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1.
Aspects of intensive management practices such as high-yielding cultivars, narrow-row spacings and fungicide treatments could potentially increase cereal yields in regions with a short crop-growing season and occasionally dry and hot weather. A field experiment was carried out at McGill University, Canada for three years (1987 to 1989) to test the effects of triadimefon (1-[4-chlorophenoxy]-3,3-dimethyl-1-[1H-1,2,4-triazol-1-yl]-2-butanone, or Bayleton, a trade name) fungicide (0 vs. 140 g a.i. ha−1) and row spacing (10 vs. 20 cm) on the yield components, yield and other agronomic traits (spike emergence, days to maturity, leaf disease and plant height) of spring barley ( Hordeum vulgare L.) cv. Cadette, Laurier and Leger. A cultivar by row spacing interaction resulted in a 11 to 13.5 % increase in grain yield due to narrow rows for Laurier in two out of the three years and up to 16 % for Leger in one year. Over the three years grain yields were on average increased 6 to 12 % due to use of the narrower row spacing. Fungicide application to barley at the early heading stage effectively controlled leaf diseases without influence on yield components or grain yield. Our results indicate that some components of intensive management such as narrow row spacing can be applicable in regions with a short crop-growing season.  相似文献   
2.
富贵竹室内加工技术研究   总被引:8,自引:1,他引:8  
刘付东标 《园艺学报》2002,29(4):389-391
 设杀菌剂瑞毒霉锰锌、营养液爱多收和促根剂吲哚丁酸不同浓度9个处理组合, 研究其对富贵竹去叶植株修口、顶侧芽生长及生根的影响。结果表明, 瑞毒霉锰锌3水平间修口效果、爱多收3水平间顶侧芽生长、吲哚丁酸3水平间根系生长的差异均极显著; 最佳处理组合, 小竹为0. 8 g/L-1瑞毒霉锰锌+ 0. 15 mL/L-1爱多收+ 30 mg/L-1吲哚丁酸, 大竹为0. 8 g/L-1瑞毒霉锰锌+ 0. 30 mL/L-1爱多收+ 30 mg/L-1吲哚丁酸。  相似文献   
3.
Neurospora crassa对三唑醇的抗药性分子机制研究   总被引:5,自引:0,他引:5  
 通过紫外光诱变获得Neurospora crassa对三唑醇杀菌剂抗性突变体"Nc70"。用2.5μg/ml三唑醇处理,突变体内甲基甾醇与脱甲基甾醇比例变化幅度远远小于亲本敏感菌株"STA"。突变体对三唑醇的吸收能力与敏感菌株相似,但药剂在体细胞内积累较少。三唑醇处理N.crassa 2 h后,药剂在菌体内的含量趋向稳定,突变体内的药量较敏感菌体低56.1%,而麦角甾醇合成量则高于敏感菌株53.7%。  相似文献   
4.
