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1.
哈茨木霉菌(Trichoderma harzianum)和终极腐霉菌(Pythium ultimum)对玉米蛋白质组的影响(I) 总被引:1,自引:0,他引:1
哈茨木霉(Trichoderma harzianum) T22菌株已普遍用于防治包括由终极腐霉(Pythium ultimum)引起的苗病或根腐病在内的各种病害。玉米自交系Mo17种子经T22处理后播种在接种腐霉或未接种的田间土壤内,5 d后取幼苗的根系或幼茎提取蛋白。结果表明:在接种腐霉菌的土壤内,未进行T22处理的5 d龄幼苗长势明显比对照差,而经T22处理的幼苗长势明显比对照好。T22和腐霉菌复合处理及T22单独处理对幼苗生长影响基本相同。本研究建立了蛋白质提取和双向电泳分离技术。通过双向电泳及相应的分析软件(PDQuestTM 2-D softw are)可将不同处理的幼苗自交系蛋白进行分离。T22菌株处理的根系产生104种上游调控蛋白和164种下游调控蛋白,T22与腐霉菌复合处理可产生97种上游调控蛋白和150种下游调控蛋白,而用腐霉菌单一处理诱导的上游或下游蛋白的数量明显少于上述2个处理。T22或腐霉菌单一或复合处理的根系蛋白质组图谱与空白对照相比差异显著,它们与对照的蛋白质组图谱相似系数分别为0.72、0.51和0.49;T22与腐霉菌分别处理的蛋白质组图谱间也相差明显,两者的相似系数仅为0.65。进一步研究发现,T22菌体蛋白质组图谱与上述各种处理的蛋白质组图谱相似系数均很低,说明各种处理诱导后的幼苗根系蛋白质组组分主要来自植物本身,其变化主要因T22或腐霉菌的诱导所致。腐霉菌的侵染对寄主根系蛋白组图谱影响明显高于T22的作用。蛋白质组中各种蛋白质的质谱分析(M ALDI-TOF)与鉴定将另文发表。 相似文献
2.
灰霉菌(Botrytis cinerea)采后致病性研究 总被引:5,自引:0,他引:5
灰霉菌(Botrytis cinerea)是引起葡萄采后病害的主要病原真菌之一。葡萄灰霉菌可在田间潜伏侵染,采后由健康果实携带进入销售市场,该菌的显著致病症状为果实软腐和脱落。灰霉菌与葡萄的其它采后致病菌,如链格孢菌(Alternaria alternata)、镰刀菌(Fusarium sp.)、芽枝霉(Cladosporium sp.)、青霉菌(Penicillium sp.)、黑曲霉(Aspergillus nigar)和粉红单端孢菌(Trichothecium roseum)相比,不仅表现出明显的潜伏侵染优势,而且具有较强的低温(4℃)条件下的致病优势。4℃低温下灰霉菌在寄主葡萄体外和体内分泌多聚半乳糖醛酸酶(PG)活力均显著高于以上各菌,而在25℃下无显著差异,这一结果与该2种温度下灰霉菌接种果实后的症状表现一致。 相似文献
3.
大豆疫霉菌对甲霜灵(Metalaxyl)的敏感性及变异性 总被引:1,自引:0,他引:1
大豆疫霉菌(Phytophthora megasperma f.sp.glycinea)对甲霜灵的敏感性及变异性研究结果表明,17个中国大豆疫霉菌侏菌丝生长对甲霜灵较敏感,Ec50值平均为0.0098ppm,Ec95值平均为2.6295ppm。但不同菌株对甲霜灵的敏感性不同,Ec50值范围在0.0042~0.0297ppm之间,相差7倍左右。Ec95值范围在0.7688~6.1682ppm之间,相差8倍左右。3个美国菌株菌丝体生长对甲霜灵有一定耐药性,Ec50值范围在0.3725~0.4813ppm之间,Ec95值范同在125.97~280.59ppm之间,分别比中国大豆疫霉菌株Ec50值和Ec95值平均高43倍和77倍。单孢分离物菌丝体生长对甲霜灵敏感性变异较大,B1菌株单孢分离物Ec50值范围在0.0058~0.2537ppm之间,S367菌株的单孢分离物的Ec50值范围在0.0069~0.1735ppm之间,分别相差43倍和25倍。有的单孢分离物对甲霜灵的耐药性增高。各菌株孢子囊和卵孢子产生对甲霜灵敏感性有一定差异,但1.0ppm的甲霜灵对其抑制率均为100%。活体测定结果表明,1.0ppm的甲霜灵对该病的防效达94~100%。 相似文献
4.
