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1.
The endophytic fungus Fusarium oxysporum strain Fo162 and the endophytic bacterium Rhizobium etli strain G12 have been shown to enhance plant resistance toward the root-knot nematode Meloidogyne incognita. The individual inoculation of tomato seedlings with these antagonists lead to significant reductions in the number of juveniles that penetrated the root and ultimately the number of galls and egg-masses produced. The present study determined the influence of Fo162 and G12 root colonization on juvenile development inside the root system over time after a synchronized nematode infection. The results showed that 14 and 21 days after nematode inoculation, the development into the third-stage juvenile as well as into the adult-stage was significantly lower in endophyte-treated plants when compared to the untreated control, respectively. In addition, Fo162 and G12 treatment led to a significant reduction in the number of eggs per female 35 days after nematode inoculation. The results demonstrated that both Fo162 and G12 not only reduce M. incognita root penetration, but also reduce their development and reproduction.  相似文献   

2.
The effect of the host plant on the efficacy of Verticillium chlamydosporium as a biological control agent for root-knot nematodes was investigated in four experiments. The growth of the fungus in the rhizosphere differed significantly with different plant species, the brassicas kale and cabbage supporting the most extensive colonization. The presence of nematodes in roots increased the growth of the fungus on most plants, and this effect was associated with the emergence of egg masses on the root surface; the presence of Meloidogyne incognita did not stimulate growth of the fungus in the rhizosphere until 5 weeks after the addition of infective juveniles to soil. The susceptibility of the plant host to M. incognita attack influenced the numbers of nematode eggs parasitized by the fungus. The control of the nematode was less effective on tomato roots, which produced large galls as a result of nematode infection compared with control on potato roots where galls were smaller, despite the greater abundance of the fungus in the rhizosphere of tomato plants. In large galls, a significant proportion of the egg masses remained embedded in the roots and was isolated from the fungus which was confined to the rhizosphere. Hence, the plant species has a marked effect on the efficacy of V. chlamydosporium as a biological control agent.  相似文献   

3.
Pochonia chlamydosporia (Pc123) is a fungal parasite of nematode eggs which can colonize endophytically barley and tomato roots. In this paper we use culturing as well as quantitative PCR (qPCR) methods and a stable GFP transformant (Pc123gfp) to analyze the endophytic behavior of the fungus in tomato roots. We found no differences between virulence/root colonization of Pc123 and Pc123gfp on root-knot nematode Meloidogyne javanica eggs and tomato seedlings respectively. Confocal microscopy of Pc123gfp infecting M. javanica eggs revealed details of the process such as penetration hyphae in the egg shell or appressoria and associated post infection hyphae previously unseen. Pc123gfp colonization of tomato roots was low close to the root cap, but increased with the distance to form a patchy hyphal network. Pc123gfp colonized epidermal and cortex tomato root cells and induced plant defenses (papillae). qPCR unlike culturing revealed reduction in fungus root colonization (total and endophytic) with plant development. Pc123gfp was found by qPCR less rhizosphere competent than Pc123. Endophytic colonization by Pc123gfp promoted growth of both roots and shoots of tomato plants vs. uninoculated (control) plants. Tomato roots endophytically colonized by Pc123gfp and inoculated with M. javanica juveniles developed galls and egg masses which were colonized by the fungus. Our results suggest that endophytic colonization of tomato roots by P. chlamydosporia may be relevant for promoting plant growth and perhaps affect managing of root-knot nematode infestations.  相似文献   

