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1.
采用常规微生物分离和植物生物量测定等方法,将木霉菌REMI变异菌株的孢子进行种子接菌、土壤接菌、水中接菌,研究木霉菌REMI变异菌株对农作物甜瓜和玉米及杂草等生长性状、甜瓜根际土壤微生物和鱼苗生长以及在水中存活等的影响,检测其生物安全性。结果表明,除Ttrm53外,其余木霉菌变异株和出发菌株T21对甜瓜和玉米种子安全,并且能够显著提高种子的出苗率、增加须根数和促进幼苗生长;部分变异菌株对杂草具有抑制作用;供试木霉菌变异株对甜瓜根际土壤真菌有抑制作用,对细菌和放线菌群体数量无显著影响;木霉菌孢子在河水及自来水中均不能萌发,分生孢子在水中存活约12~18天,厚垣孢子约18~27天,菌体自行消解;对鱼苗生长没有不良影响。  相似文献   

2.
常用土壤杀菌剂和肥料对绿色木霉菌T23的影响   总被引:2,自引:2,他引:0  
采用常规土壤微生物分离和真菌生物量测定等方法,检测6种常用土壤杀菌剂多菌灵、甲基托布津、福美双、代森锰锌、百菌清和五氯硝基苯;3种肥料尿素、过磷酸钙和硫酸钾;以及8种营养元素铜、锌、铁、钼、钙、锰、镁和钾对绿色木霉菌菌株T23菌丝生长、产孢及其在土壤中定殖的影响.不同杀菌剂、肥料和营养元素及其不同处理浓度处理对木霉菌株T23菌丝生长、产孢和定殖的影响差异显著,多菌灵和甲基托布津、尿素、硫酸锌和硫酸镁具有明显的抑制作用,20μg/mL多菌灵、甲基托布津原药对菌株123菌丝生长抑制率分别为100.0%和79.0%;0.23%尿素处理土壤21天后对根际定殖抑制率为35.6%;100mg/L硫酸锌和1000mg/L硫酸镁处理土壤21天后对木霉菌定殖的抑制率分别为31.1%和15.9%.适量应用代森锰锌、硫酸钾及二钼酸铵、硫酸钙、磷酸二氢钾等有利于木霉菌根际定殖.  相似文献   

3.
营养元素对木霉菌防治甜瓜枯萎病效果的影响   总被引:13,自引:1,他引:13  
为明确各种营养元素在木霉菌防治甜瓜枯萎病生防体系中的作用,研究了9种营养元素铜、锌、铁、硼、钼、钙、锰、镁及钾对甜瓜枯萎病菌菌丝生长、木霉菌T23菌丝生长及产孢量、甜瓜种子萌发及根系生长的影响.结果表明:10~1000μg/mL的硫酸铜、硫酸锌、硫酸亚铁及硼酸对镰孢菌菌丝生长有较强的抑制作用,而对木霉菌的抑制作用远小于镰孢菌.适量加入钼酸铵、硫酸亚铁、硫酸钙及磷酸二氢钾有利于木霉菌菌丝生长及孢子形成,对甜瓜种子萌发及胚根生长也有较强的刺激作用.木霉菌结合钼酸铵、硫酸锰和硫酸钙处理土壤能显著降低甜瓜枯萎病的病情指数,相对防效分别为73.95%、73.77%和71.36%.  相似文献   

4.
为明确棘孢木霉Trichoderma asperellum菌肥在防治黄瓜枯萎病的同时对连作黄瓜根际土壤微生物种群的影响,采用实时荧光定量PCR(real-time fluorescence quantitative PCR,RT-qPCR)和磷脂脂肪酸(phospholipid fatty acid,PLFA)分析方法分别测定了棘孢木霉菌肥对连作4年的黄瓜根际棘孢木霉菌和尖孢镰孢菌Fusarium oxysporum DNA拷贝数变化和黄瓜根际微生物种群的影响。结果表明:棘孢木霉菌肥对黄瓜幼苗期和速长期黄瓜枯萎病的防治效果分别为70.24%和76.81%,均与药剂对照的防效差异不显著。棘孢木霉菌的DNA拷贝数出现2个高峰期,即黄瓜苗期和盛果期,其DNA拷贝数分别为235 000.00 ng/μL和80 500.00 ng/μL。黄瓜速长期、盛果期、生长末期的尖孢镰孢菌DNA拷贝数分别为15.41、54.87和18.36 ng/μL,且显著低于同一时期药剂对照和清水对照。黄瓜幼苗期、速长期、开花期和盛果期根际土壤微生物丰度分别为2.24、1.98、2.52和2.12,均高于药剂对照。由此可见,棘孢木霉菌肥在防治黄瓜枯萎病的同时,还可以改善黄瓜连作土壤微生物种群结构。  相似文献   

