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81.
WhenErwinia amylovora grows, in an intercellular space of a host, and fills this space, further multiplication or swelling may create a pressure, and may cause tearing of host tissue. Theoretically, this bacterial pressure equals the actual water potential of the host tissue minus the water potential at which the bacterial biomass would completely fill the intercellular space, but without exerting pressure.Simulation runs indicate that, when the pressure increases, the extracellular slime ofE. amylovora shrinks by releasing water, thus allowing further production of bacterial dry matter. The slime remains around the bacterial cells as a dense substance, low in water content, having a strong capacity to swell when the pressure induces tearing apart of the host tissue. Simulation runs show that the pressure attains its highest values at evening and night.Some fire blight symptoms that illustrate the evidence of bacterial pressure are discussed.  相似文献   
82.
Epidemics ofPuccinia recondita and resulting yield loss of winter wheat were studied in field experiments over three seasons in the Netherlands. Results are reported and used to construct an advisory model for control of brown rust, based on rust monitoring. If the fraction of leaves with rust (I) at a certain development stage is determined, the average number of rust sori per leaf (M) was estimated by: M=EXP(1.84+1.39ln(ln[1/(1-I)]). The final number of sori per leaf (Mf) at early dough was forecast by an exponential growth: Mf=M·EXP(RGR·t). The relative growth rate (RGR) averaged 0.163/day and the forecasting period, t, until early dough, was derived from published data. The forecast number of sori-days per leaf (S, AUDPC-value) was then obtained by: S=(Mf-M)/RGR. Yield loss (kg/ha) by brown rust was 1.15 times the number of sori-days per leaf at low rust intensities. The efficacy of the fungicides used was 85%. The forecast avoidable yield loss (L, kg/ha) was calculated by: L=0.85 (1.15 S). Economic thresholds for brown rust control at different development stages are given for Dutch wheat fields at a cost level of 270 kg/ha for one fungicide application.  相似文献   
83.
 试验结果表明,本菌(Stemphylium vesicarium(Wallr.) Simons)以病残体上分生孢子和菌丝体在田间和冷藏室越冬,9月至翌年6月检查,分生孢子萌发率为16.4~41.3%。人工接种试验指出,不论有无伤口,病菌均可侵染大蒜,但洋葱与大葱在伤口接种条件下病情较重。在自然条件下,大蒜的斑点型病状出现于6月下旬,7月为病情高峰期。影响病情的天气因素,主要是7月份温度和7月中旬的降水量(r=0.69)。如果7月雨次多、雨时长,病情即极为严重,可导致蒜田绝收。化学防治试验结果,以腐霉利防效最佳。从7月上旬开始,每间隔10~13天喷药1次。喷药2~3次即可取得较好的防治效果。  相似文献   
84.
“早衰”是高粱生产和育种上存在的普遍现象。长期以来被认为是一种生理性病害。经4年研究证明它是草酸青霉(Penicilliem axalicum)和纤细交链孢霉(Allernaria allernala)于初花期浸染而引起的一种高粱穗部病害。主要症状是颖壳及与其连接的枝梗组织坏死,阻止了养分、水分向上输导,造成籽粒秕瘦变小。一般减产10%以上。这是国内首次报道的高粱新病害,定名为高粱青霉颖枯病,此病在初花期用多菌灵防治有较好效果。  相似文献   
85.
Urediospores ofPuccinia recondita f.sp.tritici were applied to wheat seedlings. Inoculated plants were placed in a growth chamber to expose the spores to dry periods from zero to nine days at near-optimal temperatures (ca 18 °C). The dry period was followed by a wet period varying from 2 to 24 hours for germination of spores and infection of plants. Infection results were subjected to analysis of variance. The main effects dry period, wet period, and temperature were highly significant. The dry period×wet period interaction was significant. The interaction implied that the effects of post-detachment, ripening of germinable spores appeared in their resulting infectivity. There were two forms of post-detachment ripening, a slow ripening during the dry period and a faster ripening during the wet period. The two forms of ripening showed a non-additive compensatory interaction. The effect of post-detachment ripening on infectivity of germinated spores was more pronounced at 15 than, at 18 or 20 °C; the effect was strongest during the first day of the dry period. At dry periods of over 6 days, infectivity of germinated spores decreased, especially at the higher temperatures. Prolonged exposure, of spores to a dry period apparently damages the spores even though they are still able to germinate.Samenvatting Uredosporen van de bruine roest van tarwe (Puccinia recondita f.sp.tritici) werden over het eerste blad van tarwekiemplanten verstoven. De aldus geïnoculeerde planten werden in een klimaatkamer geplaatst bij ca. 18 °C om de sporen bloot te stellen aan droge perioden van 0 tot 9 dagen. De droge perioden werden gevolgd door natte perioden van 2 tot 24 uur om de sporen te laten kiemen en de planten te infecteren. Na de natte periode werden de planten bij verschillende temperature geplaatst om de latente periode en de vorming van sporenhoopjes te bepalen. De hoofdeffecten op de vorming van sporenhoopjes waren zeer significant: duur van de droge periode, duur van de natte periode en temperatuur. Twee vormen van sporenrijping werden gevonden bij rijping vnn sporen, die los op het blad lagen (rijping, buiten de sporenhoopjes), een langzame rijping tijdens de droge periode en een snelle rijping tijdens de natte periode. Deze twee vormen van rijping vertoonden statistische interactie met enige wederzijdse compensatie. Het effect van deze sporenrijping (buiten de sporenhoopjes) op de infectiviteit van gekiemde sporen was bij 15 °C duidelijker dan bij 18 en 20 °C; het effect was het sterkst tijdens de eerste dag van de droge periode. Bij droge periodes langer dan 6 dagen daalde de infectiviteit, vooral bij de hogere temperaturen.  相似文献   
86.
