首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 125 毫秒
1.
木霉对草坪褐斑病的拮抗效果及耐药性   总被引:1,自引:0,他引:1  
通过木霉属5菌株与大连高尔夫球场上草坪褐斑病菌的对峙培养试验,研究结果表明:哈茨木霉Thar1菌株、哈茨木霉Thar2菌株、深绿木霉Tat菌株、钩状木霉Tha菌株及桔绿木霉Tci菌株对病原菌的抑制率为:66%、73%、71%、77%、55%,而相对抑菌效果分别为2.06、3.94、2.35、3.54、2.27,可以作为草坪褐斑病菌的生防菌加以利用。在这5株木霉中以哈茨木霉Thar2对草坪褐斑病菌的拮抗作用最强。观察结果表明,哈茨木霉Thar2对草坪褐斑病菌的拮抗机制主要表现为生长竞争、重寄生及产生抗菌物质。  相似文献   

2.
Raikes C  Burpee LL 《Phytopathology》1998,88(5):446-449
ABSTRACT The ability to identify diseases early and quantify severity accurately is crucial in plant disease assessment and management. This study was conducted to assess changes in the spectral reflectance of sunlight from plots of creeping bentgrass during infection by Rhizoctonia solani, the cause of Rhizoctonia blight, and to evaluate multispectral radiometry as a tool to quantify Rhizoctonia blight severity. After inoculation of 6-year-old creeping bentgrass turf with R. solani anastomosis group 2-2, reflectance of sunlight from the foliar canopy was measured at light wavelengths of 460 nm (blue) to 810 nm (near infrared [NIR]), at 50-nm intervals. Visual estimates of disease severity and percentage of canopy reflectance were made daily throughout each of three epidemics of Rhizoctonia blight from the onset of visible symptoms until maximum disease severity was reached. In each experiment, linear regression analysis revealed a significant reduction in the percentage of NIR (760 and 810 nm) reflectance as disease severity increased. However, in the majority of analyses, regression models explained <50% of the variability between components. Multispectrum radiometry appears to function best when used to assess differences in disease severity at discrete points in time rather than over an entire epidemic.  相似文献   

3.
ABSTRACT The association of binucleate Rhizoctonia (BNR) AG-K with soybean and the interaction of BNR, R. solani AG-4, and soybean seedlings were investigated to elucidate the mechanism of biocontrol of R. solani by BNR. Sixty-hour-old seedlings were inoculated and incubated in a growth chamber at 24 degrees C; plants were examined with light microscopy and with scanning and transmission electron microscopy at various times following inoculation. BNR grew over hypocotyls, roots, and root hairs, but only colonized epidermal cells. Hyphae of BNR appeared to attach to the epidermis and, 5.5 h following inoculation, began penetrating cells by means of penetration pegs without forming distinct appressoria or infection cushions. There was evidence of cuticle degradation at the point of penetration. Infection hyphae moved to adjacent epidermal cells by direct penetration of epidermal radial walls. There were epidermal and cortical cell necrosis, beginning with the fragmentation of the tonoplast and followed by the disintegration of cytoplasm, organelles, and plasma membranes. Cell necrosis was also observed in adjacent cells where there was no evidence of BNR hyphae. Cell walls were not destroyed. After 144 h, there was noevidence of BNR hyphae in cortical cells. Attempted penetrations were observed, but papillae formed on the inside of cortical cell walls. Pre-inoculation of soybean seedlings with BNR 24 or 48 h before inoculation with R. solani (1 cm between inocula) affected the growth of R. solani on soybean tissue. There were fewer hyphae of R. solani, the hyphae branched sparingly, and infection cushions were rare when compared with hyphal growth on soybean inoculated only with R. solani. These effects were observed before the BNR hyphae began to intermingle with the hyphae of R. solani on the surface of the inoculated host. Preinoculation of soybean seedlings 24 h before inoculation with R. solani significantly (P = 0.05) reduced disease incidence and severity caused by R. solani AG-4. The lesions caused by R. solani always appeared distally, not proximally, to the BNR inoculum. The interactions of intermingling hyphae of BNR and R. solani were examined in vitro and on the surface of the host. There was no evidence of lysis, mycoparasitism, inhibition of growth, or any other form of antagonism between hyphae. The results of these studies strongly suggest that induced resistance is the mechanism of biocontrol of R. solani on soybean by BNR. The inhibition of hyphal growth of R. solani on the surface of soybean tissue preinoculated with BNR appears to be a novel characteristic of induced resistance.  相似文献   