4.
Arbuscular mycorrhizal (AM) fungi and non-pathogenic strains of soil-borne pathogens have been shown to control plant parasitic nematodes. As AM fungi and non-pathogenic fungi improve plant health by different mechanisms, combination of two such partners with complementary mechanisms might increase overall control efficacy and, therefore, provide an environmentally safe alternative to nematicide application. Experiments were conducted to study possible interactions between the AM fungus Glomus coronatum and the non-pathogenic Fusarium oxysporum strain Fo162 in the control of Meloidogyne incognita on tomato. Pre-inoculation of tomato plants with G. coronatum or Fo162 stimulated plant growth and reduced M. incognita infestation. Combined application of the AM fungus and Fo162 enhanced mycorrhization of tomato roots but did not increase overall nematode control or plant growth. A higher number of nematodes per gall was found for mycorrhizal than non-mycorrhizal plants. In synergisms between biocontrol agents, differences in their antagonistic mechanisms seem to be less important than their effects on different growth stages of the pathogen.  相似文献   

5.
An experiment was conducted to test the effect of different doses of 2, 4 and 8?g/2?kg of soil of Pochonia chlamydosporia against the root-knot nematode (Meloidogyne incognita) on Phaseolus vulgaris. It was observed that inoculation of plant with the nematode alone, and 15?days prior to fungal inoculation, reduced the plant growth when compared with the plant with fungal application followed by the nematode. Plant length, fresh and dry weight, chlorophyll, carotenoid, protein contents and nitrate reductase activity decreased in nematode-infested plants. Application of higher dose of 8?g/2?kg of soil of P. chlamydosporia increased all the plant growth parameters as well as biochemical parameters. Highest number of galls per root system was recorded on the plants infested with nematode but not treated with the fungus. However, application of fungus prior to nematode inoculation improved the plant growth and reduced the number of galls and the number of egg masses per root system.  相似文献   

6.
The root-knot nematode, Meloidogyne incognito (Kofoid et White) Chitwood is an important pathogen of vegetables. Five commercial cultivars of lettuce (Lactuca sativa L.) were evaluated under greenhouse conditions for resistance to Meloidogyne incognita, Benguet population. Plants were inoculated with 1000 eggs collected from 'Apollo' tomato (Lycopersicon esculentum) roots. The degree of galling and number of egg masses were assessed 4 and 8 weeks after inoculation. Host plant response was classified as immune, highly resistant, resistant, moderately resistant, intermediate, moderately susceptible, and highly susceptible based on the resistance index of Kouamè et at., 1998 [RI = (gall2 + egg2)]. Inoculation of 1000 eggs/plant significantly affected the growth and yield of the five lettuce cultivars 4 and 8 weeks after inoculation. A significant interaction was observed between treatment and cultivar during the two evaluation periods in terms of marketable and non-marketable yield, plant height, root weight, number of galls and number of egg masses. A reduction in growth and yield was observed in the cultivars Ballon, Lollo Rosa and Red Wave. Significant differences were noted in the number of galls and egg masses among the different cultivars tested. The highest average number of galls was obtained from the cultivars Red Wave, Ballon and Lollo Rosa. Cultivar Ballon had the highest average number of recovered nematode while Gilaben had the lowest with 15 and 4 per roots, respectively after 4 weeks inoculation. After 8 weeks, nematode was highest in cultivar Red Wave (615) and lowest in Great Lakes (70). Based on the host response, cultivars Great Lakes and Gilaben were rated highly resistant and resistant, respectively, while Red Wave, Ballon and Lollo Rosa were rated intermediate.  相似文献   

