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Data from: Cover crop root contributions to soil carbon in a no-till corn bioenergy cropping system
负责人:
关键词:
DOI:
doi:10.5061/dryad.bb458
摘要:
bioenergy system in the northern US Corn Belt, we used 13CO2 pulse labeling to trace plant C from a winter rye (Secale cereale) cover crop into different
Data from: Winter cover crop legacy effects on litter decomposition act through litter quality and microbial community changes
负责人:
Barel, Janna
关键词:
decomposition microbial community composition crop rotation winter cover crop legacy effects standardised substrates nitrogen cycling carbon cycling
DOI:
doi:10.5061/dryad.pk5n1p4
摘要:
1.In agriculture, winter cover crop (WCC) residues are incorporated into the soil to improve soil quality, as gradual litter
Data from: Landscape-level crop diversity benefits biological pest control
负责人:
Redlich, Sarah
关键词:
ecological intensification farmland biodiversity parasitoids predators Sitobion avenae greening birds spatial scales crop diversity pest control
DOI:
doi:10.5061/dryad.g10f7
摘要:
the potential benefits and context-dependencies of multiscale crop diversity on natural enemies and overall biological control in winter wheat. Simultaneously
Data from: Legacy effects of diversity in space and time driven by winter cover crop biomass and nitrogen concentration
负责人:
Barel, Janna
关键词:
crop rotation soil organic matter soil mineral nitrogen plant-feeding nematodes plant-soil feedback plant productivity agroecology winter cover crops agriculture plant diversity
DOI:
doi:10.5061/dryad.sp21b
摘要:
and time influences subsequent crop growth. During 2 years, we rotated two main crops (Avena sativa, Cichorium endivia) with four winter cover crop
Data from: Ecological intensification and arbuscular mycorrhizas: a meta-analysis of tillage and cover crop effects
负责人:
Bowles, Timothy
关键词:
arbuscular mycorrhizae ecological intensification tillage soil disturbance cover crops roots meta-analysis ecosystem services
DOI:
doi:10.5061/dryad.1756f
摘要:
of management and environmental factors on these responses. 3. Less intensive tillage and winter cover cropping similarly increased AMF colonization
Data from: Atrazine transport through a soil-epikarst system
负责人:
Lerch, Robert
关键词:
Atrazine epikarst groundwater quality fate and transport of herbicides
DOI:
doi:10.5061/dryad.fm9284v
摘要:
metabolites to the epikarst aquifer. Management practices that reduce herbicide inputs, such as diverse crop rotations, cover crops, and use of low-rate
Data from: Landscape-scale interactions of spatial and temporal cropland heterogeneity drive biological control of cereal aphids
负责人:
Baillod Bosem, Aliette
关键词:
aphid parasitism crop rotation edge effect field margin field size landscape composition landscape configuration predator-prey ratio spatial heterogeneity temporal heterogeneity
DOI:
doi:10.5061/dryad.2tf5j
摘要:
and its inter-annual change due to crop rotation. 2. We studied the abundance of cereal aphids, natural enemies and aphid parasitism over two years on 51 winter
Genetic progress in Dutch crop yields
负责人:
关键词:
Life sciences, medicine and health care winter wheat spring barley potato sugar beet crop yield genetic improvement agriculture Temporal coverage: 1972-2010
DOI:
doi:10.17026/dans-xb9-zpmw
摘要:
This dataset contains the underlying data for the study: Rijk, B., Ittersum, M. van, Withagen, J. "Genetic progress in Dutch crop
Data from: Grape moth density in Bordeaux vineyards depends on local habitat management despite effects of landscape heterogeneity on thei
负责人:
关键词:
natural pest control predator parasitoid bird ecosystem services agroecology landscape management crop management Vitis vinifera
DOI:
doi:10.5061/dryad.85096
摘要:
1. Biological control of crop pests is a major ecosystem service affected by several variables acting at multiple spatial scales. Among these
Data from: Applying a dryland degradation framework for rangelands: the case of Mongolia
负责人:
Chantsallkham Jamsranjav
关键词:
livestock livestock-use gradient rangeland heterogeneity resilience-based management degradation indicators degradation framework
DOI:
doi:10.5061/dryad.3ch50
摘要:
and soil surface characteristics. Livestock use had no effect on soils, plant species richness or standing crop biomass in any ecological zone, but subtly affecte

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