It became apparent from chemical late blight control data on large numbers of genotypes of the Rwandese late blight screening programme, that yields were linearly related to the amount of intercepted radiation by the crop. Measures which affected the total amount of intercepted radiation such as the use of contact and systematic fungicides, or of different genotypes, did not affect the radiation use efficiency of the canopy. Genotypes that started to tuberize at relatively low values of intercepted radiation partly escaped the effect of late blight infection of the foliage on tuber yields. This characteristic could be useful to identify early late blightresistant genotypes for central Africa, where farmers grow two crops per year and earliness is required.Samenvating De chemische bestrijding van de aardappelziekte in grote aantallen genotypen van het Rwandese veredelingsprogramma voor aardappelziekteresistentie heeft aangetoond dat opbrengsten zich lineair verhouden tot de hoeveelheid door het gewas opgevangen zonnestraling. Maatregelen die van invloed waren op de totale hoeveelheid opgevangen straling, zoals het gebruik van contact- of systemische schimmelbestrijdingsmiddelen, of van verschillende genotypen, waren niet van invloed op het rendement van het gebruik van zonnestraling door het blad. Genotypen die een knolaanleg vertoonden bij verhoudingsgewijze lage waarden van opgevangen straling, ontsnapten gedeeltelijk aan het effect van bladaantasting op knolopbrengst. Dit kenmerk zou van nut kunnen zijn om vroege genotypen te zoeken met resistentie tegen de aardappelziekte in centraal Afrika, waar vroegheid van belang is omdat boeren twee gewassen per jaar telen.  相似文献   
87.
墨兰黑斑病在广州地区为害严重,每年于12月中旬开始出现新病斑,翌年2—3月阴雨连绵时为发病高峰期;种植在闭风闷热及受阳光直射的环境下,病害更重。其病原鉴定为蝴蝶兰柱盘孢(Cylindrosporium phalaenopsidis Sawada),刺伤接种可为害8种兰科植物。在墨兰的生产中,加强管理,及时剪除清理病叶:在广州结合12月至翌年3月发病前喷1%波尔多液预防,发病后喷40%灭病威600倍液2—3次,对该病有较好的防治效果。  相似文献   
88.
When screening the genusNicotiana for sensitive and differential hosts for a group of mechanically transmissible plant viruses with narrow host ranges, development of systemic symptoms was alsmost exclusively observed in species of three closely related sections of the subgenusPetunioides. These species wereN. miersii (sectionAcuminatae),N. bigelovii andN. clevelandii (Bigelovianae) andN. benthamiana, N. cavicola, N. ingulba, N. occidentalis, N. rosulata andN. rotundifolia (Suaveolentes). Except forN. benthamiana andN. clevelandii, which are already known for their large virus ranges, they are new experimental hosts that appeared very useful for detection of viruses and for differentiation of viruses that closely resemble each other in host range. Accessions of the same species often varied largely in local and systemic viral response. EspeciallyN. benthamiana-9,N. miersii-33 andN. occidentalis-37B (code numbers given by Tobacco Research Laboratory, Oxford, N.C., USA) are recommended for routine inoculation tests. The sensitiveSuaveolentes species mentioned are native to the arid parts of Australia. Collections of these species deserve attention in studies on virus diseases of unknown etiology where experimental hosts are lacking.Samenvatting In het genusNicotiana werden vatbare, gevoelige en differentiële toetsplanten opgespoord door toetsing van vooral de collectie van het Tobacco Research Laboratory (Oxford, N.C., VS) met een aantal virussen waarvoor weinig of geen bruikbare toetsplanten bekend waren. Systemische reacties werden bijna uitsluitend in soorten van drie nauw verwante secties van het subgenusPetunioides waargenomen. Deze soorten warenN. miersii (sectieAcuminatae),N. bigelovii enN. clevelandii (Bigelovianae) enN. benthamiana, N. cavicola, N. ingulba, N. occidentalis, N. rosulata enN. rotundifolia (Suaveolentes). Behalve voor virusvermeerdering bleken deze soorten ook zeer geschikt te zijn voor differentiatie van virussen of virusstammen met een bijna gelijke waardplantenreeks.Collectienummers van één en dezelfde soort konden sterk in lokale en systemische reactie verschillen. VooralN. benthamiana-9,N. miersii-33 enN. occidentalis-37B kunnen voor routine-inoculaties worden aanbevolen. Met uitzondering vanN. benthamiana enN. clevelandii zijn de genoemde soorten of genotypen nieuwe experimentele waardplanten voor de virologie. De soorten die van de sectieSuaveolentes worden genoemd, zijn inheems in de woestijnachtige gebieden van Australië. Verzamelingen daarvan verdienen nadere aandacht bij de diagnostiek van virusziekten waarvoor nog geen experimentele waarplanten voorhanden zijn.  相似文献   
89.
