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1.
香蕉—水稻轮作联合添加有机物料防控香蕉枯萎病研究   总被引:5,自引:0,他引:5  
香蕉枯萎病是一种由尖孢镰刀菌引起的土传病害, 枯萎病的发生对香蕉产业造成严重的冲击本文针对香蕉枯萎病难以防控的难题, 采用水稻轮作同时添加有机物料(椰糠、稻秆和桉树皮)的方法, 研究了其对香蕉枯萎病高发病蕉园土壤中尖孢镰刀菌(FOC)和其他微生物数量的影响及其对香蕉枯萎病的防控效果。结果表明, 轮作水稻可以显著减少土壤中FOC的数量, 从而降低香蕉枯萎病的发病率。其中轮作水稻处理比未淹水未种植水稻处理FOC的数量下降了71.5%, 下茬香蕉枯萎病发病率降低了81.7%; 与未种植水稻但淹水的处理相比FOC数量下降了47.8%, 下茬香蕉枯萎病发病率降低了71.2%; 种植水稻同时添加水稻秸秆能够显著增强病原菌的杀灭效果和对下茬香蕉枯萎病的防控效果, 相比未添加物料轮作水稻处理, 尖孢镰刀菌数量下降了36.2%, 下茬香蕉枯萎病发病率降低了50.0%。同时, 水稻轮作同时添加有机物料处理及其下茬香蕉的种植, 对土壤中可培养细菌、真菌和放线菌数量均具有不同的影响。其中水稻种植期间不同处理的可培养真菌与放线菌数量随着时间的增加整体呈下降趋势, 而在种植香蕉后随时间的增加呈上升趋势; 土壤中可培养细菌的数量在水稻种植与香蕉种植期间随着时间的增加未呈现出规律性。结论:水稻轮作联合稻秆的添加能有效降低土壤中FOC的数量和下茬香蕉枯萎病的发病率。  相似文献   

2.
香蕉镰刀菌枯萎病是一种由尖孢镰刀菌古巴专化型Fusarium oxysporum f. sp. cubense侵染引起的维管束系统性病害。本试验对从海南省东方、八所、黄流、三亚和广东省湛江、徐闻、海安等香蕉种植地采集的根际土样进行拮抗放线菌的分离纯化,得到放线菌菌株139个。通过纸片扩散法,筛选出对香蕉枯萎病4号生理小种具有拮抗作用的菌株8个。进一步试验表明,其中4个菌株不仅对香蕉枯萎病生理小种4号的菌丝生长有良好稳定的抑制作用,且对另外14个不同专化型病原菌也有一定的抑制作用。另外,分别将这8株放线菌发酵上清液与香蕉枯萎病病原菌孢子悬浮液混合12h后,有6株放线菌发酵上清液对病原菌孢子萌发的抑制率超过85%。盆栽试验结果表明,2株放线菌对香蕉枯萎病防效达86%以上,极显著地高于恶霉灵药剂处理。  相似文献   

3.
一株对香蕉枯萎病菌具有良好拮抗作用的菊欧氏杆菌   总被引:1,自引:0,他引:1  
在香蕉枯萎病重病园区,从生长正常香蕉假茎内分离获得一株细菌E353菌株。经对峙培养、孢子萌发抑制测定,E353对香蕉枯萎病菌菌丝生长、孢子萌发具有良好抑制效果。盆栽试验表明,E353活菌培养液(750ml/株)浸根处理,对香蕉枯萎病的防效为60.67%。经形态学、生理生化和16S rDNA序列比对,将E353鉴定为菊欧氏杆菌Erwinia chrysanthemi。  相似文献   