4.
哈茨木霉几丁质酶诱导及其对水稻纹枯病菌的拮抗作用   总被引:17,自引:0,他引:17  
 在实验室条件下分别以几丁质和水稻纹枯病菌(Rhizoctonia solani)细胞壁作唯一碳源诱导哈茨木霉(Trichoderma harzianum)菌株NF9、TC3和P1产生几丁质酶,用硫酸铵沉淀法制备几丁质酶粗提液。上述木霉菌株内切几丁质酶活性(对胶体几丁质浑浊度的减少率)分别为79.8%、74.4%和76.0%,均显著高于非诱导的阳性对照。培养第5 d几丁质诱导的木霉菌株NF9和TC3内切几丁质酶活性显著高于由水稻纹枯病菌细胞壁诱导的酶活性。体外测定表明,通过诱导的木霉菌株TC3、NF9和P1几丁质酶粗提液对水稻纹枯病病菌的拮抗圈直径可达38、21和23 mm,与非诱导的阳性对照比较有显著性差异。对木霉几丁质酶拮抗作用的特点及生防应用进行了讨论。  相似文献   

5.
Trichoderma cultures were isolated locally from soils and screened on potato-dextrose agar against Rhizoctonia solani. Several isolates of T. harzianum reduced the growth and build up of populations of R. solani and to a lesser extent of Fusarium solani in sterilized soil. In field experiments, biological control of R. solani and F. solani infections in tobacco transplants was achieved by adding T. harzianum (T77) to methyl-bromide-fumigated seedbeds before seed was sown. There was also increased growth and leaf yield that was not directly correlated with disease control. Triadimenol fungicide, integrated with the Trichoderma treatment, enhanced disease control.  相似文献   

6.
Stem canker and black scurf are diseases of potato caused by the fungus Rhizoctonia solani . Spatiotemporal experimentation and empirical modelling were applied for the first time to investigate the effect of antagonistic Trichoderma harzianum on the dynamics of soilborne R. solani on individual potato plants. Trichoderma harzianum reduced the severity of symptoms, expressed as 'rhizoctonia stem lesion index' (RSI), during the first 7 days post-inoculation when the inoculum of R. solani was placed at certain distances (30–60 mm) from the host. For example, with inoculum at 40 mm from the host, RSI was 6 and 40 with and without T. harzianum , respectively. At later observation times, the antagonistic effect was overcome. Trichoderma harzianum reduced the severity of black scurf on progeny tubers. Furthermore, the mean number of progeny tubers per potato plant was reduced by the biocontrol treatment (means of 6·5 ± 1·1 and 9·9 ± 2·7 tubers per plant with and without T. harzianum , respectively), as was the proportion of small (0·1–20·0 g) tubers (48% and 66% with and without T. harzianum , respectively). Additionally, there were fewer malformed and green-coloured tubers in pots treated with T. harzianum than in those without T. harzianum .  相似文献   