The effects of the mycoparasites Coniothyrium minitans and Trichoderma atroviride on the suppression of alfalfa blossom blight caused by Sclerotinia sclerotiorum were evaluated under indoor and field conditions. When T. atroviride (9·0 × 104 conidia/floret) + S. sclerotiorum (6·0 × 103 ascospores/floret) or C. minitans (9·0 × 104 conidia/floret) + S. sclerotiorum (6·0 × 103 ascospores/floret) were applied to detached young alfalfa florets, T. atroviride effectively inhibited saprophytic growth of S. sclerotiorum, whereas C. minitans showed no inhibition under the same conditions. When T. atroviride (6·9 × 104 conidia/floret) + S. sclerotiorum (6·0 × 103 ascospores/floret) or C. minitans (6·9 × 104 conidia/floret) + S. sclerotiorum (6·0 × 103 ascospores/floret) was applied to young alfalfa petals in vivo just after pollination, the percentage of pod formation was higher for T. atroviride+S. sclerotiorum than that for C. minitans+S. sclerotiorum, and the percentage of pod rot was lower for T. atroviride+S. sclerotiorum than that for C. minitans+S. sclerotiorum. However, when they were applied to senescent petals attached to developing pods of alfalfa at 9·2 × 104 conidia/floret together with S. sclerotiorum at 4·5 × 103 ascospores/floret at 14 days after pollination, C. minitans was more effective than T. atroviride in suppressing sclerotinia pod rot and seed rot of alfalfa. Field experiments showed that three applications of C. minitans (5·4 × 106 conidia mL−1) or T. atroviride (5·4 × 106 conidia mL−1) at a 7-day interval to blossoms of alfalfa effectively suppressed sclerotinia pod rot in two out of three annual trials. Coniothyrium minitans effectively suppressed sclerotinia seed rot in all three years, whereas T. atroviride was not effective against seed rot in any of the trial years. The efficacy of C. minitans was not significantly different (P > 0·05) from benomyl (250 µg ai mL−1). This study suggests that C. minitans has potential as a biocontrol agent to control blossom blight of alfalfa caused by S. sclerotiorum.  相似文献   
90.
Oxolinic acid (OA) has been the only bactericide used against fire blight in pear and quince orchards in Israel since 1998. OA-resistant Erwinia amylovora strains (Ea-OAR) were detected in several orchards in two restricted areas in the northern Galilee region during 1999–2001. In the following years, resistant strains could not be detected in some of these locations. Documenting the fate of Ea-OAR strains in commercial orchards at eight sites in northern Israel during 2000/03 revealed that the resistant population appeared irrespective of the number of sprays applied and the severity of the disease. The persistence of the Ea-OAR populations varied from site to site, ranging from 4 to 20 months; these differences could be attributed to the fire blight management activities of growers. Comparative studies on the fitness of Ea-OAR and E. amylovora strains sensitive to OA (Ea-OAS) were conducted in vitro and in planta using two strains of each group. In four of the six comparisons, disease incidence on detached blossoms inoculated with Ea-OAS was significantly higher than that on blossoms inoculated with Ea-OAR. In two experiments conducted on 8-year-old pear trees grown under netting, the colonization of Ea-OAS in blossoms, annual shoots and perennial spurs was significantly higher than that of the Ea-OAR. In two experiments conducted on 2-year-old trees grown under netting in an experimental station, the incidence of shoots exhibiting fire blight symptoms and the rate of symptom progress within the branches were significantly higher in trees inoculated with Ea-OAS than in those inoculated with Ea-OAR. The results of this study suggest that OA-resistant E. amylovora strains have lower fitness than wild-type strains. These findings may have implications for fire blight management.  相似文献   
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