4.
为研发用于防治香蕉枯萎病的维管组织导向杀菌剂,基于植物韧皮部“离子井”效应对非内吸杀菌剂咯菌腈进行弱酸化结构修饰,在蓖麻模型上完成韧皮部输导性筛选和机制验证,通过盆栽试验研究咯菌腈羧酸衍生物在香蕉植株上的输导分布,并测定衍生物对香蕉枯萎病的防效。结果表明:羧酸基团引入使咯菌腈衍生物在蓖麻幼苗上表现出韧皮部输导性,证明存在pH依赖的“离子井”效应机制;盆栽试验结果显示,衍生物1a在被叶片吸收后能向下传递到香蕉植株球茎和根部,并能够降解释放出咯菌腈,对香蕉枯萎病的防效为54.5%,显著高于咯菌腈原药处理组的防效6.5%。表明基于韧皮部“离子井”效应的结构修饰是香蕉维管组织导向杀菌剂研发的有效途径。  相似文献   

5.
从健康大豆根系内分离出一株对香蕉枯萎病病原菌Fusarium oxysporum f.sp.cubense Race 4(FOC Race4)有强拮抗效果的内生细菌AF11。盆栽防病试验结果表明其对香蕉枯萎病的防效达71.5%。形态特征、生理生化测定和16S rDNA序列及其系统发育树分析初步确定该菌株为解淀粉芽孢杆菌Bacillus amyloliquefaciens。从菌株AF11中筛选出抗利福平(100μg.mL-1)且对FOC Race 4拮抗活性稳定的变异菌株AF11Rif,采用灌根接种方法,研究菌株AF11Rif在香蕉体内定殖分布规律。试验结果表明,菌株AF11Rif能定殖于香蕉根部和茎部,接种50 d后根部定殖量为118 cfu.mg-1,茎部为32 cfu.mg-1。  相似文献   

6.
内生生防菌FJAT-346-PA是一株从香蕉植株体内分离的对香蕉枯萎病病原菌具有良好抑制作用的铜绿假单胞菌。为研究该生防菌在植株体内的定殖动态,采用逐步提高诱导浓度的方法,筛选获得稳定的双抗(抗利福平和卡那霉素,浓度均为300μg/mL)菌株FJAT-346-PA-K,跟踪分析了该菌株在香蕉组培苗、盆栽苗及大田植株体内的定殖情况,并调查该菌株对香蕉生长特性的影响和对香蕉枯萎病的防治效果。结果显示:香蕉植株根部和茎部均有该菌定殖,在盆栽苗和大田苗根部的最大定殖量分别为2.15×105CFU/g和8.00×103CFU/g;该生防菌对香蕉有明显的促长作用,显著提高香蕉的株高和叶片数量;对香蕉枯萎病具有较好的防治效果,盆栽防效和田间防效分别为83.67%和82.00%。  相似文献   

7.
生物农药对韭菜迟眼蕈蚊的毒杀作用及田间药效   总被引:1,自引:0,他引:1  
采用室内毒力测定与田间试验相结合的方法,研究了几种生物农药对韭菜迟眼蕈蚊(韭蛆)的防治效果.室内试验表明,4种生物农药对韭菜迟眼蕈蚊均有毒杀作用,24 h内1.5%天然除虫菊素的毒力显著高于对照化学农药48%毒死蟀,48 h后两者毒力无显著差异.田间试验表明1.5%天然除虫菊素、0.6%氧苦·内酯和1.8%阿维菌素与48%毒死蜱的药效差异不显著.初步表明前三者可用于韭菜迟眼蕈蚊的田间防治.  相似文献   