Watermelon yield loss due to Fusarium wilt is increasing in the U.S., due in part to the emergence of the virulent race 2 of Fusarium oxysporum f. sp. niveum, and to the shift in production to triploid cultivars, which generally have less host resistance than previously grown diploid cultivars. One potential management strategy is the use of soil-applied fungicides to reduce Fusarium wilt. The U.S. national program, interregional project 4 (IR-4) supported multistate trials of soil-applied chemicals to manage Fusarium wilt of watermelon. Greenhouse trials were conducted in Maryland, Indiana and Georgia to test the efficacy of 14 chemicals on Fusarium wilt. Based on the performance of these chemicals in the greenhouse, six in Maryland and Delaware and eight in Indiana were selected for subsequent field evaluations. These chemicals were applied once, as a drench at planting, in field trials in Maryland, Indiana, and Delaware in 2008. The fungicides prothioconazole, acibenzolar-S-methyl, and thiophanate-methyl resulted in the greatest reduction in Fusarium wilt, and caused no phytotoxicity. In Maryland and Indiana in 2009, these chemicals were applied through the drip irrigation line alone and in combination, at 0, 2 and 4 weeks after planting. The experiment was repeated in 2010 in Maryland. Prothioconazole alone and in combination with acibenzolar-S-methyl or/and thiophanate-methyl resulted in the greatest decrease in the area under the disease progress curve (AUDPC) of Fusarium wilt of watermelon in Maryland in 2009. The same trend was observed in 2010 in Maryland where three of the prothioconazole treatments ranked the lowest of all treatments and prothioconazole in combination with thiophanate-methyl had significantly lower Fusarium wilt AUDPC compared to the non-treated control. All chemical applications except for acibenzolar-S-methyl in combination with prothioconazole reduced Fusarium wilt AUDPC in Indiana in 2009. Prothioconazole alone and prothioconazole in combination with thiophanate-methyl ranked lowest in Fusarium wilt AUDPC, although not significantly lower than most other treatments. These studies are the first to demonstrate that the soil-applied fungicides prothioconazole and thiophanate-methyl may provide an additional field management option for Fusarium wilt of watermelon.  相似文献   
5.
Grain yields of winter wheat (Triticum aestivum L.) in the southern Great Plains are often reduced by the presence of foliar diseases. This study was conducted to determine whether the application of foliar fungicides is an economically optimal management strategy. The effects of fungicide treatment on commercially available hard red winter wheat varieties with differing levels of genetic resistance (i.e., resistant, intermediate, and susceptible) to foliar diseases were investigated at two locations, Apache and Lahoma, OK, USA, for the harvest years 2005–2012. Two fungicides were rotated between the two locations and applied at approximately Feekes growth stage 9–10.5. When averaged across years, plots to which fungicide was applied generated greater average net returns than plots that did not receive fungicide for susceptible varieties at Apache, and for resistant, intermediate, and susceptible varieties at Lahoma. However, foliar fungicide application was not economical in every year at either location suggesting fungicide use should be reassessed each year given that profitability depends on year specific yield potential, prices, and foliar disease conditions. At both locations high disease incidence occurred in all but one site-year when the average March through May relative humidity exceeded 65%. Additional research would be required to determine the relationship between weather, including relative humidity, and disease incidence, and to develop an economic threshold for treatment decision aid.  相似文献   
6.
为探明不同杀菌剂对向日葵菌核病的田间防治效果,采用菌丝生长速率法和孢子萌发法测定5种杀菌剂对向日葵菌核病菌的菌丝生长和子囊孢子萌发的抑制作用,并进行田间防治试验。结果表明,20%吡噻菌胺SC对菌丝生长的抑制作用最强,EC50值为0.0302μg/mL,其次为75%拿敌稳WG和50%啶酰菌胺WG,EC50值分别为0.0370和0.2152μg/mL。50%啶酰菌胺WG对菌核病菌子囊孢子的抑制作用最强,EC50值为0.0563μg/mL。田间试验结果显示,50%啶酰菌胺WG对向日葵菌核病的防治效果最好,防效达到89.68%,可有效改善向日葵相关农艺性状,较对照增产34.58%。综合室内毒力试验和田间药效试验结果,50%啶酰菌胺WG对向日葵菌核病的防治效果较好,可作为田间控制病害的轮换药剂。  相似文献   
7.
采用6种杀菌剂对西瓜炭疽病进行田间药效试验。3次药后试验结果表明:50%咪鲜胺锰盐可湿性粉剂和25%吡唑醚菌酯乳油效果最好,防效在73%以上;10%苯醚甲环唑水分散粒剂和25%溴菌腈可湿性粉剂防效次之,防效在67%以上;50%多菌灵可湿性粉剂和80%代森锰锌可湿性粉剂防效较差,防效为50%左右。药剂处理后,50%咪鲜胺锰盐可湿性粉剂、25%吡唑醚菌酯乳油和对照,中心可溶性固形物含量分别为11.8%、12.0%、9.8%;两种药剂比对照分别增产30.96%、28.26%,增产效果显著。因此,推荐50%咪鲜胺锰盐可湿性粉剂和25%吡唑醚菌酯乳油为目前防治西瓜炭疽病的理想药剂。  相似文献   
8.
