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1.
为明确10亿活芽孢/g枯草芽孢杆菌可湿性粉剂对黄瓜根腐病的防治效果及使用剂量,以70%敌磺钠可溶粉剂作对照,采用田间试验研究10亿活芽孢/g枯草芽孢杆菌可湿性粉剂对黄瓜根腐病的防治效果。结果表明,10亿活芽孢/g枯草芽孢杆菌可湿性粉剂对黄瓜根腐病具有良好防效,最佳使用剂量为3.0g/株,防效均优于70%敌磺钠可溶粉剂,且对黄瓜生长安全,是防治黄瓜根腐病较理想的药剂之一。  相似文献   

2.
微生物杀菌剂及其混配剂防治水稻纹枯病的田间药效试验   总被引:4,自引:0,他引:4  
对微生物杀菌剂及其混配剂对水稻纹枯病进行田间防治试验,结果表明枯草芽孢杆菌10亿/g可湿性粉剂、井冈霉素·蜡质芽孢杆菌12.5%可湿性粉剂对水稻纹枯病有较好的防治效果。在发病初期施药,枯草芽孢杆菌10亿/g可湿性粉剂1500g/hm2防效为75.4%,产量增幅21.5%;井冈霉素·蜡质芽孢杆菌12.5%可湿性粉剂2880g/hm2防效为83.89%。可以作为井冈霉素的替代产品,进行推广应用。  相似文献   

3.
本文研究了30%氟啶胺·氰霜唑悬浮剂、500g/L氟啶胺悬浮剂、100g/L氰霜唑悬浮剂和100亿个/g枯草芽孢杆菌可湿性粉剂4种杀菌剂在3种处理模式下对甘蓝根肿病田间药效的差异。试验结果表明:3种化学杀菌剂不同处理模式下对甘蓝根肿病的防效在60%左右,高于生物制剂枯草芽孢杆菌的防效(40%左右)。不同的处理模式下防效有一定的差异,但未达统计学意义上的显著水平。根据试验结果,推荐将试验的3种化学杀菌剂作为甘蓝根肿病防治的首选药剂,建议移栽前土壤喷雾1次,移栽前对秧苗进行药剂蘸根,移栽后1周左右再灌根1次。  相似文献   

4.
本研究比较了5种不同措施防治甘蓝根肿痛的效果,结果表明:采用枯草芽孢杆菌粉剂(2.0×10~6cfu/g)400倍液结合3506—2基质处理防治根肿病平均发病率最低(13.70%)、病情指数最低(5.23)、防治效果最好(79.12%)、产量最高(8 094.05kg/667m~2),而且无农药残留,成本约180元/667m~2,符合生产绿色甘蓝食品发展方向,建议在大田防治甘蓝根肿痛中推广应用。  相似文献   

5.
选用枯草芽孢杆菌可湿性粉剂(1000亿活芽孢/克)和常规药剂40%稻瘟灵乳油对稻瘟病进行药效防治对比试验,评价枯草芽孢杆菌对稻瘟病的防治效果。试验结果表明,枯草芽孢杆菌可湿性粉剂每667m2用10g对稻瘟病的防治效果迭95.28%.比对照药剂40%稻瘟灵乳油每667mz用60mL的防治效果81.15%提高14.13个百分点:每667rn2产量385.76kg,比40%稻瘟灵乳油对照区每667m2产量345.69kg,增产40.07kg,增产11.59%。每667m2减少施药用工10元.增加经济效益94.14元。建议在生产中每667m2用枯草芽孢杆菌可湿性粉剂(1000亿活芽孢/曲10g对水50奴于稻瘟病发病初期对水稻叶面均匀喷雾。  相似文献   

6.
在田间出现晚疫病中心病株时,每667 m2用80%代森锌可湿性粉剂100 g、枯草芽孢杆菌15 g、68.75%氟菌·霜霉威悬浮剂75 g、50%氟啶胺悬浮剂30 g防治马铃薯晚疫病,试验结果表明,68.75%氟菌·霜霉威悬浮剂和50%氟啶胺悬浮剂对马铃薯晚疫病的防治效果基本相同,且防治效果优于枯草芽孢杆菌和80%代森锌可湿性粉剂。  相似文献   

7.
进行田间试验以明确蜡质芽孢杆菌8亿个/克可湿性粉剂防治茄子青枯病的效果。结果表明,蜡质芽孢杆菌8亿个/克可湿性粉剂能够很好的控制茄子青枯病,防治效果明显高于对照,且对作物安全。  相似文献   