8.
为探索能高效、安全防控采后贮藏期苹果轮纹病的方法,采用室内生测法测定韭菜挥发物对苹果轮纹病菌Botryosphaeria dothidea菌丝生长的抑制作用及对采后苹果轮纹病的防控作用,并通过三重四极杆气质联用仪分析鉴定韭菜挥发物主要成分及其抑菌效应。结果表明,韭菜挥发物能显著抑制苹果轮纹病菌菌丝的生长,不同浓度挥发物的抑制率为85.57%~100.00%;韭菜挥发物能造成苹果轮纹病菌菌丝畸形。韭菜挥发物也能显著抑制采后苹果轮纹病的发生,其防控效果达53.42%~100.00%。韭菜挥发物的主要成分为有机硫化物,在离体情况下3种主要硫化物均能显著抑制苹果轮纹病菌菌丝的生长,500μL/L和250μL/L二甲基三硫醚、甲基烯丙基三硫醚、二烯丙基三硫醚在整个试验期间均能完全抑制苹果轮纹病菌菌丝的生长。其中二烯丙基三硫醚的抑制率最高,在62.5~500μL/L范围内其抑制率高达66.25%~100.00%。表明韭菜挥发物及其主要成分均能显著抑制苹果轮纹病菌的生长,这可能是韭菜防控苹果轮纹病发生的重要因素。  相似文献   

9.
为筛选抗枯萎病香蕉品种, 通过伤根、针刺及淋菌法接种香蕉枯萎病菌4号小种, 进行盆栽试验, 结果表明, 品种‘巴西蕉’和‘南天红’的病情指数较高, 分别达 42.5和 37.5, 为中感品种; 而品种‘南天青’和‘南天黄’病情指数仅为15, 为抗病品种; ‘农科一号’病情指数最低, 仅为7.5, 是5个品种中最抗病的, 为高抗品种。为筛选防治香蕉枯萎病的绿色药剂, 选用壳聚糖水剂、竹醋液、耕保泰对比络氨铜水剂对‘巴西蕉’进行盆栽药效试验, 结果表明, 耕保泰防治效果较好, 相对防效达78.57%; 20%竹醋液的防治效果最差, 仅为35.71%。  相似文献   

10.
香蕉枯萎病及其防治研究进展   总被引:24,自引:0,他引:24  
王振中 《植物检疫》2006,20(3):198-200,F0004
香蕉枯萎病(Fusarium oxysporum f.sp.cubense)是破坏香蕉维管束导致植株死亡的毁灭性病害。其病菌腐生能力很强,在土壤中可长期存活。香蕉枯萎病是典型的土传病害,侵染来源主要是带菌的吸芽、病株残体及带菌土壤。病菌从寄主根部伤口侵入寄主,通过寄主维管束向假茎上部及叶部蔓延。目前还没有一种理想的防治香蕉枯萎病的化学药剂,与水稻轮作是控制病害的最有效途径。半个世纪前,香蕉枯萎病菌1号小种几乎摧毁了世界的香蕉产业,现在则由于4号小种的蔓延,香蕉产业又面临新的挑战。对香蕉枯萎病菌4号小种实施检疫控制是防止枯萎病扩散的关键。  相似文献   

11.
Control of Fusarium wilt in banana with Chinese leek   总被引:3,自引:0,他引:3  
The inhibitory effects of Chinese leek (Allium tuberosum) on Fusarium oxysporum f. sp. cubense (Foc) and on Fusarium wilt incidence were studied in order to identify a potential efficient way to control the disease. Adopting the rotation system of Chinese leek-banana reduced the Fusarium wilt incidence and disease severity index by 88?C97?% and 91?C96?%, respectively, and improved the crop value by 36?C86?%, in an area heavily infested by Foc between 2007 and 2009. As a result of inoculation in the greenhouse, Chinese leek treatment reduced disease incidence and the disease severity index by 58?% and 62?%, respectively in the variety Baxi (AAA) and by 79?% and 81?%, respectively in the variety Guangfen NO.1 (ABB). Crude extracts of Chinese leek completely inhibited the growth of Foc race 4 on Petri dishes, suppressed the proliferation of the spores by 91?% and caused 87?% spore mortality. The findings of this study suggest that Chinese leek has the potential to inhibit Foc growth and Fusarium wilt incidence. This potential may be developed into an environmentally friendly treatment to control Fusarium wilt of banana.  相似文献   

