Watson Tristan T, Forge Tom A, Nelson Louise M
a Biology Department, University of British Columbia - Okanagan Campus, Kelowna, BC V1V 1V7, Canada.
b Agriculture and Agri-Food Canada, Summerland Research and Development Centre, Summerland, BC V0H 1Z0, Canada.
Can J Microbiol. 2018 Nov;64(11):775-785. doi: 10.1139/cjm-2018-0040. Epub 2018 May 23.
Inoculation with antagonistic soil microorganisms has shown potential to suppress replant disease of apple in orchard soils. Pseudomonas spp. may have the potential to reduce Pratylenchus penetrans populations on apple. Pseudomonas spp. were isolated from the rhizosphere of sweet cherry and screened for antagonistic characteristics. Two highly antagonistic Pseudomonas isolates, P10-32 and P10-42, were evaluated for growth promotion of apple seedlings, suppression of P. penetrans populations, and root colonization in soil from three orchards. During the isolate screening, Pseudomonas fluorescens P10-32 reduced in vitro growth of fungal pathogens, had protease activity, had capacity to produce pyrrolnitrin, suppressed P. penetrans populations, and increased plant biomass. Pseudomonas fluorescens P10-42 reduced in vitro growth of fungal pathogens, had protease activity, suppressed P. penetrans populations, and increased plant biomass. In potted orchard soil, inoculating apple with P. fluorescens P10-32 suppressed P. penetrans populations in one of the three soils examined. Inoculation with P. fluorescens P10-42 improved plant growth in two of the soils and suppressed P. penetrans abundance in one soil. In one of the soils, P. fluorescens P10-42 was detected on the roots 56 days postinoculation. Overall, we conclude that Pseudomonas spp. play a role in suppressing P. penetrans on apple in orchard soil.
接种拮抗性土壤微生物已显示出抑制果园土壤中苹果再植病的潜力。假单胞菌属可能有降低苹果上穿刺短体线虫种群数量的潜力。从甜樱桃根际分离出假单胞菌属,并筛选其拮抗特性。对两个高度拮抗的假单胞菌分离株P10 - 32和P10 - 42进行了评估,考察其对苹果幼苗的促生长作用、对穿刺短体线虫种群的抑制作用以及在来自三个果园的土壤中的根部定殖情况。在分离株筛选过程中,荧光假单胞菌P10 - 32降低了真菌病原体的体外生长,具有蛋白酶活性,有能力产生吡咯菌素,抑制了穿刺短体线虫种群数量,并增加了植物生物量。荧光假单胞菌P10 - 42降低了真菌病原体的体外生长,具有蛋白酶活性,抑制了穿刺短体线虫种群数量,并增加了植物生物量。在盆栽果园土壤中,用荧光假单胞菌P10 - 32接种苹果,在所检测的三种土壤中的一种中抑制了穿刺短体线虫种群数量。用荧光假单胞菌P10 - 42接种在两种土壤中促进了植物生长,在一种土壤中抑制了穿刺短体线虫的丰度。在其中一种土壤中,接种后56天在根上检测到了荧光假单胞菌P10 - 42。总体而言,我们得出结论,假单胞菌属在果园土壤中对苹果上的穿刺短体线虫具有抑制作用。