首页> 外文期刊>Journal of Agriculture and Ecology Research International >Control of Ralstonia solanacearum on Selected Solaneceous Crops in Greenhouse by Selected Soil Amendments
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Control of Ralstonia solanacearum on Selected Solaneceous Crops in Greenhouse by Selected Soil Amendments

机译:土壤改良剂对温室茄科单株农作物中青枯菌的控制。

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Aims: The aim of this study was to establish the effect of selected soil amendments on Ralstonia solanacearum isolates in greenhouse on selected solaneceous crops. Study Design: The study was laid out as randomized complete block design (RCBD) in split pot arrangement for two seasons in the greenhouse. Place and Duration of Study: The experiment was carried out in Kenyattta University situated in Kiambu County about 20 km from Nairobi city along Nairobi-Thika road between July, 2017- September, 2017 and between November, 2017- January, 2018. Methodology: The three host crops of interest (potatoes, tomatoes and capsicum) were inoculated with prepared pure bacterial isolates; 18 (2T-Kiambu-Low Land), 71(2A-Nyeri-Low Land), 67 (2A-Nyeri-High Land), 83 (2T-Kirinyaga-Highland) and MX (18/71/67/83). Potatoes, tomatoes and capsicum were planted in pots each with a radius of 0.07 m (area 0.015 msup2/sup).The experiment had a total of 450 pots having a total area of 6.93 msup2/sup. The treatments were ChalimsupTM/sup, Super-hydro-grow polymer + Metham sodium, Metham sodium, Metham sodium & Orange peel, Super-hydro-grow polymer, Brassica tissues, ChalimsupTM/sup + Super-hydro-grow polymer, Brassica tissue + Orange peel, Metham sodium + Super-hydro-grow polymer and Control (no amendments). Results: There were significant differences ( P ≤0.05) in the bacterial wilt incidences in selected solaneceous crops between control and all the soil amendments used in season 1 and 2. Brassica tissue + Super-hydro-grow polymer was superior in reducing bacterial wilt incidences in selected solaneceous crops in all the R. solanacearum isolates from Kenyan highlands and lowlands both in season 1 and 2 . Conclusion: Organic and inorganic soil amendments could serve as a viable control of bacterial wilt in solaneceous crops caused by R. solanacearum in the greenhouse.
机译:目的:本研究的目的是确定所选土壤改良剂对所选茄科作物温室大棚无核小球藻分离株的影响。研究设计:研究以温室中两个季节的分盆布置的随机完整块设计(RCBD)进行布置。研究的地点和持续时间:该实验是在2017年7月至2017年9月至2017年11月至2018年1月之间,在距内罗毕-锡卡路内罗毕市约20公里的Kiambu县的肯雅塔大学进行的。用准备好的纯细菌分离株接种三种目的寄主作物(马铃薯,番茄和辣椒); 18(2T-Kiambu-Low Land),71(2A-Nyeri-Low Land),67(2A-Nyeri-High Land),83(2T-Kirinyaga-Highland)和MX(18/71/67/83)。将马铃薯,番茄和辣椒种植在半径为0.07 m(面积0.015 m 2 )的盆中。实验总共有450个盆,总面积为6.93 m 2 < / sup>。处理方法为Chalim TM ,超水生聚合物+ Metham钠,Metham钠,Metham钠和橘皮,超水生聚合物,芸苔组织,Chalim TM +超级水生聚合物,芸苔组织+橙皮,Metham钠+超级水生聚合物和对照(无修正)。结果:对照和第一季和第二季使用的所有土壤改良剂之间,所选豆科作物的青枯病发生率存在显着差异(P≤0.05)。芸苔属组织+超水生聚合物在减少青枯病发生方面具有优势。在第1和第2季,从肯尼亚高地和低地分离出的所有青枯菌中的精选茄科作物中的番茄。结论:有机和无机土壤改良剂可以有效控制温室茄果枯萎病引起的豆科作物青枯病。

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