5.
为快速准确检测棘孢木霉Trichoderma asperellum在土壤中的定殖量,构建了荧光定量PCR检测体系,并运用该体系对防治黄瓜枯萎病后土壤中的棘孢木霉数量进行了检测。结果表明:所建立的荧光定量PCR检测体系对棘孢木霉DNA特异性强,R~2为0.998,检测限点为15 fg/μL;在灭菌土壤中检测到的棘孢木霉DNA的拷贝数大于1 866 fg/μL时,对黄瓜枯萎病的防治效果高于64.29%;在黄瓜整个生育期内,检测到土壤中的棘孢木霉定殖量呈现先降后升的变化趋势,第7天时,棘孢木霉DNA拷贝数为320 ng/μL,56 d后棘孢木霉DNA拷贝数迅速上升,最高可达5.16×10~4ng/μL,且对黄瓜枯萎病的防治效果为64.29%~76.81%。研究表明,荧光定量PCR方法检测土壤中棘孢木霉数量具有快速、灵敏度高、可靠性强等优点,可用于检测生防菌棘孢木霉施用后的定殖量和生防效果。  相似文献   

6.
试验以栽培香菇剩余的菌糠为原料,采用室内抑菌试验和盆栽试验相结合的方法探讨了香菇菌糠对绿色木霉防治黄瓜枯萎病的增效作用。菌糠提取液对绿色木霉菌丝生长和孢子萌发表现促进作用,促进率分别为18.20%和9.82%;对黄瓜枯萎病菌菌丝生长和孢子萌发表现抑制作用,抑制率分别为11.85%和87.78%。香菇菌糠与木霉混合使用对黄瓜枯萎病的防效达70.26%,黄瓜的地上部分鲜重和根重分别增加了65.06%和58.10%。与单用木霉相比,加入香菇菌糠后绿色木霉在土体土、根际土和根系中定殖数量分别提高了251.39%、208.21%和104.76%,黄瓜枯萎病菌数量分别减少了56.98%、77.72%和76.83%。  相似文献   

7.
枯草芽胞杆菌XF-1的根围定殖能力分析   总被引:6,自引:3,他引:3  
采用抗生素标记菌株与盆栽试验研究了对大白菜根肿病具有良好防治效果的枯草芽胞杆菌XF-1的定殖动态及影响其定殖的因素,以便了解该菌株的生防机制及其商品化应用前景。结果表明,XF-1的定殖能力较强,能在大白菜根围、根表和根内长时间定殖,接种60天后,根围和根表定殖密度仍能稳定在103CFU/g土壤,根内定殖密度也仍稳定在102CFU/g根(鲜重)水平,根围和根表定殖趋势为先下降后上升再下降,最后趋于稳定;根内定殖动态则呈先上升后下降的趋势。XF-1在根部组织内的皮层薄壁细胞和导管内均有分布。定殖受土壤质量影响,灭菌土中定殖能力最强;施入菌液浓度越高,定殖菌体数越多;在16℃光照培养箱中28天后,定殖仍可达到105CFU/g土壤;施入马铃薯汁蔗糖液体培养基(PS)发酵的菌液后,XF-1在根围中的定殖量大于施入马铃薯汁葡萄糖液体培养基(PD)发酵的菌液。XF-1还能很好地在玉米根围定殖。  相似文献   

8.
防治甜瓜枯萎病木霉菌REMI变异株筛选   总被引:2,自引:0,他引:2  
采用平皿对峙培养的方法从本实验室构建的22株木霉菌REMI变异株及出发菌株T21中筛选出5株抑制率较高的木霉菌变异株,并进行了防治甜瓜枯萎病盆栽试验,最终筛选出2株防治效果较好的木霉菌变异株Ttrm42和Ttrm26,防效分别达到78.66%和74.67%。然后进行田间防效测定,防效分别达到78.05%和73.04%。研究结果表明,木霉菌REMI变异株可以提高对甜瓜枯萎病的防效。  相似文献   

9.
PG1和PG6微生物在小麦根际的定殖对植物生长的影响   总被引:1,自引:0,他引:1  
将对植物生长有促进作用的二个菌群PG1和PG6进行分离纯化,首先考察其中的单菌株生态学特性,然后在无菌条件下考察PG1和PG6菌群在沙-土试管中在小麦根际的定殖能力,并对根段显微观测以确定其定殖方式和密度及对小麦根形态的影响。同时对PG1和PG6微生物抗药标记,考察其温室条件下在土壤中的存活能力及对小麦根际土著细菌数量的影响。  相似文献   