7.
作为世界性分布的镰刀属常见病原真菌,尖孢镰刀菌(Fusarium oxysporum)和木贼镰刀菌(F. equiseti)对包括经济作物及药用植物等的生长均有较大危害。利用源自于植物根际土壤的有益微生物防控尖孢镰刀菌和木贼镰刀菌引起的真菌性病害,是目前较为理想的植物病害管理策略。为获得可有效抑制尖孢镰刀菌和木贼镰刀菌的生防菌源,于防风根际土壤中分离纯化真菌104株,基于平板对峙法筛选获得1株对尖孢镰刀菌和木贼镰刀菌具有显著抑制效果的菌株MR-43,结合形态特征、ITS序列分析,将其确定为Sirastachys castanedae(GenBank登录号:OK287148.1),隶属于Sirastachys组进化分支,发现其可宿生于植物根际土壤。基于盆栽试验法,探究MR-43在防风栽培土壤中的定殖能力,评价MR-43对由尖孢镰刀菌引起的防风枯萎病和由木贼镰刀菌引起的防风根腐病的防病能力,及其对防风植株的促生能力。结果显示,Sirastachys castanedae MR-43对尖孢镰刀菌、木贼镰刀菌的抑菌率为57%以上,且经多次验证抑菌效果稳定;菌株MR-43可稳定定殖于防风栽培土壤并实现有效扩繁;菌株MR-43的孢子悬液可有效控制防风枯萎病和防风根腐病,平均防效达68.52%,与多菌灵、代森锰锌的防病效果无显著性差异(P>0.05);此外,MR-43对防风植株生长具有明显促进作用。因此,Sirastachys castanedae MR-43在防风枯萎病、根腐病等真菌性病害管理方面具有较好的开发价值及应用潜力。  相似文献   

8.
Strains of non-pathogenic Fusarium oxysporum and Pseudomonas fluorescens are effective biocontrol agents against Fusarium diseases. Use of strain Fo47 of F. oxysporum in combination with strain C7 of P. fluorescens improves disease control in comparison to application of Fo47 alone. To develop a product based on a combination of these two strains, it would be beneficial to produce and formulate both organisms together. When an irradiated peat was inoculated with these strains either alone or in combination, they grew actively and reached similar maximum population densities irrespective of the initial inoculum concentration (1×103 and 1×106 g-1 of peat) and mode of inoculation. These populations survived well with only a slight decrease in population densities after 11 months storage at 25°C. A bioassay was performed to evaluate peat and microbial suspension inocula of C7 and Fo47 alone or in combination against the flax pathogen, F. oxysporum f. sp. lini. Biocontrol activity of the peat-produced inocula was as effective as the suspensions. There was no dose-response relationship for C7, and when C7 was used as a mixed inoculum with Fo47, the biocontrol activity was always greater than that provided by Fo47 alone. This process could be used to produce an effective mixed inoculum with a shelf life of one year or more.  相似文献   

9.
Xia  Yanfei  Li  Shen  Liu  Xueting  Zhang  Chong  Xu  Jianqiang  Chen  Yingwu 《Annals of microbiology》2019,69(12):1227-1233
Purpose

Determination of the nematicidal potential and mode of action of bacteria isolated from tobacco rhizosphere soil against the root-knot nematode Meloidogyne javanica in tomato plants.

Methods

Antagonistic bacteria were isolated from rhizosphere soil of tobacco infested with root-knot nematodes. Culture filtrate was used to examine nematicidal activity and ovicidal action of bacterial strains. Biocontrol of M. javanica and growth of treated tomato plants were assessed in pot experiments. To clarify whether secondary metabolites of bacteria in tomato roots induced systemic resistance to M. javanica, bacterial culture supernatants and second-stage juvenile nematodes were applied to spatially separated tomato roots using a split-root system. Bacterial strains were identified by 16S rDNA and gyrB gene sequencing and phylogenetic analysis.

Results

Of the 15 bacterial strains isolated, four (LYSX1, LYSX2, LYSX3, and LYSX4) demonstrated nematicidal activity against second-stage juveniles of M. javanica, and strain LYSX1 showed the greatest antagonistic activity; there was dose-dependent variability in nematicidal activity and inhibition of egg mass hatching by strain LYSX1. In vivo application of LYSX1 to tomato seedlings decreased the number of egg masses and galls and increased the root and shoot fresh weight. Treatment of half of the split-root system with LYSX1 reduced nematode penetration to the other half by 41.64%. Strain LYSX1 was identified as Bacillus halotolerans.

