypovan roots with Pseudomonas fluorescens on infection with Fusarium oxysporum f.sp. cubense was studied. Under in vitro conditions Pseudomonas fluorescens clearly inhibited Fusarium oxysporum f.sp. cubense. Fluorescein isothiocyanate-tagged antibodies raised in a rabbit system for Pseudomonas fluorescens and Fusarium oxysporum f.sp. cubense separately were used to study the spread of both organisms in banana root. It was observed that precolonization with Pseudomonas fluorescens could reduce Fusarium oxysporum f.sp. cubense colonization by 72%, and also correlated with a number of structural changes in the cortical cells, mainly with densely stained amorphous material and polymorphic wall thickenings as revealed by light and electron microscopic studies. Massive depositions of unusual structures at sites of fungal entry was also noticed, which clearly indicated that bacterized root cells were signalled to mobilize a number of defence structures for preventing the spread of pathogen in the tissue. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

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