8.
为筛选生产中防治韭菜灰霉病的适用药剂,采用菌丝生长速率法测定了9种非化学杀菌剂对韭菜灰霉病病菌的室内毒力,发现10%多抗霉素B可湿性粉剂和100亿CFU/g枯草芽孢杆菌可湿性粉剂的毒力最强,EC50值分别为0.004 1、0.007 6μg/mL;0.5%大黄素甲醚水剂和3亿CFU/g哈茨木霉菌可湿性粉剂的毒力较弱。田间药效试验验证,10%多抗霉素B可湿性粉剂、100亿CFU/g枯草芽孢杆菌可湿性粉剂常规用量处理的防效分别为67.60%和61.01%,适用于田间韭菜灰霉病的防治。  相似文献   

9.
本文评价分析了几种药剂对马铃薯晚疫病的田间防治效果和经济效益,结果表明,氟菌·霜霉威68.75%悬浮剂+丙森锌70%可湿性粉剂+赤·吲乙·芸薹0.136%可湿性粉剂组合处理的防效和经济收益最高,其次依次为氟啶胺50%悬浮剂+氰霜唑10%悬浮剂、霜脲·嘧菌酯60%水分散粒剂、枯草芽孢杆菌1 000亿芽孢/克可湿性粉剂。  相似文献   

10.
根肿病是十字花科作物的全球性重大病害之一,但可供选择的防治药剂非常有限。以本课题组筛选出的一株对十字花科白菜根肿病具有显著拮抗作用的海洋生境芽孢杆菌Txc2-1为研究对象,通过对载体和助剂的筛选以及采用混料设计确定Txc2-1可湿性粉剂最优配方,同时运用制备的30亿CFU/g可湿性粉剂进行盆栽试验和田间药效的考察。结果表明:Txc2-1可湿性粉剂最佳载体为轻质碳酸钙,最佳润湿剂为十二烷基硫酸钠,最佳悬浮剂为聚乙烯醇(PVA),这3种物质与Txc2-1菌株有较高的生物相容性,且具有良好的理化性能。通过混料设计确定其最优配比为m(轻质碳酸钙):m(十二烷基硫酸钠):m(PVA)=83:9:8。利用5 L罐培养液及上述配方进行喷雾干燥获得了30亿CFU/g Txc2-1可湿性粉剂(Txc2-1 WP);进一步盆栽(40 d)和田间(60 d)药效试验结果表明,Txc2-1 WP对白菜根肿病的防效分别达70.53%和66.84%。该解淀粉芽孢杆菌Txc2-1可湿性粉剂达到了国家质量标准,对白菜根肿病具有良好的防治效果,本研究结果为将Txc2-1开发成首个防治根肿病的海洋微生物杀菌剂奠定了基础。  相似文献   

11.
Fifteen species of dermestid beetles were recorded at ‘Evolution Canyon’ (EC), Lower Nahal Oren, Mt. Carmel, Israel. They represent ~35% of known Israeli dermestid species. The following three species were recorded for the first time in Israel:Trogoderma svriaca Dalla Torre, 1911;Ctesias svriaca Ganglbauer, 1904; andAnthrenus (s.str.) jordaniens Pic, 1934. Adults of 13 species were collected on the more solar radiated, warmer and climatically more fluctuating south-facing slope (SFS); ten species were collected on the opposite, north-facing slope (NFS), which was cooler and climatically more stable. The abundance of adult dermestid beetles was 1.9 times higher on the SFS than on the NFS (86 and 47, respectively). Species richness and abundance distribution at EC (three collecting stations on each slope and one at the valley bottom) were significantly negatively correlated with the plant cover that consisted of trees and bushes (Spearmanr s ,P=0.007 and 0.039, respectively) and perennials (Spearmanr s ,P=0.039 and 0.077, respectively), indicating that non-woody plants were preferred by adult dermestid beetles.  相似文献   