Conclusion

Bacillus halotolerans LYSX1 is a potential microbe for the sustainable biocontrol of root-knot nematodes through induced systemic resistance in tomato.

  相似文献   

10.
A fungal parasite was isolated from black - coloured egg masses of Meloidogyne javanica on tomato roots . The fungus did not sporulate on any of the culture media tested or in the egg mass . Hyphal characteristics suggest that it is similar to the hyphomycete genus Scytalidium. Hyphae of the Scytalidium- like fungus (CBS 645 . 97 and IMI 368886) proliferated in the gelatinous matrix of the egg mass and penetrated the eggshell via a penetration peg . Parasitism of the egg mass greatly lowered the hatch rate of M. javanica juveniles in vitro. Application of the fungus to soil did not inhibit juvenile penetration into tomato roots . However , the nematode population in soil treated with the fungus was lower than in non - treated soil after one nematode generation . The exact identification of the Scytalidium like fungus , technology for mass production and its application in the field for control of root - knot nematodes requires further investigation .  相似文献   

11.
以苦瓜枯萎病菌为靶标菌,通过对峙培养试验和发酵滤液抑菌试验对分离自苦瓜根际土壤的放线菌进行筛选。候选菌株0250具有广谱抗真菌活性,根据培养特征、生理生化特性以及与同源性相近的菌株进行平均核苷酸一致性分析,被鉴定为Streptomyces rhizosphaericus,并评估了该菌株在温室和田间对苦瓜的促生长和防治枯萎病效果。结果表明: 链霉菌菌株0250对苦瓜枯萎病菌的平板抑制率为69.2%,对17种植物病原真菌的平板抑制率达64.3%~85.6%;该菌株的菌悬液处理能促进盆栽和田间苦瓜植株根、茎生长发育,提升产量,对苦瓜枯萎病的防病效果分别为66.9%和61.5%。预先用菌株0250菌悬液处理土壤再接种病原菌,对土壤尖镰孢菌数量抑制率达62.1%,显著提高了苦瓜幼苗苯丙氨酸解氨酶、过氧化物酶和β-1,3-葡聚糖酶活性以及根系活力。总之,菌株0250是一株对苦瓜枯萎病具有巨大生防潜力的放线菌资源。  相似文献   

12.
The production of fusaric acid and other toxins by a strain of Fusarium oxysporum used for control of the weed Striga hermonthica (Del.) Benth. was investigated. Culturing of the strain under optimal conditions for toxin production produced small amounts of fusaric acid and dehydrofusaric acid but no other toxins reported to be produced by some strains of F. oxysporum. Culturing of the fungus under conditions similar to those that would be used in the field produced no detectable toxins of concern for human health.  相似文献   

13.
晋治波  解玲  王幼珊  孔宇  刘芳  朱正杰 《菌物学报》2021,40(5):1087-1098
根结线虫病是番茄主要的土传病害,特别是保护地长期种植会加重病害的发生.接种丛枝菌根真菌(arbuscular mycorrhizal fungi,AMF)能提高植物抗根结线虫的能力,促进植株生长发育,减轻病害.本试验旨在评价常用基质配合施用一种生物有机肥对番茄苗生长和菌根定殖的影响,以获得菌根发育良好且生长健壮的菌根苗...  相似文献   

