Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.
Beijing Innovation Consortium of Agriculture Research System, Beijing, 100193, China.
Sci Rep. 2022 Nov 2;12(1):18522. doi: 10.1038/s41598-022-22673-4.
Reductions in the quality and yield of crops continuously produced in the same location for many years due to annual increases in soil-borne pathogens. Environmentally-friendly methods are needed to produce vegetables sustainably and cost effectively under protective cover. We investigated the impact of biofertilizers on cucumber growth and yield, and changes to populations of soil microorganisms in response to biofertilizer treatments applied to substrate or soil. We observed that some biofertilizers significantly increased cucumber growth and decreased soil-borne pathogens in soil and substrate. Rhizosphere microbial communities in soil and substrate responded differently to different biofertilizers, which also led to significant differences in microbial diversity and taxonomic structure at different times in the growing season. Biofertilizers increase the prospects of re-using substrate for continuously producing high-quality crops cost-effectively from the same soil each year while at the same time controlling soil-borne disease.
由于土壤传播病原体的逐年增加,在同一地点连续多年种植同一种作物会导致其质量和产量下降。需要采用环保的方法,在保护地的条件下,以可持续且具有成本效益的方式种植蔬菜。我们研究了生物肥料对黄瓜生长和产量的影响,以及生物肥料处理对基质或土壤中土壤微生物种群变化的响应。我们观察到,一些生物肥料显著促进了黄瓜的生长,同时减少了土壤和基质中的土壤传播病原体。土壤和基质中的根际微生物群落对不同的生物肥料有不同的反应,这也导致了在生长季节的不同时间微生物多样性和分类结构的显著差异。生物肥料增加了在同一块土壤上,每年从同一土壤中连续生产高质量作物的机会,同时控制土壤传播疾病。