12.
Recent data on the epidemiology of the common mycotoxigenic species of Fusarium, Alternaria, Aspergillus and Penicillium in infected or colonized plants, and in stored or processed plant products from the Mediterranean area are reviewed. Emphasis is placed on the toxigenicity of the causal fungal species and the natural occurrence of well known mycotoxins (aflatoxins, ochratoxins, fumonisins, trichothecenes, zearalenone, patulin, Alternaria-toxins and moniliformin), as well as some more recently described compounds (fusaproliferin, beauvericin) whose toxigenic potential is not yet well understood. Several Fusarium species reported from throughout the Mediterranean area are responsible of the formation of mycotoxins in infected plants and in plant products, including: Fusarium graminearum, F. culmorum, F. cerealis, F. avenaceum, F. sporotrichioides and F. poae, which produce deoxynivalenol, nivalenol, fusarenone, zearalenone, moniliformin, and T-2 toxin derivatives in wheat and other small grains affected by head blight or scab, and in maize affected by red ear rot. Moreover, strains of F. verticillioides, F. proliferatum, and F. subglutinans, that form fumonisins, beauvericin, fusaproliferin, and moniliformin, are commonly associated with maize affected by ear rot. Fumonisins, were also associated with Fusarium crown and root rot of asparagus and Fusarium endosepsis of figs, caused primarily by F. proliferatum. Toxigenic A. alternata strains and associated tenuazonic acid and alternariols were commonly found in black mould of tomato, black rot of olive and citrus, black point of small cereals, and black mould of several vegetables. Toxigenic strains of A. carbonarius and ochratoxin A were often found associated with black rot of grapes, whereas toxigenic strains of A. flavus and/or P. verrucosum, forming aflatoxins and ochratoxin A, respectively, were found in moulded plant products from small cereals, peanuts, figs, pea, oilseed rape, sunflower seeds, sesame seeds, pistachios, and almonds. Finally, toxigenic strains of P. expansum and patulin were frequently found in apple, pear and other fresh fruits affected by blue mould rot, as well as in derived juices and jams.  相似文献   

13.
The genera ofMicrogaster Latreille 1804 andHygroplitis Thomson 1895 from China are presented systematically in this paper. Thirty-two species ofMicrogaster and three species ofHygroplitis are known in China. Diagnosis, character variation, distribution and host of each species among the two genera are presented, including its host and distribution. Keys to the species ofMicrogaster andHygroplitis are given. http://www.phytoparasitica.org posting Dec. 19, 2006.  相似文献   

14.
Plant Viruses Transmitted by Whiteflies   总被引:18,自引:0,他引:18  
One-hundred and fourteen virus species are transmitted by whiteflies (family Aleyrodidae). Bemisia tabaci transmits 111 of these species while Trialeurodes vaporariorum and T. abutilonia transmit three species each. B. tabaci and T. vaporariorum are present in the European–Mediterranean region, though the former is restricted in its distribution. Of the whitefly-transmitted virus species, 90% belong to the Begomovirus genus, 6% to the Crinivirus genus and the remaining 4% are in the Closterovirus, Ipomovirus or Carlavirus genera. Other named, whitefly-transmitted viruses that have not yet been ranked as species are also documented. The names, abbreviations and synonyms of the whitefly-transmitted viruses are presented in tabulated form together with details of their whitefly vectors, natural hosts and distribution. Entries are also annotated with references. Whitefly-transmitted viruses affecting plants in the European–Mediterranean region have been highlighted in the text.  相似文献   

15.
Broad bean mottle virus (BBMV) was transmitted from infected to healthy faba-bean plants by the curculionid weevilsApion radiolus Kirby,Hypera variabilis Herbst,Pachytychius strumarius Gyll,Smicronyx cyaneus Gyll, andSitona lineatus L. The latter appeared to be an efficient vector: acquisition and inoculation occurred at the first bite, the rate of transmission was c. 41%, and virus retention lasted for at least seven days.S. lineatus transmitted the virus from faba bean to lentil and pea, but not to the three genotypes of chickpea tested. This is the first report on the generaHypera, Pachytychius, andSmicronyx as virus vectors, and onA. radiolus, H. variabilis, P. strumarius, andS. cyaneus as vectors of BBMV.Out of 351 samples of food legumes with symptoms suggestive of virus infection, 16, 11, 19, and 17% of the samples of chickpea, lentil, pea, and common bean, respectively, were found infected when tested for BBMV in DAS-ELISA. This is the first report on the natural occurrence of BBMV in chickpea, lentil, pea, and common bean. The virus should be regarded as a food-legume virus rather than a faba-bean virus solely, and is considered an actual threat to food legume improvement programmes.  相似文献   