14.
The influence of solutions of ascorbic acid, thiamine, L-arginine, and L-gtutamic acid on egg hatch, juvenile survival, and development and reproduction of Meloidogyne incognita in susceptible and resistant tomatoes was studied. Maximum inhibition of egg hatch occurred at 2,000, 4,000, and 2,000 ppm for ascorbic acid, L-arginine, and L-glutamic acid, respectively. Larval survival was significantly reduced by concentrations of 2,000 ppm ascorbic acid and 1,000 ppm of L-arginine. Maximum inhibition of egg hatch and mortality of juveniles was achieved at a concentration of 4,000 ppm of ascorbic acid and L-arginine. L-glutamic acid and thiamine had respective moderate and minimal toxic effects. Foliar sprays of ascorbic acid, L-arginine, or L-glutamic acid suppressed the numbers of root galls, females, and egg masses on the susceptible tomato cultivar Tropic. Ascorbic acid and L-arginine had highly significant effects when applied to foliage before inoculation with nematodes. Thiamine had little effect. All sprays suppressed the numbers of root galls and females in roots of the resistant cultivar VFN8 when treatments were applied before inoculation. They were not, however, effective as post-inoculation treatments. Growth of a susceptible cultivar was improved by post-inoculation and pre-inoculation treatments when compared with the control plants which had neither nematode infection nor chemical treatment. No positive growth response to chemical treatment was seen in resistant control plants.  相似文献   

15.
The interactions of Paecilomyces lilacinus strain 251 with the arbuscular mycorrhizal fungus Glomus intraradices and their significance for the control of Meloidogyne incognita on tomato were investigated in greenhouse experiments. Application of P. lilacinus had no effect on the frequency and intensity of tomato root colonization by G. intraradices. Likewise, the decline of the nematophagous fungus densities after single application in soil was not affected by the presence of the mycorrhizal fungus. Single application of P. lilacinus, as pre-planting soil treatment, resulted in significant reduction of nematode damage. In contrast, mycorrhizal inoculation did not provide sufficient biocontrol. Combined application of the two agents did not enhance root protection compared to single treatments. Double treatment of mycorrhized seedlings with P. lilacinus, as seedling drench and pre-planting soil treatment, 4 and 1 week before transplanting, respectively, resulted in the highest reduction of the nematode damage. These results indicate the potential of the commercial P. lilacinus strain 251 and mycorrhiza for integration in nematode control strategies.  相似文献   

16.
绿色荧光蛋白标记下镰刀菌侵染地黄的组织学观察   总被引:1,自引:0,他引:1  
为分析对地黄有较强致病性的尖孢镰刀菌的侵染机制,本研究采用携带有潮霉素抗性标记的强组成型表达载体pCT74,经PEG-CaCl2介导的原生质体转化法导入镰刀菌,获得荧光信号强烈的sGFP标记菌株,并采用喷施接种和根部灌根接种。研究发现镰刀菌首先在地黄外部聚集繁殖,并通过伤口或气孔等通道侵入地黄维管组织,后逐渐导致周围海绵组织破裂,进而致使地下根茎逐渐变黑腐烂;由于地黄叶部气孔发达,使得镰刀菌由叶部侵入速度要快于根部灌根接种;不同孢子浓度接种实验表明镰刀菌对寄主的致害程度与其在叶部与根部的接种浓度并不呈相关性。进一步在接种处理后采集地黄叶部、茎部和根部组织提取真菌DNA后进行PCR扩增发现:在根部接种60h后即能检测到镰刀菌的侵入,经84h后侵入到地黄茎部组织,经96h后侵入到地黄叶部组织。该标记菌株可为今后探索地黄连作栽培中真菌病害大规模爆发的根际生物学过程提供研究材料。  相似文献   

17.
以苹果连作障碍病原真菌层出镰刀菌、串珠镰刀菌、尖孢镰刀菌和腐皮镰刀菌为靶标菌,通过平板对峙法对分离自苹果根际土壤的细菌进行反复筛选比较,对筛选出的拮抗效果最优的菌株进行形态学、生理生化特征和16S rDNA序列分析鉴定,并于盆栽条件下探讨其菌肥对平邑甜茶幼苗生长及连作土壤环境的影响.结果表明: 菌株B6对上述4种病原真菌的抑菌率最高,分别达到71.8%、70.1%、72.6%、91.5%.经鉴定,菌株B6为甲基营养型芽孢杆菌.盆栽试验表明,与连作处理(CK1)相比,B6菌肥处理(T)可以不同程度地促进平邑甜茶幼苗生物量的增加,其中地径、鲜质量和干质量分别显著增加18.3%、51.2%;显著提高连作土壤中可培养细菌和放线菌数量,使真菌数量下降为连作土壤的37.7%,促使土壤类型向细菌型转化;显著提高连作土壤中的蔗糖酶、磷酸酶、脲酶和过氧化氢酶的活性,增长率分别为37.3%、24.0%、42.9%、49.4%.表明B6菌肥可以优化苹果连作障碍土壤中可培养微生物群落结构,提高土壤酶活性,增加平邑甜茶幼苗生物量.  相似文献   