12.
不同品种香蕉抗枯萎病效果及抗性生理研究   总被引:2,自引:0,他引:2  
通过盆栽试验研究了向土壤中接种尖孢镰刀菌古巴专化型4号生理小种(FocTR4)后不同抗枯萎病香蕉品种发病率、根际可培养微生物及防御酶活性的变化。结果表明:试验处理中香蕉枯萎病发病率随着FocTR4接种浓度的增加而上升,但在相同浓度处理下,抗病品种发病率显著低于感病品种;各品种香蕉发病率与根际土壤可培养镰刀菌数量均呈显著正相关关系。抗病品种过氧化物酶(POD)、几丁质酶和β-1,3-葡聚糖酶活性高于感病品种,而与多酚氧化酶(PPO)、苯丙氨酸解氨酶(PAL)活性存在一定的相关性。说明香蕉抗病性与香蕉根际土壤微生物群落结构及香蕉本身防御酶活性有关。  相似文献   

13.
香蕉枯萎病是目前香蕉产业面临的毁灭性病害,目前尚无特别有效的防治药剂.为发掘香蕉枯萎病的生防菌资源,本研究通过初筛和复筛获得两株对香蕉枯萎病菌具有较强拮抗活性的菌株Blz67和Blz02.依据形态学观察及生理生化测试结果,并结合16S rRNA和gyrA基因序列分析,将两株拮抗菌鉴定为贝莱斯芽胞杆菌Bacillus v...  相似文献   

14.
Global banana production is affected by Fusarium wilt, a devastating disease caused by the soilborne root-infecting fungus, Fusarium oxysporum f. sp. cubense (Foc). Fusarium wilt is notoriously difficult to manage because infection arises through complex below-ground interactions between Foc, the plant, and the soil microbiome in the root–soil interface, defined as the rhizosphere. Interactions in the rhizosphere play a pivotal role in processes associated with pathogen development and plant health. Modulation of these processes through manipulation and management of the banana rhizosphere provides an auspicious prospect for management of Fusarium wilt. Yet, a fundamental understanding of interactions in the banana rhizosphere is still lacking. The objective of this review is to discuss the state-of-the-art of the relatively scant data available on banana below-ground interactions in relation to Fusarium wilt and, as a result, to highlight key research gaps. Specifically, we seek to understand (a) the biology of Foc and its interaction with banana; (b) the ecology of Foc, including the role of root-exuded metabolites in rhizosphere interactions; and (c) soil management practices and how they modulate Fusarium wilt. A better understanding of molecular and ecological factors influencing banana below-ground interactions has implications for the development of targeted interventions in the management of Fusarium wilt through manipulation of the banana rhizosphere.  相似文献   

15.
The aim of this study was to evaluate the ability of nonpathogenic F. oxysporum and Trichoderma isolates from suppressive soils in South Africa to suppress fusarium wilt of banana in the glasshouse. Several biological control agents and commercial biological control products were included in the study. The isolates were first screened in vitro on potato dextrose agar. In glasshouse evaluations, the fungal and bacterial isolates were established on banana roots before they were replanted in pathogen-infested soil, while the commercial biocontrol agents were applied as directed by the supplier. Banana plantlets were evaluated for disease development after 7 weeks. In vitro tests showed none of the nonpathogenic isolates suppressed Fusarium oxysporum f.sp. cubense ( Foc ), while slight suppression was observed with the two Trichoderma isolates. Results of the glasshouse evaluations revealed that two of the nonpathogenic F. oxysporum isolates, CAV 255 and CAV 241, reduced fusarium wilt incidence by 87·4 and 75·0%, respectively. The known biological control agent Fo47 did not suppress Foc significantly. Pseudomonas fluorescens strain WCS 417, known for its ability to suppress other fusarium wilt diseases (WCS 417), reduced disease incidence by 87·4%. These isolates should be further evaluated for potential application in the field, independently and in combination.  相似文献   