7.
ABSTRACT Research on the mechanisms employed by the biocontrol agent Trichoderma virens to suppress cotton (Gossypium hirsutum) seedling disease incited by Rhizoctonia solani has shown that mycoparasitism and antibiotic production are not major contributors to successful biological control. In this study, we examined the possibility that seed treatment with T. virens stimulates defense responses, as indicated by the synthesis of terpenoids in cotton roots. We also examined the role of these terpenoid compounds in disease control. Analysis of extracts of cotton roots and hypocotyls grown from T. virens-treated seed showed that terpenoid synthesis and peroxidase activity were increased in the roots of treated plants, but not in the hypocotyls of these plants or in the untreated controls. Bioassay of the terpenoids for toxicity to R. solani showed that the pathway intermediates desoxyhemigossypol (dHG) and hemigossypol (HG) were strongly inhibitory to the pathogen, while the final product gossypol (G) was toxic only at a much higher concentration. Strains of T. virens and T. koningii were much more resistant to HG than was R. solani, and they thoroughly colonized the cotton roots. A comparison of biocontrol efficacy and induction of terpenoid synthesis in cotton roots by strains of T. virens, T. koningii, T. harzianum, and protoplast fusants indicated that there was a strong correlation (+0.89) between these two phenomena. It, therefore, appears that induction of defense response, particularly terpenoid synthesis, in cotton roots by T. virens may be an important mechanism in the biological control by this fungus of R. solani-incited cotton seedling disease.  相似文献   

8.
A pepper esterase (PepEST) gene was introduced into creeping bentgrass (Agrostis stolonifera) by Agrobacterium‐mediated transformation. Purified recombinant PepEST proteins were sufficient to inhibit the growth of the fungal pathogens Rhizoctonia solani AG2‐2 (IIIB) (causing brown patch) and Sclerotinia homoeocarpa (dollar spot), but not the oomycete responsible for pythium blight, Pythium aphanidermatum. PepEST proteins were most effective against R. solani. After genetic transformation of creeping bentgrass with PepEST, the genomic integration of transgenes bar and PepEST was confirmed by Southern blot analysis, and their expression was also validated by northern blot and western blot analyses. Disease severity on R. solani‐inoculated leaves of transgenic plants was <10% compared to ca. 50% in non‐transgenic plants. Microscopic observation of infected leaves indicated that PepEST inhibited the growth of hyphae upon fungal infection.  相似文献   

9.
本研究共分离了976株细菌分离物,发现来自甘蔗根围的1株枯草芽孢杆菌(Bacillus subtilis)S9对立枯丝核菌(Rhizoctonia solani)、终极腐霉(Pythium ultimum)和西瓜枯萎病菌(Fusarium oxysporum f.sp.niveum)在PDA平板的对峙培养过程中不形成抑菌圈,但4d后可使上述植物病原真菌的菌丝溶解。扫描电镜观察发现S9菌株在待测的立枯丝核菌表面形成了溶菌斑。S9菌株对立枯丝核菌的作用过程是通过吸附在病原真菌的菌丝上,并随菌丝生长而生长,而后产生溶菌物质消解菌丝体。液体共培养测定也证明了S9菌株具有上述作用。本研究还发现,S9菌株对植物病原真菌的拮抗真菌绿色木霉(Trichoderma viride)、鲜红毛壳菌(Chaetomium cupreum)和球毛壳菌(Chaetomium globosum)的生长没有影响。盆栽试验证明了S9菌株可有效地控制立枯丝核菌(R.solani)引起的番茄苗期病害。S9菌株与其它拮抗真菌混合具有促进防治植物病原真菌引起的植物病害的潜力。  相似文献   

