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Pesticide seed dressings can affect the activity of various soil organisms and reduce decomposition of plant material

机译:农药拌种会影响各种土壤生物的活动并减少植物材料的分解

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摘要

BackgroundSeed dressing with pesticides is widely used to protect crop seeds from pest insects and fungal diseases. While there is mounting evidence that especially neonicotinoid seed dressings detrimentally affect insect pollinators, surprisingly little is known on potential side effects on soil biota. We hypothesized that soil organisms would be particularly susceptible to pesticide seed dressings as they get in direct contact with these chemicals. Using microcosms with field soil we investigated, whether seeds treated either with neonicotinoid insecticides or fungicides influence the activity and interaction of earthworms, collembola, protozoa and microorganisms. The full-factorial design consisted of the factor Seed dressing (control vs. insecticide vs. fungicide), Earthworm (no earthworms vs. addition Lumbricus terrestris L.) and collembola (no collembola vs. addition Sinella curviseta Brook). We used commercially available wheat seed material (Triticum aesticum L. cf. Lukullus) at a recommended seeding density of 367 m−2.ResultsSeed dressings (particularly fungicides) increased collembola surface activity, increased the number of protozoa and reduced plant decomposition rate but did not affect earthworm activity. Seed dressings had no influence on wheat growth. Earthworms interactively affected the influence of seed dressings on collembola activity, whereas collembola increased earthworm surface activity but reduced soil basal respiration. Earthworms also decreased wheat growth, reduced soil basal respiration and microbial biomass but increased soil water content and electrical conductivity.ConclusionsThe reported non-target effects of seed dressings and their interactions with soil organisms are remarkable because they were observed after a one-time application of only 18 pesticide treated seeds per experimental pot. Because of the increasing use of seed dressing in agriculture and the fundamental role of soil organisms in agroecosystems these ecological interactions should receive more attention.
机译:背景技术用农药拌种广泛用于保护农作物种子免受害虫和真菌病的侵害。尽管有越来越多的证据表明特别是新烟碱的拌种会有害地影响昆虫的授粉媒介,但令人惊讶的是对土壤生物群的潜在副作用知之甚少。我们假设土壤生物与农药直接接触时,特别容易受到农药拌种的影响。使用田间土壤的缩影,我们调查了用新烟碱类杀虫剂或杀真菌剂处理过的种子是否会影响worm,鞘翅目,原生动物和微生物的活性和相互作用。全因子设计包括拌种因子(对照vs.杀虫剂vs.杀菌剂),no(无addition vs. Lumbricus terrestris L.)和collembola(无collembola vs. Sinella curviseta Brook)。我们使用市售的小麦种子材料(Triticum aesticum L. cf. Lukullus),建议的播种密度为367 m−2。不影响worm的活动。拌种对小麦的生长没有影响。 interactive以交互方式影响拌种料对collembola活性的影响,而collembola则提高了surface的表面活性,但降低了土壤的基础呼吸作用。 also还降低了小麦的生长,减少了土壤的基础呼吸和微生物量,但增加了土壤的水分含量和电导率。每个实验盆只有18种经过农药处理的种子。由于在农业中越来越多地使用拌种技术以及土壤生物在农业生态系统中的基本作用,这些生态相互作用应受到更多关注。

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