杀菌剂银泰防治小麦纹枯病研究   总被引:10,自引:0,他引:10  
采用室内离体平皿法和田间小区试验测定了植物源农用杀菌剂银泰 (有效成分 :4 -丁酰基苯酚 )对小麦纹枯病菌 Rhizoctonia cerealis生长的抑制作用和对该病害的防治效果。结果表明 ,20%银泰乳油在 0~ 100μg/mL范围内随着浓度提高对小麦纹枯病菌的抑制作用增强 ,其 EC50 和 EC95分别为 36.11和 97.66μg/L;EC95明显小于对照药剂井冈霉素的检测数值 (327.6 4μg/L )。20%银泰乳油 200、400和 800mg/L防治小麦纹枯病的效果分别为 85.8%、89.3%和 92.3% ,与对照药剂甲基硫菌灵 400mg/L的防效 (87.0% )相当。  相似文献   
9.
In winter oilseed rape experiments at Rothamsted in 2000/01 to 2002/03 growing seasons, the severity of phoma stem canker epidemics in summer depended on the timing of phoma leaf spot epidemics in the previous autumn, and hence on the timing of Leptosphaeria maculans ascospore release. The first major release of L. maculans ascospores was earlier in 2000 (26 September) and 2001 (18 September) than in 2002 (21 October). Consequently, the autumn phoma leaf spot epidemic was also earlier in 2000 and 2001 than in 2002. The resulting stem canker epidemics were severe by harvest (July) in 2001 and 2002 but not in 2003. No correlation was found between the severity or duration of phoma leaf spotting (lesion days or lesion °C-days) and the subsequent severity of phoma stem canker epidemics. Rates of leaf production and loss were similar in the three growing seasons. Out of ca. 25 leaves produced on plants during each season, leaf numbers 10–14 generally remained on plants for the longest. Treatment with flusilazole + carbendazim in autumn decreased the severity of phoma leaf spotting for several weeks after treatment, decreased the severity of stem canker the following summer and increased yield significantly in 2001 and 2002 but not in 2003. The most effective timings for flusilazole + carbendazim application were when leaves 7–11 were present on most plants and at least 10% of plants were affected by phoma leaf spot. Two half-dose applications of fungicide reduced phoma stem canker and increased yield more than a single full dose application when phoma leaf spot epidemics were early (<800 °C-days after sowing).  相似文献   
10.
Ascochyta blight causes significant yield loss in pulse crops worldwide. Integrated disease management is essential to take advantage of cultivars with partial resistance to this disease. The most effective practices, established by decades of research, use a combination of disease-free seed, destruction or avoidance of inoculum sources, manipulation of sowing dates, seed and foliar fungicides, and cultivars with improved resistance. An understanding of the pathosystems and the inter-relationship between host, pathogen and the environment is essential to be able to make correct decisions for disease control without compromising the agronomic or economic ideal. For individual pathosystems, some components of the integrated management principles may need to be given greater consideration than others. For instance, destruction of infested residue may be incompatible with no or minimum tillage practices, or rotation intervals may need to be extended in environments that slow the speed of residue decomposition. For ascochyta-susceptible chickpeas the use of disease-free seed, or seed treatments, is crucial as seed-borne infection is highly effective as primary inoculum and epidemics develop rapidly from foci in favourable conditions. Implemented fungicide strategies differ according to cultivar resistance and the control efficacy of fungicides, and the effectiveness of genetic resistance varies according to seasonal conditions. Studies are being undertaken to develop advanced decision support tools to assist growers in making more informed decisions regarding fungicide and agronomic practices for disease control.  相似文献   
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