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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Impact of vineyard ground cover management on the occurrence and activity of entomopathogenic nematodes and associated soil organisms
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Impact of vineyard ground cover management on the occurrence and activity of entomopathogenic nematodes and associated soil organisms

机译:葡萄园地面涵盖管理对昆虫致病线虫和相关土壤生物的发生和活性的影响

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摘要

Viticulture is a valuable sector worldwide with an extraordinary socio-economic impact in Spain. Numerous pests and diseases threaten vineyards, and their management primarily relies on the use of conventional agrochemicals. The current paradigm of sustainability pursues the implementation of ecologically sound strategies in vineyard ecosystems. The use of cover crops is arising as an alternative with numerous benefits, including favoring above-belowground biodiversity and the presence of beneficial soil organisms such as the entomopathogenic nematodes (EPNs). We hypothesized that the use of specific cover crops in vineyards might enhance the natural occurrence and activity of EPNs by modulating the assemblage with associated organisms. We performed the experiments in an ongoing experimental vineyard (Vitis vinifera var Tempranillo, don RJ-26, rootstock '110-Richter') located in Logrono (Spain), drove with different soil management systems (three replicates each): conventional tillage practice and the cover crops (i) seeded with Bromus catharticus (Poaceae), (ii) flower-driven, and (iii) spontaneous. We took four soil composite samples per plot (n = 48 per sampling time) late spring and early autumn in two consecutive years (2017 and 2018). By using species-specific primers/probes qPCR sets, we screened for the presence and abundance of eight EPNs species and 12 related soil organisms: six nematophagous fungi, four free-living nematodes, and two ectoparasitic bacteria. Additionally, we assessed the EPN activity by the traditional insect-bait method. Overall, we recorded higher EPN numbers or activity rates on cover crops than on bare soils. However, some of the results were divergent among no-till treatments. We observed not only higher EPN abundance and activity on spontaneous covers but lower numbers of antagonistic organisms, particularly endoparasitic nematophagous fungi. Thus, according to our results, the use of spontaneous covers could be the most promising strategy to support the conservation biological control service provided by the naturally occurring EPN species in vineyards, plus with a low cost for the sector.
机译:葡萄栽培是全球有价值的部门,在西班牙拥有非凡的社会经济影响。许多害虫和疾病威胁葡萄园,他们的管理层主要依赖于常规农用化学品的使用。目前可持续发展的范式追求葡萄园生态系统的生态声音策略。覆盖作物的使用是作为诸多益处的替代方案,包括低于以下低于地下生物多样性以及存在有益的土壤生物,如昆虫致病线虫(EPNS)。我们假设通过调节与相关生物的组合来增强葡萄园中的特定覆盖作物可能提高EPN的自然发生和活性。我们在持续的实验葡萄园中进行了实验(Vitis Vinifera var Tempranillo,位于Logrono(西班牙)的Don RJ-26,rootstock'110-Richter'),推进了不同的土壤管理系统(每次三次重复):常规耕作实践和覆盖作物(i)播种用盐斑(poaceae),(ii)花驱动,(iii)自发。我们连续两年春季和初秋(2017年和2018年)晚春季和初秋的四个土壤复合样品(N = 48)。通过使用物质特异性引物/探针QPCR套,我们筛选出存在和丰度的八种EPNS种类和12种相关土壤生物:六种Nematophags真菌,四种自由生物线虫和两个异种酸性细菌。此外,我们通过传统的昆虫诱饵方法评估了EPN活动。总的来说,我们在覆盖作物上记录了比裸污染的封面作物更高的环数或活动率。然而,一些结果在止痒治疗中具有不同。我们不仅观察到自发覆盖物的高度丰富和活性,而且观察到拮抗生物,特别是内透明性的Nematophags真菌的数量。因此,根据我们的结果,使用自发覆盖物可能是最有希望的策略,以支持葡萄园的天然存在的EPN种类提供的保护生物控制服务,以及该部门的低成本。

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