10.
Microsphaeropsis sp. strain P130A was evaluated for the control of tuber-borne inoculum of Rhizoctonia solani based on the viability of sclerotia produced in vitro and on both the viability and production of tuber-borne sclerotia. The interactions between the antagonist and the pathogen, as well as the effect of the toxins produced by the antagonist on mycelial growth of R. solani were studied using transmission electron microscopy. On sclerotia produced in vitro, for all incubation periods (1 to 42 days), Microsphaeropsis sp. significantly reduced germination. Percent germination of sclerotia treated with Microsphaeropsis sp. decreased with increasing incubation period from an average of 82.0% after 1 day to stabilize at an average of 5.8% after 35 days. Similarly, percent germination of tuber-borne sclerotia was significantly lower when tubers were treated with Microsphaeropsis sp. Both 2% formaldehyde and Microsphaeropsis sp. treatments significantly reduced sclerotia germination to approximately 10% after 42 days of incubation at 4 degrees C. Furthermore, on tubers treated with the antagonist, the number of sclerotia per square centimeter decreased from 1.6 to 0.5 during the 8 months of storage at 4 degrees C, whereas an increase from 1.2 to 7.8 sclerotia per square centimeter was observed on untreated tubers. Microsphaeropsis sp. (strain P130A) colonized hyphae of R. solani within 4 days after contact on culture media. Transmission electron microscopic observations showed that the antagonist induced a rupture of the pathogen plasma membrane and that a chitin-enriched matrix was deposited at sites of potential antagonist penetration. Host penetration was not associated with pathogen cell wall alterations, which occurred at the time of progress of the antagonist in the pathogen cytoplasm. In the presence of a crude extract of Microsphaeropsis sp., cells of R. solani showed cytoplasm disorganization and breakdown of plasma membranes. Antibiosis and mycoparasitism were involved in the antagonism of R. solani by Microsphaeropsis sp., but the sequence by which these events occur, as well as the significance of wall appositions produced by R. solani, is yet to be established.  相似文献   

11.
从土壤中分离了一木霉Trichoderma sp.菌株T97.竞争及对峙培养结果表明,木霉T97对豌豆根腐病菌Fusarium solani f.sp.pisi、番茄灰霉病菌Botrytis cinerea、茄子黄萎病菌Verticillium dahliae、黄瓜枯萎病菌Fusarium oxysporum f.sp. cucumerinum、小麦全蚀病菌Gaeumannomyces graminis var. tritici、小麦根腐病菌Bipolaris sorokiniana和立枯丝核病菌Rhizoctonia solani等7种病原菌有较强的生长竞争优势.光学显微观察表明,木霉T97通过缠绕、附着和穿透的方式寄生立枯丝核菌、番茄灰霉病菌和小麦全蚀病菌.受T97作用后,茄子菌核病菌的菌丝尖端肿大、变粗,豌豆根腐病菌和黄瓜枯萎病菌的菌丝出现断裂等溶菌现象.用T97培养物(0.6%(w/w))处理土壤,对茄子黄萎病和菌核病、黄瓜枯萎病和菌核病以及豌豆根腐病的苗期病害防治效果达66%~81%.用T97孢子悬浮液108cfu/mL在花期喷雾保护黄瓜、辣椒和番茄叶面,对灰霉病的防治效果相当于50%速克灵WP 3 000倍液.  相似文献   

12.
Under laboratory conditions, isolate TH–203 of Trichoderma harzianum was found to be tolerant of up to 20 000 ppm methyl bromide (MB) (v/v), whereas the plant pathogen Rhizoctonia solani was susceptible to a dose of less than 9000 ppm (v/v). Exposure to sub–lethal concentrations of MB had no effect on the in vitro antagonistic ability of T. harzianum . Soil fumigation with MB at the equivalent of a commercial dose of 500 kg/ha did not reduce the population of Trichoderma in soil and allowed rapid colonization of Trichoderma to develop in the soil.
Under greenhouse conditions a combination of T. harzianum and a reduced dose of MB (equivalent to 200 kg/ha) completely controlled disease incidence of R. solani in bean seedlings compared with controls in untreated soils. Similar disease control was achieved with the recommended dose of MB. Under field conditions, the combination of 200 kg/ha MB and T. harzianum gave a significant synergistic effect on damping–off of carrot seedlings caused by R. solani , and had a similar effect on growth, yield and disease control to that of the recommended dose.
T. harzianum was also able to prevent reinfestation by R. solani in fumigated soils.  相似文献   

