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21.
在灌溉定额一定的情况下,研究了不同滴灌频率对大田膜下小西瓜在果实膨大期以及成熟期内有关特性的影响,以期为豫北平原地区大田膜下滴灌小西瓜生长中后期阶段确定最佳的滴灌频率。结果表明:不同灌溉频率对小西瓜生长过程中根粗、茎粗和蔓长的影响不是特别明显。从试验数据来看,以果实膨大期中频(T3),果实成熟期低频(T5)处理效果较好。此灌溉频率组合下不仅小西瓜长势好,而且甜度较大,省工省时又节水。  相似文献   
22.
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   
23.
杨迪  杜婵娟  叶云峰  彭军  张欣  付岗 《热带作物学报》2020,41(12):2582-2590
香蕉枯萎病是全世界香蕉产业共同面临的毁灭性病害,但目前生产上仍缺乏适宜的抗病品种和有效的治疗措施。因此,借助快速准确的枯萎病菌检测技术及时明确病原菌以控制该病的传播和蔓延显得尤为重要。本文回顾了近年来国内外香蕉枯萎病菌分子检测技术的发展历程,归纳和总结了DNA指纹图谱、普通PCR、多重PCR、荧光定量PCR及等温扩增技术在该病菌检测中的研究进展,分析了不同检测技术的优缺点,并指出可能存在的问题和研究发展方向,为该病的分子检测技术优化和防控策略制定提供参考。  相似文献   
24.
Irrigation water disinfestation is an unexplored option for reducing Verticillium dahliae inoculum in water and consequently for more efficiently managing Verticillium wilts in Andalusia. We assessed Suppressive Efficacy (SE; water was infested and subsequently treated) and Preventive Efficacy (PE; previously treated water was subsequently inoculated) of OX-VIRIN®, OX-AGUA AL 25® and Deccoklor® in reducing water infestations by V. dahliae conidia. Five concentrations of each disinfestant, the lowest three being recommended by the manufacturer, were tested in vitro against six V. dahliae isolates. Validation assays were carried out in experiments under natural environmental conditions in spring. The four highest concentrations of OX-VIRIN® (0.8–51.2 mL L−1), the three highest of OX-AGUA AL 25® (46.4–417.5 μL L−1) and the two highest of Deccoklor® (0.375 and 3.75 mL L−1), showed an in vitro-efficacy (SE and PE) of 96.2, 80.0 and 100.0% after 30, 5 to 30 and 15 days respectively. Therefore, recommended concentrations for OX-VIRIN® and OX-AGUA AL 25® showed a greater in vitro-effectiveness than those recommended for Deccoklor®. Assays in natural environmental conditions proved that OX-VIRIN® at the recommended concentration of 3.2-mL L−1, applied every 28 days to water, was the most effective treatment (SE and PE), with a 100% reduction of the average relative viability after 56 days. Other chemical treatments showing high in vitro-efficacy, such as OX-VIRIN® at 0.8 mL L−1 and OX-AGUA AL 25® at 46.4 μL L−1 showed an SE of 99.9% after 14 and 28 days when applied every 28 and 14 days, respectively. However, PE of OX-AGUA AL 25® at 46.4 μL L−1 was only 59 and 38% after 28 and 14 days respectively, depending on the experiment.  相似文献   
25.
Yield trials without fungicides or insecticides were conducted four consecutive years (2007–10) at the University of Georgia, Coastal Plain Experiment Station, Tifton Campus to evaluate for peanut (Arachis hypogaea L.) pest resistance. The most endemic diseases in the southeast U.S. are tomato spotted wilt (TSW) caused by Tomato spotted wilt virus, white mold (WM) caused by Sclerotium rolfsii Sacc, and both early and late leaf spot caused by Cercospora arachidicola Hori and Cercosporidium personatum (Berk & Curt.) Deighton, respectively. The most endemic insects are tobacco thrips (Frankliniella fusca Hinds) and potato leafhopper (Empoasca fabae Harris). Results from these replicated field tests showed significant differences (P ≤ 0.05) among advanced Georgia breeding lines and cultivars. Three Georgia cultivars ‘Georgia-01R’, ‘Georgia-05E’, and ‘Georgia-10T’ consistently produced among the best yields with high levels of resistance to TSW, white mold, leafhoppers, and leaf spot each year. Georgia-01R is a multiple-pest-resistant, runner-type cultivar with late maturity; whereas, Georgia-05E is a multiple-pest-resistant, virginia-type cultivar with medium-late maturity. Georgia-10T is a new runner-type cultivar with high level of TSWV and white mold resistance and late-maturity, similar to Georgia-01R, one of its parents. However, Georgia-10T does not appear to have the high level of leaf spot and leafhopper resistance as Georgia-01R, but it still had high yields in the absence of fungicides or insecticides.  相似文献   
26.