大豆疫霉菌对甲霜灵(Metalaxyl)的敏感性及变异性 总被引:5,自引:0,他引:5
大豆疫霉菌(Phytophthora megasperma f.sp.glycinea)对甲霜灵的敏感性及变异性研究结果表明,17个中国大豆疫霉菌侏菌丝生长对甲霜灵较敏感,Ec50值平均为0.0098ppm,Ec95值平均为2.6295ppm。但不同菌株对甲霜灵的敏感性不同,Ec50值范围在0.0042~0.0297ppm之间,相差7倍左右。Ec95值范围在0.7688~6.1682ppm之间,相差8倍左右。3个美国菌株菌丝体生长对甲霜灵有一定耐药性,Ec50值范围在0.3725~0.4813ppm之间,Ec95值范同在125.97~280.59ppm之间,分别比中国大豆疫霉菌株Ec50值和Ec95值平均高43倍和77倍。单孢分离物菌丝体生长对甲霜灵敏感性变异较大,B1菌株单孢分离物Ec50值范围在0.0058~0.2537ppm之间,S367菌株的单孢分离物的Ec50值范围在0.0069~0.1735ppm之间,分别相差43倍和25倍。有的单孢分离物对甲霜灵的耐药性增高。各菌株孢子囊和卵孢子产生对甲霜灵敏感性有一定差异,但1.0ppm的甲霜灵对其抑制率均为100%。活体测定结果表明,1.0ppm的甲霜灵对该病的防效达94~100%。 相似文献
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“霜霉威(Propamocarb)”“甲霜灵(Metalaxyl)”对我国辣椒疫霉菌作用方式比较及交互抗性的研究 总被引:7,自引:0,他引:7
通过霜霉威(Propamocarb商品名普力克)、甲霜灵(Metalaxyl商品名瑞毒霉)对辣椒疫霉菌(Phytophthora capsici)6个菌株作用方式的体外测定结果表明,霜霉威浓度在2000ppm时对P. capsici孢子囊和卵孢子的形成,游动孢子的释放、游动及休止孢萌发、菌丝体的生长没有明显的抑制作用。而甲霜灵对P. capsici的各种孢子的产生及菌丝体的生长有较强的抑制作用,对菌丝体生长抑制的Ec_(50)和Ec_(95)分别为0.5596ppm和2.1511ppm;对孢子囊形成抑制的Ec_(50)和Ec_(95)分别为0.1520ppm和15.0032ppm。0.1ppm的甲霜灵可显著抑制卵孢子的生成。但500ppm的甲霜灵对于游动孢子的释放和休止孢萌发没有明显的抑制作用。对霜霉威和甲霜灵的体内活性试验结果表明,800ppm的霜霉威对辣椒疫霉菌的内吸保护防效达94%,1.0ppm的甲霜灵对该病的防效达100%。室内初步试验结果表明,甲霜灵与霜霉威对P. capsici没有交互抗性。 相似文献
10.