13.
ABSTRACT Dead spot (Ophiosphaerella agrostis) is a damaging disease of young 相似文献   

14.
Trichoderma koningii (strain Tr5) grew in the epidermal mucilage of onion roots without entering healthy epidermal tissue. When placed on the epidermis of Sclerotium cepivorum -infected roots, T. koningii colonized epidermal passage cells, with little colonization of other epidermal tissues, then branched and spread throughout the root cortical tissues damaged by enzymes and toxins which diffused ahead of S. cepivorum hyphae, and impeded the path of the infection. When T. koningii colonized infected tissue, many S. cepivorum hyphae became detached at septa, cell walls dissolved and many hyphal apices burst. Contact between hyphae was not necessary for lysis to occur. T. koningii produced two endochitinases ( R f 0·15 and 0·24) and two exo-acting chitinolytic enzymes ( R f 0·46 and 0·62) during degradation of crabshell chitin and S. cepivorum cell walls. The R f 0·24 and 0·46 proteins were detected when T. koningii colonized S. cepivorum -infected roots and are likely to be a component of the antagonism process.  相似文献   

15.
木霉对玉米纹枯病的生物防治   总被引:7,自引:0,他引:7       下载免费PDF全文
为明确木霉菌在玉米纹枯病防治上的作用,研究了从雅安郊区大田玉米根际土壤中分离到的18个木霉菌株对立枯丝核菌的抑制作用及对玉米纹枯病的田间防治效果.对峙培养结果表明,这些木霉菌株对立枯丝核菌的抑制率为39.44%~84.98%;而木霉发酵滤液的抑菌作用为13.48%~85.81%.对峙培养和液体发酵滤液的抑菌测定相结合,筛选出木霉菌株T8、T2、T13,经鉴定分别为哈茨木霉Trichoderma harzianum、黄绿木霉Trichoderma aureoviride和长枝木霉Trichoderma Longibrachiatum.用这3种木霉的固体培养物作进一步的田间防治试验,防治效果分别为62.75%、64.48%、68.52%,比井冈霉素(49.68%)效果高;T13菌株的发酵滤液的防治效果仅为40.07%.3株木霉固体培养物对玉米产量影响显著,增产率依次为29.77%、43.37%、54.21%.  相似文献   

16.
采用滤纸片法对云南地区分离并鉴定到的15株木霉进行2株病原细菌(大肠杆菌和金黄色葡萄球菌)和3株植物病原真菌(小麦全蚀、番茄早疫、稻疫)抗菌活性筛选。获得可抑制5种病原菌(广谱)的木霉7株。抑菌圈直径范围在0.7~2.8 cm。其中哈茨木霉8917提取物对3株植物病原真菌的抑制最强,哈茨木霉10176提取物对金黄色葡萄球菌的抑制最强,哈茨木霉10174提取物对大肠杆菌的抑制最强。同时,将15株供试木霉与3株病原真菌进行对峙培养,结果显示:对番茄早疫菌抑制率最高的是新康氏木霉8722和深绿木霉8956,对小麦全蚀菌抑制率最高的是新康氏木霉8722和康氏木霉8701,深绿木霉8686对稻疫菌的抑制率最高。哈茨木霉在滤纸片法活性筛选中相对其他木霉抑菌活性较好,但在对峙培养活性筛选中其抑菌活性最弱。  相似文献   