16.
Fusarium oxysporum is a soil borne hyphomycete that causes vascular wilts in several crop plants. A variety of remedial measures such as the use of fungicides, soil amendments and biological antagonists have proved insufficient in controlling F. oxysporum. Ever since it was first reported in banana crop, the only effective control strategy known is planting of resistant cultivars. However, presumably due to the high mutation rates and rapid co-evolution with its host, Fusarium wilt has surmounted host defense barriers and has already begun infecting even the resistant Cavendish varieties that dominate export markets worldwide. Transgenic banana plants showing enhanced resistance to Fusarium wilt have been developed in recent past, but they remain largely confined to the laboratory. The importance of banana as source of food and income in developing countries world over and the need to develop Fusarium wilt tolerant cultivars by novel biotechnological approaches is detailed herein. In this communication, we review the biology and management of Fusarium wilt in banana with the aim of providing the baseline of information to encourage much needed research on integrated management of this destructive banana crop disease problem.  相似文献   

17.
以ITS测序与SCAR分子标记相结合的香蕉病原菌FOC4分子检测方法,利用通用引物ITS1和ITS4对病原菌SF001的rDNA中ITS序列进行PCR扩增,获得560bp左右的特异条带。经Blast分析比对,确定该菌为FOC。再利用FOC4的特异引物PCL/PDL对基因组上的特征序列扩增区域(SCAR)进行PCR扩增,获得677bp的特有序列,鉴定菌株SF001是尖孢镰刀菌古巴专化型4号生理小种。经过致病性测试,菌株SF001表现出典型4号生理小种的病理特征。  相似文献   

18.
 近年来,大蕉枯萎病在广东省东莞市发生严重,为了有效控制病害发生蔓延,生产上急需明确大蕉枯萎病的病原。本研究收集了我国华南地区的12株大蕉枯萎病病原菌及19株包括1号及4号生理小种的单孢菌株,以来源于澳大利亚的1号、2号、3号和亚热带4号生理小种以及4株非病原尖孢镰孢菌作对照,通过病原菌形态鉴定、致病性测定、4号小种(Foc 4)及热带4号小种(TR4)的分子特异检测、以及基于翻译延伸因子(TEF-1α)序列的系统发育分析,对大蕉枯萎病病原菌进行鉴定。同时,对我国华南地区不同来源的香蕉枯萎病病原菌的遗传发育关系及致病性分化情况进行了研究。结果表明:(1)引起大蕉枯萎病的病原菌主要是1号生理小种或者是与1号生理小种亲缘关系较近的一个新的系统发育谱系,该谱系可能为 1 号生理小种变异演化而来;(2)大蕉枯萎病病原菌对大蕉和粉蕉都有较强的致病力,但不能侵染香蕉;我国的1号小种存在一定的分化,其中有一个类群只能感染粉蕉,另一个类群既能感染粉蕉也能感染大蕉;(3)大蕉与粉蕉枯萎病的病原菌在致病性及遗传发育关系上都存在一定的交叉和分化。  相似文献   

19.
Pre-inoculation with the endobacterium Serratia marcescens (strain UPM39B3) induced the production of host defence enzymes such as peroxidase, polyphenoloxidase, phenylalanine ammonia lyase, total soluble phenols and lignothioglycolic acid in banana plantlets. The levels of these enzymes were evidently higher in plantlets pre-treated with the endobacterium compared to the control. The production of host-induced enzymes benefitted the crop plants as they may have a role in suppressing Fusarium wilt incidence in the plantlets. This was evident when plantlets pre-treated with the endobacterium showed a lower disease severity (50%) compared to diseased plantlets lacking the endobacterium (74%). The results of this study thus highlight the potential of the isolate Serratia marcescens (strain UPM 39B3) as a biological control agent for Fusarium wilt management in bananas, reducing disease severity via stimulation of host defences.  相似文献   

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