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首页> 外文期刊>Plant and Soil >Land use intensification affects soil microbial populations, functional diversity and related suppressiveness of cucumber Fusarium wilt in China's Yangtze River Delta
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Land use intensification affects soil microbial populations, functional diversity and related suppressiveness of cucumber Fusarium wilt in China's Yangtze River Delta

机译:土地利用集约化影响长三角黄瓜枯萎病土壤微生物种群,功能多样性及相关抑制

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摘要

The extent of soil microbial diversity in agricultural soils is critical to the maintenance of soil health and quality. The aim of this study was to investigate the influence of land use intensification on soil microbial diversity and thus the level of soil suppressiveness of cucumber Fusarium wilt. We examined three typical microbial populations, Bacillus spp., Pseudomonas spp. and Fuasarium oxysporum, and bacterial functional diversity in soils from three different land use types in China's Yangtze River Delta, and related those to suppressiveness of cucumber Fusarium wilt. The land use types were a traditional rice wheat (or rape) rotation land, an open field vegetable land, and a polytunnel greenhouse vegetable land that had been transformed from the above two land use types since 1995. Results generated from the field soils showed similar counts for Bacillus spp. (log 5.87-6.01 CFU g super(-1) dw soil) among the three soils of different land use types, significantly lower counts for Pseudomonas spp. (log 5.44 CFU g super(-1) dw soil) in the polytunnel greenhouse vegetable land whilst significantly lower counts for Fusarium oxysporum (log 3.21 CFU g super(-1) dw soil) in the traditional rice wheat (or rape) rotation land. A significant lower dehydrogenase activity (33.56 mg TPF kg super(-1) dw day super(-1)) was observed in the polytunnel greenhouse vegetable land. Community level physiological profiles (CLPP) of the bacterial communities in soils showed that the average well color development (AWCD) and three functional diversity indices of Shannon index (H'), Simpson index (D) and McIntosh index (U) at 96 h incubation in BIOLOG Eco Micro plates were significantly lower in the polytunnel greenhouse vegetable land than in both the traditional rice wheat (or rape) rotation land and the open field vegetable land. A further greenhouse experiment with the air-dried and sieved soils displayed significantly lower plant growth parameters of 10-old cucumber seedlings as well as significantly lower biomass and total fresh fruit yield at the end of harvesting at day 70 in the polytunnel greenhouse vegetable soil sources. The percentages of Fusarium wilt plant death were greatly increased in the polytunnel greenhouse vegetable plants, irrespective of being inoculated with or without Fusarium oxysporum f. sp. cucumerinum. Our results could provide a better understanding of the effects of land use intensification on soil microbial population and functional diversity as well as the level of soil suppressiveness of cucumber Fusarium wilt.
机译:农业土壤中土壤微生物多样性的程度对于维持土壤健康和质量至关重要。这项研究的目的是调查土地利用集约化对土壤微生物多样性的影响,从而研究黄瓜枯萎病的土壤抑制水平。我们检查了三种典型的微生物种群,芽孢杆菌属,假单胞菌属。长江三角洲三种不同土地利用类型的土壤中细菌的功能多样性,以及与黄瓜枯萎病的抑制有关。自1995年以来,从上述两种土地利用类型转换而来的土地利用类型为传统的稻麦(或油菜)轮作土地,开阔地蔬菜地和多隧道温室蔬菜地。为芽孢杆菌属。 (log 5.87-6.01 CFU g super(-1)dw土壤)在三种不同土地利用类型的土壤中,假单胞菌的数量显着降低。 (log 5.44 CFU g super(-1)dw土壤)在传统稻麦(或油菜)轮作土地上,而尖孢镰刀菌(log 3.21 CFU g super(-1)dw土壤)的计数显着降低。在多通道温室蔬菜地中观察到明显较低的脱氢酶活性(33.56 mg TPF kg super(-1)dw day super(-1))。土壤细菌群落的群落水平生理概况(CLPP)表明,在96 h时,平均孔颜色发育(AWCD)和香农指数(H'),辛普森指数(D)和麦金托什指数(U)的三个功能多样性指数在多隧道温室蔬菜地中,BIOLOG Eco Micro平板的孵化率显着低于传统稻麦(或油菜)轮作地和空地蔬菜地。在风洞和筛分的土壤上进行的进一步温室试验显示,在多棚温室蔬菜土壤中,到第70天收获结束时,10龄黄瓜幼苗的植物生长参数明显降低,生物量和总新鲜水果产量显着降低。 。不论是否接种尖孢镰刀菌f,多通道温室蔬菜植物中枯萎病枯萎植物的死亡百分比均大大增加。 sp。黄瓜。我们的结果可以更好地理解土地利用集约化对黄瓜枯萎病土壤微生物种群和功能多样性的影响以及土壤抑制水平。

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