17.
Xue AG 《Phytopathology》2003,93(3):329-335
ABSTRACT Pea root rot complex (PRRC), caused by Alternaria alternata, Aphanomyces euteiches, Fusarium oxysporum f. sp. pisi, F. solani f. sp. pisi, Mycosphaerella pinodes, Pythium spp., Rhizoctonia solani, and Sclerotinia sclerotiorum, is a major yield-limiting factor for field pea production in Canada. A strain of Clonostachys rosea (syn. Gliocladium roseum), ACM941 (ATCC 74447), was identified as a mycoparasite against these pathogens. When grown near the pathogen, ACM941 often was stimulated to produce lateral branches that grew directly toward the pathogen mycelium, typically entwining around the pathogen mycelium. When applied to the seed, ACM941 propagated in the rhizosphere and colonized the seed coat, hypocotyl, and roots as the plant developed and grew. ACM941 significantly reduced the recovery of all fungal pathogens from infected seed, increased in vitro seed germination by 44% and seedling emergence by 22%, and reduced root rot severity by 76%. The effects were similar to those of thiram fungicide, which increased germination and emergence by 33 and 29%, respectively, and reduced root rot severity by 65%. When soil was inoculated with selected PRRC pathogens in a controlled environment, seed treatment with ACM941 significantly increased emergence by 26, 38, 28, 13, and 21% for F. oxysporum f. sp. pisi, F. solani f. sp. pisi, M. pinodes, R. solani, and S. sclerotiorum, respectively. Under field conditions from 1995 to 1997, ACM941 increased emergence by 17, 23, 22, 13, and 18% and yield by 15, 6, 28, 6, and 19% for the five respective pathogens. The seed treatment effects of ACM941 on these PRRC pathogens were greater or statistically equivalent to those achieved with thiram. Results of this study suggest that ACM941 is an effective bioagent in controlling PRRC and is an alternative to existing chemical products.  相似文献   

18.
枸骨内生真菌抗菌代谢产物的鉴定及活性研究   总被引:2,自引:1,他引:2  
对一株枸骨内生真菌哈茨木霉Trichoderma harzianum抗菌活性成分的分离、鉴定及其抗菌生物活性进行了研究。该真菌发酵液经乙酸乙酯萃取、正相硅胶和ODS-反相色谱分离纯化得到一单端孢霉烯化合物,经红外、质谱和核磁分析,鉴定为:4β-乙酰基-12,13-环氧-9-单端孢霉烯(trichodermin),这是首次从哈茨木霉菌代谢产物中分离出该化合物。Trichodermin对蕃茄早疫病和黄瓜立枯病病原菌的离体抑制活性EC50值分别为3.35和3.59 mg/L;活体测定结果表明,在 100 mg/L的剂量下对两种病的保护效果分别为97.8% 和98.1%,治疗效果为96.7%和97.3%。  相似文献   

19.
植物土传病原菌拮抗细菌的筛选与鉴定   总被引:11,自引:2,他引:11  
从作物根际土壤中分离到1056株细菌,筛选出7个具有较强拮抗活性的菌株。室内测定对水稻纹枯病菌、辣椒疫病菌、瓜果腐霉、油菜菌核病菌、棉花枯萎病菌、茄根腐病菌、棉花黄萎病菌、番茄青枯病菌、甘蓝黑腐病菌等重要土传病原菌有较强拮抗作用;温室盆栽试验对番茄青枯病表现出较好防效,其中以BOH2和OH11效果较为明显,防效分别为90.9%和86.4%。通过形态观察、生理生化试验和16SrDNA序列分析,确定OH11为产酶溶杆菌。BOH3为荧光假单胞菌,其余5个菌株为不同芽孢杆菌。  相似文献   

20.
多菌灵是植物病害防治中常用的化学杀菌剂,野生型哈茨木霉对多菌灵比较敏感。为了能够更好地将哈茨木霉菌应用于实践,本试验采用紫外线-氯化锂复合诱变的方法,实现哈茨木霉菌株对多菌灵的抗性改良。试验共获得315株正向突变菌株,其中hcb-35菌株抗性能力较强。利用毒力测定方法检测了多菌灵对hcb-35有效抑菌中浓度,及hcb-35对多菌灵的抗药遗传稳定性;并利用对峙试验及显微观察检测其抑菌能力。结果显示,与哈茨木霉出发菌株hc相比,多菌灵对哈茨木霉突变株hcb-35菌株的有效抑菌中浓度提升285%;连续转接12代后,hcb-35菌株抗药性相对稳定且抑菌效果较出发菌株无明显差异,表明应用紫外-氯化锂复合诱变哈茨木霉可以获得遗传稳定的耐多菌灵突变株。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号