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首页> 外文期刊>Plant and Soil >Field evaluation of plant growth-promoting Rhizobacteria amended transplant mixes and soil solarization for tomato and pepper production in Florida
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Field evaluation of plant growth-promoting Rhizobacteria amended transplant mixes and soil solarization for tomato and pepper production in Florida

机译:现场评估促进植物生长的根瘤菌改良移植混合物和土壤日光化在佛罗里达州生产番茄和辣椒的能力

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摘要

Field trials were performed in Florida to evaluate tomato and pepper transplants amended with formulations of several plant growth-promoting rhizobacteria (PGPR) in a production system that included soil solarization. Transplants grown in five different formulations of PGPR were planted into plots treated by soil solarization, MeBr fumigation, or untreated soil. Treatments were assessed for incidence of several naturally occurring tomato and pepper pathogens including root-knot nematode (Meloidogyne incognita) and species of Pythium, Phytophthora, and Fusarium. Highly significant increases in tomato and pepper transplant growth occurred in response to most formulations of PGPR tested. Transplant vigor and survival in the field were improved by PGPR treatments in both tomato and pepper. Diseases of tomato caused by root-knot nematodes, Fusarium, Phytophthora, and Pythium were not affected by PGPR treatments. PGPR formulation LS261 reduced numbers of root-knot nematode galls on pepper while pepper root condition was improved with formulations LS213, LS256 and LS261. Individual PGPR strains affected the number of Pythium colonies isolated from pepper roots, but did not affect isolation of Pythium from tomato roots. Greater numbers of colonies of Pythium were isolated from pepper roots in the MeBr treatment and fewest in the solarization treatment. Numbers of colony forming units of Fusarium were significantly higher in the untreated soil than in MeBr fumigated or solarized soil with no effect of PGPR on isolation of Fusarium from either crop. Incidence of wilt symptoms on tomato was significantly lower in MeBr treated plots and highest in the untreated plots. Yield of extra large tomato fruit and total yield increased with PGPR formulation LS256. Yield of pepper was increased with formulations LS255 and LS256. Solarization combined with LS256 on pepper produced yields comparable to MeBr.
机译:在佛罗里达进行了田间试验,以评估在包括土壤日光化在内的生产系统中,用几种植物促生根瘤菌(PGPR)的配方改良的番茄和辣椒移植。将以五种不同PGPR配方种植的移植物种植到通过土壤日光化,MeBr熏蒸或未经处理的土壤处理过的地块中。对几种自然发生的番茄和辣椒病原体(包括根结线虫(Meloidogyne incognita)和腐霉菌,疫霉菌和镰刀菌属)的发生率进行了评估。响应大多数PGPR制剂,番茄和辣椒的移植生长显着增加。 PGPR处理在番茄和辣椒中均可改善田间的移植活力和存活率。根结线虫,镰刀菌,疫霉菌和腐霉菌引起的番茄疾病不受PGPR处理的影响。 PGPR配方LS261减少了胡椒上的根结线虫gall虫数量,而配方LS213,LS256和LS261改善了胡椒根状况。单个PGPR菌株影响从辣椒根分离出的腐霉菌落的数量,但不影响从番茄根分离出腐霉菌的数量。在MeBr处理中,从胡椒根中分离出大量的腐霉菌菌落,而在日晒处理中,分离的菌落数量最少。未经处理的土壤中镰刀菌的菌落形成单位数量明显高于熏蒸或MeBr熏蒸的土壤,而PGPR对从任一作物中分离出的镰刀菌均无影响。在用MeBr处理的地块上,番茄出现萎symptoms症状的发生率显着降低,而在未处理的地块中,番茄上的萎symptoms症状发生率最高。 PGPR配方LS256可增加超大番茄果实的产量和总产量。使用配方LS255和LS256可提高胡椒的产量。辣椒上的日晒与LS256结合使用可产生与MeBr相当的产量。

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