16.
A collection of 38 PVY isolates from seed potato batches, originating from several Western European countries, was characterized by using current biological, serological and molecular tools differentiating PVY strains and groups. The correlation between the three kinds of tests was good but not absolute. No single serological or PCR method was able to discriminate among the five isolate groups found. Twenty-nine isolates belonged to the PVYN strain and six to the PVYO strain. No PVYC was found. Two other isolates reacted serologically like PVYO, but were unable to elicit a hypersensitive response from the Nytbr gene and probably represent the PVYZ group. At the molecular level, these two isolates showed a combination of both PVYO and PVYN and could be recombinants of these strains. Another isolate reacted serologically like PVYO, but induced vein necrosis in tobacco, like PVYN-Wilga. Some PVYN isolates caused tuber ring necrosis in glasshouse conditions. These might belong to the PVYNTN group. The PVYNTN, PVYN-Wilga and PVYZ groups probably represent pathotypes within strains PVYN and PVYO, respectively. The present study also confirms previous reports showing a high genetic variation at the 5 end within the PVYN strain.  相似文献   

17.
The phenology of the autumn leafroller,Syndemis musculana, a local pest of apple, was studied in order to forecast larval emergence. From 1983–1986, peak flight as determined with sexpheromone traps was always between 13–18 May. The duration of embryonic development was determined at various constant temperatures and used to estimate the periods of egg hatch in these four years. Each year, most eggs should have hatched in the second decade of June.Differences in attack rates between apple cultivars seem to be explained largely by the variation in picking time. Larvae are only half grown at the beginning of harvest (cv. James Grieve), and have gone into hibernation when the latest variety (cv. Golden Delicious) is picked. Moreover, the varieties Cox's Orange Pippin and Belle de Boskoop, picked about half time, are liable to receive additional damage by caterpillars brought with the picked fruits into storage.Various hymenopterous parasites were reared from caterpillars. As the only leafroller in the orchard which hibernates as mature larva,S. musculana may promote winter survival of some parasitoids, like the eulophidColpyclypeus florus.Samenvatting De fenologie van de herfstbladroller (Syndemis musculana Hübner), een incidentele plaag op appel, werd nader bepaald met het doel het uitkomen van de eieren te kunnen voorspellen. In 1983–1986 viel de piekvlucht, bepaald met behulp van feromoonvallen, steeds tussen 13 en 18 mei.De ontwikkelingsduur van de eieren bij verschillende constante temperaturen werd gebruikt om de periode van uitkomen te schatten. De meeste eieren zullen ieder jaar in de eerste helft van juni uitkomen.Geconstateerde verschillen in schade tussen appelrassen blijken goeddeels terug te voeren op verschillen in pluktijdstip. De rupsen van de herfstbladroller zijn pas half-was als de eerste appels eind augustus geplukt worden, terwijl tegen het einde van de oogst begin oktober de meeste al in winterslaap zijn. Met name tussentijdse rassen, als Cox's Orange Pippin and Schone van Boskoop, lopen extra schade op doordat grotere rupsen met de geplukte vruchten in de kist terecht komen.Uit de rupsen werden negen, al van andere boomgaardbladrollers bekende, sluipwespen gekweekt, Omdat deze bladrollersoort, als enige in de boomgaard, als volgroeide rups overwintert, lijkt zij bij uitstek geschikt als winterwaard.This study was carried out at the Experimental Orchard De Schuilenburg, Schuilenburg 3, 4041 BK Kesteren, the Netherlands, to which address correspondence should be addressed.  相似文献   

18.
Molecular diagnostic techniques have been developed to differentiate the Ascochyta pathogens that infect cool season food and feed legumes, as well as to improve the sensitivity of detecting latent infection in plant tissues. A seed sampling technique was developed to detect a 1% level of infection by Ascochyta rabiei in commercial chickpea seed. The Ascochyta pathogens were shown to be genetically diverse in countries where the pathogen and host have coexisted for a long time. However, where the pathogen was recently introduced, such as A. rabiei to Australia, the level of diversity remained relatively low, even as the pathogen spread to all chickpea-growing areas. Pathogenic variability of A. rabiei and Ascochyta pinodes pathogens in chickpea and field pea respectively, appears to be quantitative, where measures of disease severity were based on aggressiveness (quantitative level of infection) rather than on true qualitative virulence. In contrast, qualitative differences in pathogenicity in lentil and faba bean genotypes indicated the existence of pathotypes of Ascochyta lentis and Ascochyta fabae. Therefore, reports of pathotype discrimination based on quantitative differences in pathogenicity in a set of specific genotypes is questionable for several of the ascochyta-legume pathosystems such as A. rabiei and A. pinodes. This is not surprising since host resistance to these pathogens has been reported to be mainly quantitative, making it difficult for the pathogen to overcome specific resistance genes and form pathotypes. For robust pathogenicity assessment, there needs to be consistency in selection of differential host genotypes, screening conditions and disease evaluation techniques for each of the Ascochyta sp. in legume-growing countries throughout the world. Nevertheless, knowledge of pathotype diversity and aggressiveness within populations is important in the selection of resistant genotypes.  相似文献   