18.
Six amino acids viz. DL-methionine, DL-valine, DL-serine, DL-phenylalanine, L-proline and L-histidine were tested against root knot of tomato caused by Meloidogyne javanica. All amino acids showed significant response in plant growth characters with corresponding reduction in the number of galls, adult females, egg masses and juvenile stages within the treated plants. DL-phenylalanine gave significantly higher response in reducing the hatch of egg masses and survival of juveniles in in vitro test compared to control. The highest plant growth and maximum reduction of galling incidence of tomato were recorded in the DL-phenylalanine- treated plants followed by L-proline and L-histidine. All the amino acids gave positive response in suppressing the development of the nematode in the treated plants.  相似文献   

19.
Three isolates of Verticillium leptobactrum proceeding from egg masses of root-knot nematodes (RKN) Meloidogyne spp. and soil samples collected in Tunisia were evaluated against second-stage juveniles (J2) and eggs of M. incognita, to determine the fungus biocontrol potential. In vitro tests showed that V. leptobactrum is an efficient nematode parasite. The fungus also colonized egg masses and parasitized hatching J2. In a greenhouse assay with tomato plants parasitized by M. incognita and M. javanica, V. leptobactrum was compared with isolates of Pochonia chlamydosporia and Monacrosporium sp., introducing the propagules into nematode-free or naturally infested soils. The V. leptobactrum isolates were active in RKN biocontrol, improving plants growth with a significant increase of tomato roots length, lower J2 numbers in soil or egg masses, as well as higher egg mortalities. In a second assay with M. javanica, treatments with three V. leptobactrum isolates reduced egg masses on roots as well as the density of J2 and the number of galls. To evaluate the fungus capability to colonize egg masses a nested Real-time polymerase chain reaction (PCR) assay, based on a molecular beacon probe was used to assess its presence. The probe was designed on a V. leptobactrum ITS region, previously sequenced. This method allowed detection of V. leptobactrum from egg masses, allowing quantitative DNA and fungal biomass estimations.  相似文献   

20.
Due to the recent environmental concerns, increasing amounts of research have been diverted to investigating natural products for the control of nematodes. dl-β-Amino butyric acid (BABA) could play a part in limiting nematode damage to plants. In this study, different concentrations of BABA were used as soil drench and seed treatment to determine if they can control Meloidogyne javanica on tomato. In an in vitro test, BABA did not impair mobility of second-stage juveniles of the nematode but 10 and 25 mg/l concentrations reduced hatch. Both of the application methods tested (drenching soil and/or pre-treating seeds with 25 mg/l of BABA) for the treatment of nematode infested tomato plants reduced the numbers of galls and egg masses by 82 %; nematode reproduction rates on these plants were reduced to one and, compared with untreated control plants, final nematode density was decreased by nearly 87 %. Increasing BABA concentrations of the treatment solutions to 200 and 500 mg/l resulted in further reduction in nematode damage and reproduction on treated plants, although the differences between the concentrations were not significant. Compared with untreated tomato, gall and egg mass production were decreased by an average of 92 %, and reproduction rates were held below one by both the 200- and 500-mg/l BABA rates. When seeds pretreated with 25 mg/l were also soil drenched with three BABA concentrations, the effects were slightly greater than when each method was used alone. Treated plants showed slight improvement in growth and weight.  相似文献   

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