10.
荧光假单胞菌CZ菌株定殖及抗病毒活性研究   总被引:2,自引:0,他引:2  
荧光假单胞菌Pseudomonas fluorescens CZ能分泌包括碱性磷酸酶在内的抗病毒蛋白抑制烟草花叶病毒Tobacco mosaic virus(TMV)侵染?本文利用抗生素利福平逐级诱导获得抗药性标记菌株CZ-rif, 生测试验显示:野生型和抗药型菌株的发酵上清和粗蛋白液对TMV的体外钝化效果均大于90%, 无显著差异?灭菌和非灭菌的根际土拌CZ-rif菌液后盆栽烟苗, 取根际土在含抗生素的平板上检测定殖菌量, 结果显示, CZ-rif能够在烟株根际土壤中有效定殖, 第31天在灭菌土中的定殖菌量为4.3×104 cfu/g, 显著大于在非灭菌土中的定殖菌量6×103 cfu/g, 在叶面上的定殖菌量显著低于根际土壤?叶面喷施CZ-rif菌液后24 h接种病毒, 对TMV-GFP的预防效果为45.85%?田间试验中喷淋菌株发酵稀释液, 对烟草花叶病毒病的防效为42.02%?此外, 水培试验显示生防菌发酵液对烟草幼苗具有促生作用?总之, 荧光假单胞菌CZ能在烟草根际定殖和促进植株生长, 叶面喷施能钝化TMV并抑制其初侵染, 可以研发防治病毒病害的生物制剂?  相似文献   

11.
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   

12.
采用前期筛选出的对黄瓜枯萎病菌有较好拮抗作用的3株木霉菌,即哈茨木霉菌(Trichoderma harzianum)809、拟康氏木霉菌(Trichoderma pseudokoningii)886和棘孢木霉菌(Trichoderma asperellum)525,利用盆栽试验,测定了木霉菌分生孢子和厚垣孢子对黄瓜幼苗抗氧化能力及对枯萎病防效的影响。结果显示:3株木霉菌分生孢子和厚垣孢子对黄瓜枯萎病的盆栽防效均在66.81%以上,且以拟康氏木霉菌886厚垣孢子防效最高,达到81.46%;当黄瓜幼苗长至三叶一心时,与CK(即只接种病原菌)相比,经哈茨木霉菌809、拟康氏木霉菌886、棘孢木霉菌525分生孢子以及厚垣孢子处理后,黄瓜幼苗叶片相对电导率和丙二醛(MDA)含量均呈下降趋势,而保护性酶包括过氧化物酶(POD)、过氧化氢酶(CAT)、抗坏血酸过氧化物酶(APX)、超氧化物歧化酶(SOD)活性则呈上升趋势,其中以拟康氏木霉菌886厚垣孢子的变化幅度最显著;拟康氏木霉菌886厚垣孢子处理的黄瓜幼苗叶片相对电导率、MDA含量分别比CK下降了47.74%、41.40%;而叶片中的POD、CAT、APX、SOD活性则分别比CK增加了318.11%、155.36%、157.09%和300.34%。研究表明3株木霉菌分生孢子和厚垣孢子均能通过改善黄瓜幼苗叶片抗氧化能力,增加保护酶活性,提高了对黄瓜枯萎病的防治效果。  相似文献   

13.
Studies were made of plant growth retardation and effects on resistance of melon to fusarium wilt by soil application of paclobutrazol, other ergosterol biosynthesis inhibitors, the fungicide benomyl and the herbicide dinitramine. Paclobutrazol and ancymidol delayed the onset of wilting and were the most effective in reducing wilt incidence. A relationship between effectiveness in retarding seedling elongation and increasing resistance to fusarium wilt was observed. No chemical had a significant effect on pathogen population level in the plant, as determined by stem colonization and direct assessment tests in seedlings grown in soil treated with the chemicals. Excluding benomyl, and to a lesser extent dinitramine, leaf and stem extracts had no inhibitory effect on conidial germination. Gibberellins GA4+7, when applied to seedlings inoculated after germination in paclobutrazol-treated soil, nullified growth retardation and increased disease incidence. We suggest that disease incidence reduction by paclobutrazol is due to an effect on plant metabolic processes and not to direct fungitoxicity of the compound.  相似文献   