“霜霉威(Propamocarb)”“甲霜灵(Metalaxyl)”对我国辣椒疫霉菌作用方式比较及交互抗性的研究 总被引:2,自引:0,他引:2
通过霜霉威(Propamocarb商品名普力克)、甲霜灵(Metalaxyl商品名瑞毒霉)对辣椒疫霉菌(Phytophthora capsici)6个菌株作用方式的体外测定结果表明,霜霉威浓度在2000ppm时对P. capsici孢子囊和卵孢子的形成,游动孢子的释放、游动及休止孢萌发、菌丝体的生长没有明显的抑制作用。而甲霜灵对P. capsici的各种孢子的产生及菌丝体的生长有较强的抑制作用,对菌丝体生长抑制的Ec50和Ec95分别为0.5596ppm和2.1511ppm;对孢子囊形成抑制的Ec50和Ec95分别为0.1520ppm和15.0032ppm。0.1ppm的甲霜灵可显著抑制卵孢子的生成。但500ppm的甲霜灵对于游动孢子的释放和休止孢萌发没有明显的抑制作用。对霜霉威和甲霜灵的体内活性试验结果表明,800ppm的霜霉威对辣椒疫霉菌的内吸保护防效达94%,1.0ppm的甲霜灵对该病的防效达100%。室内初步试验结果表明,甲霜灵与霜霉威对P. capsici没有交互抗性。 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.
Epidemiology of Toxigenic Fungi and their Associated Mycotoxins for Some Mediterranean Crops 总被引:9,自引:0,他引:9
Antonio Logrieco Antonio Bottalico Giuseppina Mulé Antonio Moretti Giancarlo Perrone 《European journal of plant pathology / European Foundation for Plant Pathology》2003,109(7):645-667
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.
M. Fortass S. Diallo 《European journal of plant pathology / European Foundation for Plant Pathology》1993,99(4):219-226
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
14.
B. Blanco-Urgoiti M. Tribodet S. Leclere F. Ponz C. Pérez de san román F.J. Legorburu C. Kerlan 《European journal of plant pathology / European Foundation for Plant Pathology》1998,104(8):811-819
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
15.
L. Blommers H. Helsen F. Vaal 《European journal of plant pathology / European Foundation for Plant Pathology》1988,94(2):95-103
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
16.
F. K. Crutcher M. A. Henry‐Gregory H. H. Wilkinson S. E. Duke T. Wheeler C. M. Kenerley 《Plant pathology》2018,67(4):839-847
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
17.
Pedro W. Crous J.Z. Groenewald Walter Gams 《European journal of plant pathology / European Foundation for Plant Pathology》2003,109(8):841-850
Four species so far classified in Pseudocercosporella or Ramulispora (hyphomycetes) are associated with eyespot disease symptoms of cereals. Two of these have been linked to teleomorphs that were described in Tapesia. Sequence data derived from the Internal Transcribed Spacer region (ITS1, 5.8S and ITS2) of the rDNA operon showed, however, that the eyespot fungi associated with Tapesia are not congeneric with Ramulispora sorghi, the type of Ramulispora. The genus name Tapesia is now rejected in favour of the conserved name Mollisia, which appears to comprise heterogeneous fungi. Tapesia yallundae is not closely related to the type of Mollisia, M. cinerea, but clusters separately, being more closely allied to species with Cadophora anamorphs. A new holomorph genus, Oculimacula, is therefore proposed for teleomorphs of the eyespot fungi, while the anamorphs are accommodated in Helgardia gen. nov. 相似文献
18.