对28个樱桃番茄品种的田间抗病性、植株类型、单果质量、果色、可溶性固形物含量等主要经济性状进行调查。试验结果表明,感病品种红艳发病最重,发病率为73.67%,其次是红箭、红日和金艳,发病率分别为23.33%、21.67%和20.33%,其他品种发病率都在20%以下;28个品种的果实颜色、大小、口感等差异明显,除黑宝石映泰及黄金蛋可溶性固形物含量在4.10%以下外,其他品种可溶性固形物含量都达5.20%以上。综合分析,筛选出绿天使、粉仙、红娘9号、绿圆、格丽贝、红椭圆等11个抗青枯病且经济性状优良的樱桃番茄品种,为优质抗青枯病樱桃番茄的选育和推广提供了参考。  相似文献   
27.
<正>普通菜豆(Common bean),俗称芸豆(Kidney bean),为豆科(Fabaceae)菜豆属一年生草本植物,营养丰富,蛋白质含量高,既是蔬菜又是粮食,是重要的农副产品。内蒙古自治区是我国种植普通菜豆的主要地区之一。随着普通菜豆栽培面积以及连作年限不断增加,病虫害问题日益突出,尤其是枯萎病,严重影响了普通菜豆的产量和品质,已成为限制普通菜豆产业可持续发展的主要因素之一。2021年7月,  相似文献   
28.
青枯病(bacterial wilt)是生姜上的一种细菌土传毁灭性病害,化学防治易污染环境且常规化学药剂很难在土壤中起到持续控病的作用,生物防治是其理想的防治方法。为开发对生姜青枯病有效的生防措施,对从生姜根际土壤中分离的一株生防细菌YB-3进行了鉴定,并对其生物学特性及生防效果进行了研究,以丰富生防菌株资源库。采用抑菌圈法筛选拮抗细菌,对效果最好的拮抗菌株做盆栽试验,测定其对生姜青枯病的防治效果,根据形态特征、生理生化特性以及16S rDNA序列对筛选得到的优良菌株进行鉴定。试验结果表明,该拮抗菌在平皿上对青枯菌的抑菌率为50.67%,盆栽试验对青枯病的防治效果为60.86%;经16S rDNA序列分析,并结合形态学和生理生化特征,将菌株YB-3鉴定为巨大芽胞杆菌Bacillus megaterium。YB-3是一株具有开发利用价值的姜青枯病生防菌株。  相似文献   
29.
棉花黄萎病菌毒素ELISA检测方法的建立及其应用   总被引:6,自引:1,他引:6  
以纯化的棉花黄萎病菌毒素(PLPC)免疫新西兰白兔制备了PLPC特异性抗血清,建立了可特异性检测棉花黄萎病菌毒素的A蛋白双抗体夹心ELISA方法。应用建立的ELISA方法测定了病菌培养滤液、人工接种幼苗和大田病株不同组织中的毒素,结果表明:不同产毒能力菌株(VD 8和VD-5)在25℃下振荡培养3d后就能在培养滤液中检测到毒素,这比生物测定要早2~3d。将VD-8菌株的孢子以灌根方式接种泗棉3号幼苗5d后,就能从接种幼苗的茎杆和叶柄中检测到毒素,这比幼苗自然发病显症要早3~5d。在测定的30份大田病株茎杆、叶柄、叶脉样品中,阳性样品率为100%。这些结果表明建立的ELISA方法可用于菌株产毒能力的测定和大田棉花黄萎病的早期诊断。  相似文献   
30.
不同强度温度刺激对棉花黄萎病的影响   总被引:5,自引:0,他引:5  
采用三个不同抗性的棉花品种、三个不同的黄萎病菌系和三个温度梯度,完全随机区组设计,在人工气候箱中研究刺激不同时间对棉花黄萎病发病的影响。结果表明,刺激温度的高低和品种的抗性对棉花黄萎病的发生与扩展有显著的影响,而菌系致病力以及刺激时间长短对棉花黄萎病的发生也存在显著差异,但影响较小;品种的抗病性对棉花黄萎病的发生起着至关重要的制约作用;温度对黄萎病的发生与扩展起着关键作用。初步明确了影响棉花黄萎病发生与扩展的几个因子间的互作效应及其影响程度。  相似文献   
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