14.
拟粗壮螺旋线虫对棉花的致病力及其与棉枯萎病的复合症   总被引:1,自引:0,他引:1  
 温室测定结果:拟粗壮螺旋线虫(Helicotylenchus pseudorobusius)接种量在每100cm3土壤100~1000条的条件下,接种30天后棉苗生长量比无线虫对照苗显著降低(P<0.05)。抗枯萎品种86-1在单接枯萎菌无线虫处理中不发生枯萎病,在枯萎菌(Fusarium oxysporum f. sp. vasinfectum)接种量为每克土7.5×105孢子和线虫(每100cm3±500~1000条)组合处理中发病,棉苗枯萎病情指数与线虫接种量之间呈正相关(γ=0.97)。田间试验结果表明:防治线虫和枯萎病复合症用薰蒸剂棉隆每m28~14g处理土壤比用非薰蒸性杀线虫剂克百威(呋哺丹),丙线磷(益收宝)和克线磷的效果更好。  相似文献   

15.
In an earlier study, treatment of radish seed with the bacteriumPseudomonas fluorescens WCS374 suppressed fusarium wilt of radish (Fusarium oxysporum f. sp.raphani) in a commercial greenhouse [Leemanet al., 1991b, 1995a]. In this greenhouse, the areas with fusarium wilt were localized or expanded very slowly, possibly due to disease suppressiveness of the soil. To study this phenomenon, fungi were isolated from radish roots collected from the greenhouse soil. Roots grown from seed treated with WCS374 were more abundantly colonized by fungi than were roots from nonbacterized plants. Among these were several species known for their antagonistic potential. Three of these fungi,Acremonium rutilum, Fusarium oxysporum andVerticillium lecanii, were evaluated further and found to suppress fusarium wilt of radish in a pot bioassay. In an induced resistance bioassay on rockwool,F. oxysporum andV. lecanii suppressed the disease by the apparent induction of systemic disease resistance. In pot bioassays with thePseudomonas spp. strains, the pseudobactin-minus mutant 358PSB did not suppress fusarium wilt, whereas its wild type strain (WCS358) suppressed disease presumably by siderophore-mediated competition for iron. The wild type strains of WCS374 and WCS417, as well as their pseudobactin-minus mutants 374PSB and 417PSB suppressed fusarium wilt. The latter is best explained by the fact that these strains are able to induce systemic resistance in radish, which operates as an additional mode of action. Co-inoculation in pot bioassays, ofA. rutilum, F. oxysporum orV. lecanii with thePseudomonas spp. WCS358, WCS374 or WCS417, or their pseudobactin-minus mutants, significantly suppressed disease (except forA. rutilum/417PSB and all combinations with 358PSB), compared with the control treatment, if the microorganisms were applied in inoculum densities which were ineffective in suppressing disease as separate inocula. If one or both of the microorganism(s) of each combination were applied as separate inocula in a density which suppressed disease, no additional suppression of disease was observed by the combination. The advantage of the co-inoculation is that combined populations significantly suppressed disease even when their individual population density was too low to do so. This may provide more consistent biological control. The co-inoculation effect obtained in the pot bioassays suggests that co-operation ofP. fluorescens WCS374 and indigenous antagonists could have been involved in the suppression of fusarium wilt of radish in the commercial greenhouse trials.Abbreviations CFU colony forming units - KB King's B - PGPR plant growth-promoting rhizobacteria - CQ colonization quotient  相似文献   

16.
为探明土壤撒施石灰对西瓜枯萎病发生的影响,本试验设计5个浓度剂量的氧化钙对连作西瓜5年的土壤进行消毒处理,通过栽培感病品种并调查植株生长情况、枯萎病发病率等指标,结合土壤中尖孢镰刀菌西瓜专化型1号小种病原菌孢子量和土壤pH的变化动态,以此评估土壤施加石灰防治西瓜枯萎病的效果,并利用不同浓度的钙对尖孢镰刀菌西瓜专化型菌丝生长和产孢量的影响进行防治机理的初步研究。试验结果表明,当土壤施加氧化钙后,西瓜发病率显著降低,各处理的相对防效分别为14%、57.8%、96.3%、94.7%、94.7%。在定植10d后,各处理均有促进植株生长发育的作用,其中1.34g/kg最显著。而随着氧化钙施加量的增加,土壤pH值也不断提高,30d趋于稳定。对土壤病原菌孢子数量检测表明:各处理土壤中病原菌数量均呈现显著降低的趋势。PDA平板生测结果表明,当钙离子浓度高于80mmol/L时,病原菌的生长及产孢量开始受到抑制,随着浓度的增加,抑制作用加强。土壤施加氧化钙不仅能改善土壤的酸化,还能有效防控西瓜枯萎病,其机理可能是土壤pH值的提高改变了土壤微环境,不利于病原菌侵染;施加的钙离子抑制了病原菌菌丝的生长及孢子的萌发。研究结果对揭示氧化钙防控西瓜枯萎病机制,具有一定的参考价值。  相似文献   