19.
In the summer of 2004 an epidemic of sclerotinia blight of peanut, a disease caused by Sclerotinia minor, occurred in Texas in fields where the disease was never previously detected. The disease was observed on many plants within one of the fields (>3000 disease foci), although most foci were <1 m. It is hypothesized that these observations were inconsistent with the recent introduction of a monocyclic pathogen, even if disease developed under conducive environmental conditions. The pattern of disease is most suggestive of the presence of foliar (ascospore) infections, although air temperature was above the known limits for apothecia development if the pathogen had arrived in the field in 2004 peanut seed. To further examine this epidemic, 232 isolates were collected, across a variety of spatial scales spanning this field and other Texas peanut fields, and evaluated for aggressiveness, fungicide sensitivity and genotypic diversity. There was wide variation among isolates for the phenotypic characteristics measured, but there was no evidence that a genotypically unique, highly aggressive, and fungicide resistant isolate had been introduced or evolved. The predominant genotype, TX1, which contained 154 isolates, was found in every county and field population.  相似文献   

20.
In 1975 many tumours were observed in plants ofBegonia Schwabenland grown in Aalsmeer. Submersion of the roots ofNicotiana megalosiphon seedlings in a homogenate of tumorous tissue, induced tumours after two weeks. Short periods of submergence yielded results similar to those obtained after longer periods. Tumour homogenates lost their infectivity after ten min at 50°C. Aphids transmitted the infectious agent.Treatment with propylene oxide did not inhibit infectivity completely. Filtration through a 450 nm filter removed the infectious agent.Tobacco tumor virus or a viroid could not be isolated. Cultures ofCorynebacterium fascians, isolated from tumours ofN. megalosiphon were highly infectious and induced tumours in healthyN. megalosiphon andBegonia. Tumorous tissue homogenates ofPelargonium zonale, Dahlia sp.,Gladiolus sp., andLilium sp. also caused tumours inN. megalosiphon, from whichC. fascians was isolated. It was not possible to produce tumours inN. megalosiphon with homogenates from roses with symptoms of bud proliferation.Samenvatting In 1975 werden vele tumoren waargenomen inBegonia Schwabenland op Aalsmeerse bedrijven (Fig. 1). De infectiositeit van tumorweefsel kon goed en snel worden vastgesteld door de wortels van zaailingen vanNicotiana megalosiphon in een homogenaat van tumorweefsel te dompelen. Tumoren ontstonden na twee weken, de eindbeoordeling geschiedde na een maand (Fig. 2). Ook verschillende andereNicotiana spp.,Melilotus officinalis (Fig. 3) enPisum odoratum (Fig. 4) werden aangetast.Bij de infectiositeitstoets gaven zeer korte dompeltijden even goede resultaten als langere (Tabel 1). Infectieus sap verloor zijn infectievermogen na 10 min verhitting bij 50°C. Bladluizen brachten de smetstof over. Propyleenoxide verminderde de infectiositeit wel, doch onderdrukte deze niet totaal. Bij filtratie door een 450 nm filter bleef het infectieuse agens op het filter achter. Het tumor-inducerende agens was ook aanwezig in die delen van planten met tumoren welke gezond leken en het ging voor een gering deel over met zaad (Tabel 2).Uit tumoren konden wij geen tabakstumorvirus of een viroïde isoleren. Culturen vanCorynebacterium fascians, geïsoleerd uit tumoren vanN. megalosiphon bleken zeer infectieus en veroorzaakten tumoren inN. megalosiphon enBegonia. Homogenaten van tumorweefsel vanPelargonium zonale, dahlia (Fig. 5), gladiool (Fig. 6) enLilium Mid Century Hybrid Enchantment (Fig. 7) veroorzaakten ook tumoren opN. megalosiphon, waaruitC. fascians werd geïsoleerd. Met sap van kroeskopzieke rozen konden wijN. megalosiphon niet besmetten.  相似文献   

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