Dr. M. Schulte 《Gesunde Pflanzen》2005,57(2-3):37-46
Zusammenfassung Herbizidresistente Kulturpflanzen nehmen unter den derzeit weltweit angebauten gentechnisch veränderten Ackerbaukulturen Sojabohne, Baumwolle, Raps und Mais den weit überwiegenden Anteil ein. Als Ursachen für die rasche Zunahme der Anbauflächen herbizidresistenter Sorten sind unter anderem die Unzulänglichkeiten der für diese Kulturen bestehenden Herbizidlösungen sowie die Zunahme der pfluglosen Bestellverfahren zu sehen. Im Gegenzug hat die Minimalbodenbearbeitung aufgrund der Einführung der Herbizidresistenztechnologie, insbesondere in Sojabohne, ein ausgeprägtes Flächenwachstum erfahren.Als Entscheidungskriterien für die Wahl des Unkrautbekämpfungssystems unter Einbezug des Anbaus herbizidresistenter oder konventioneller Sorten lassen sich aus den Erfahrungen der vergangenen 8 Jahre anführen: Sortenleistung, erhöhte Kulturverträglichkeit und zeitliche Anwendungsflexibilität, Wirkungssicherheit einer Nachauflaufbehandlung in Trockenregionen, Wirkungsbreite, Wirkungsdauer und Bekämpfung resistenter Unkrautbiotypen. Aufgrund fehlender Zulassungen und Kennzeichnungsvorschriften in wichtigen Exportmärkten sind für den Anbau transgener Sorten in Übersee auch Vermarktungseinschränkungen sowie für den Anbau in Europa Haftungs- und Koexistenzregeln wichtige einzelbetriebliche Entscheidungsparameter.Fortschritte erfährt die Herbizidresistenztechnologie kurz- und mittelfristig in der Weiterentwicklung bereits praktizierter Spritzfolgen und Tankmischungen zu Fertigformulierungen der Komplementärherbizide mit residualen Partnern. Zur Bekämpfung und Vorbeugung der Ausbreitung neuer herbizidresistenter Biotypen werden die Komplementärherbizide mit Partnern anderer Wirkungsmechanismen kombiniert. Weitere Entwicklungen sind die Kombination verschiedener transgener Merkmale mit der Herbizidresistenz sowie die Ausweitung von den derzeit dominierenden Kulturen auf weltweit weniger bedeutsame Kulturen, in denen die Entwicklung neuer konventioneller Herbizidwirkstoffe bisher wenig erfolgreich war oder im Verhältnis zum Aufwand nur bedingt attraktiv ist. Für die langfristige Entwicklung könnte die Plastidentransformation zur Verhinderung einer unerwünschten Ausbreitung transgener Merkmale Bedeutung erlangen. 相似文献
19.
P. Oyarzun M. Gerlagh A. E. Hoogland 《European journal of plant pathology / European Foundation for Plant Pathology》1993,99(1):23-33
Research on root rot pathogens of peas in the Netherlands has confirmed the prevalence ofFusarium solani, F. oxysporum, Pythium spp.,Mycosphaerella pinodes andPhoma medicaginis var.pinodella. Aphanomyces euteiches andThielaviopsis basicola were identified for the first time as pea pathogens in the Netherlands. Other pathogens such asRhizoctonia solani andCylindrocarpon destructans were also found on diseased parts of roots.
F. solani existed in different degrees of pathogenicity, and was sometimes highly specific to pea, dwarf bean of field bean, depending on the cropping history of the field.A. euteiches was specific to peas, whereasT. basicola showed some degree of physiological specialization. 相似文献
20.
R. A. Daamen C. J. Langerak W. Stol 《European journal of plant pathology / European Foundation for Plant Pathology》1991,97(2):105-114
Data from surveys of winter wheat fields in the period 1974–1986 and of seed lots in the period 1962–1986 and identifications of diseases on plant samples were compiled to describe the occurrence of snow mould (Monographella nivalis) andFusarium spp. On average,M. nivalis dominated overFusarium spp. The complex ofFusarium spp. constituted mainly ofF. culmorum, followed byF. avenaceum andF. graminearum. M. nivalis was dominant in May on stem-bases and in July on leaves and leaf sheaths. On seedsM. nivalis predominated only in years with low temperatures in July and August.Average brown footrot infection in the field was 4% tillers in May and 5% culms in July. Brown footrot intensity in July was high in cropping seasons with high precipitation in October and with low temperatures in October, November and December. In July during the early eighties, an average of 8% of leaves and 6% of flag leaf sheaths were infected byM. nivalis. Average ear blight incidence was 1.2% glumes infected. Seed contamination by these pathogens averaged 16% in the years 1962–1986. The contamination was high in years with high precipitation in June, July and August. Aspects of cv. resistance and yield loss are illustrated. 相似文献