17.
ABSTRACT Biological control of soilborne plant pathogens in the field has given variable results. By combining specific strains of microorganisms, multiple traits antagonizing the pathogen can be combined and this may result in a higher level of protection. Pseudomonas putida WCS358 suppresses Fusarium wilt of radish by effectively competing for iron through the production of its pseudobactin siderophore. However, in some bioassays pseudobactin-negative mutants of WCS358 also suppressed disease to the same extent as WCS358, suggesting that an, as yet unknown, additional mechanism may be operative in this strain. P. putida strain RE8 induced systemic resistance against fusarium wilt. When WCS358 and RE8 were mixed through soil together, disease suppression was significantly enhanced to approximately 50% as compared to the 30% reduction for the single strain treatments. Moreover, when one strain failed to suppress disease in the single application, the combination still resulted in disease control. The enhanced disease suppression by the combination of P. putida strains WCS358 and RE8 is most likely the result of the combination of their different disease-suppressive mechanisms. These results demonstrate that combining biocontrol strains can lead to more effective, or at least, more reliable biocontrol of fusarium wilt of radish.  相似文献   

18.
西瓜品种资源对枯萎病和蔓枯病的抗性鉴定   总被引:3,自引:0,他引:3  
采用室内苗期人工接种鉴定方法,对国内外引进和育成的78份西瓜品种资源进行了枯萎病和蔓枯病的人工接种双重抗性鉴定,筛选出Smokylee、 Summit、 Sugarlee、Calhoun Gray、 Dixielee、TexaW5、 Conqueror等9份高抗枯萎病的单抗种质,及AU Sweet Scarlet、 AU Jubilant、 AU Producer、W6 9、W23 18和W23 47 为中抗蔓枯病兼抗枯萎病的双抗种质,并对双抗种质材料的主要农艺性状进行了考察。  相似文献   

19.
Fluorescent pseudomonads and nonpathogenic Fusarium oxysporum have been shown to suppress fusarium wilts. This suppression has been related to both microbial antagonism and induced resistance.The aim of the present study was to assess the relative importance of systemic induced resistance in the suppression of fusarium wilt of tomato in commercial-like conditions by a reference strain of each type of microorganism (P. fluorescens WCS417r and nonpathogenic F. oxysporum Fo47). The spatial separation of the pathogen and the biocontrol strains excluded any possible microbial antagonism and implicated the involvement of the systemic induced resistance; whereas the absence of any separation between these microorganisms allowed the expression of both mechanisms. Since systemic induced resistance has often been associated with the synthesis of PR-proteins, their accumulation in tomato plants inoculated with WCS417r or with Fo47 was determined.The analysis of the results indicates that the suppression of fusarium wilt by P. fluorescens WCS417r was ascribed to systemic induced resistance without any detection of the PR-proteins tested (PR-1 and chitinases). In contrast, the suppression achieved by nonpathogenic F. oxysporum Fo47 appeared to be mainly ascribed to microbial antagonism but also to a lesser extent to systemic induced resistance. This induced resistance could be related to the accumulation of PR-1 and chitinases.The possible relationship between the ability of Fo47 to suppress fusarium wilt more efficiently than WCS417r and its ability to show both mechanisms is discussed.  相似文献   

20.
[目的]研究施入复合微生态制剂对黄瓜根际土壤的影响.[方法]采用盆栽试验的方法,对不同生育时期施入复合微生态制剂的黄瓜根际土壤微生物数量及土壤酶活性进行了测定.[结果]与对照相比,在花期施入复合微生态制剂,可使根际土壤细菌和放线菌的数量分别增加27.9%和20.6%,而真菌和尖孢镰刀菌的数量分别减少64.5%和66.7%;可使土壤脲酶、蔗糖酶、中性磷酸酶活性分别提高130.8%、190.5%、123.5%,差异均显著.黄瓜不同生育时期施入复合微生态制剂对过氧化氢酶作用不明显.[结论]本研究在花期施入复合微生态制剂后,在一定程度上,可提高黄瓜根际土壤细菌和放线菌的数量,减少真菌及尖孢镰刀菌的数量,提高土壤脲酶、蔗糖酶和中性磷酸酶的活性.  相似文献   

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