This datasets comprises data from 20 rice fields embedded in a gradient of landscapes from crop-dominated to semi-natural habitat-dominated, in the Jiangxi Province in China in 2014 and 2015. Each field was split into two plots: in one plot no pesticides were applied and in the other plot farmers applied pesticides according to their normal pest management practices. The dataset comprises information on the focal rice fields, the land use surrounding the focal rice fields, arthropod abundances and diversity, crop damage, an exclusion experiment to assess the potential of natural enemies to suppress pests, pest management practices and rice yiel
1. Increasing landscape heterogeneity of agroecosystems can enhance natural enemy populations and pr...
1. Increasing landscape heterogeneity of agroecosystems can enhance natural enemy populations and pr...
Background Natural enemy abundance in a crop plot depends on its prey presence and also influenced b...
This datasets comprises data from 20 rice fields embedded in a gradient of landscapes from crop-domi...
This datasets comprises data from 20 rice fields embedded in a gradient of landscapes from crop-domi...
This datasets comprises data from 20 rice fields embedded in a gradient of landscapes from crop-domi...
This datasets comprises data from 20 rice fields embedded in a gradient of landscapes from crop-domi...
1. While the biocontrol potential of natural enemies is well established, it is largely unknown how ...
1. While the biocontrol potential of natural enemies is well established, it is largely unknown how ...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
Agricultural intensification has brought obvious increases in the extent and intensity of agricultur...
1. Increasing landscape heterogeneity of agroecosystems can enhance natural enemy populations and pr...
1. Increasing landscape heterogeneity of agroecosystems can enhance natural enemy populations and pr...
Background Natural enemy abundance in a crop plot depends on its prey presence and also influenced b...
This datasets comprises data from 20 rice fields embedded in a gradient of landscapes from crop-domi...
This datasets comprises data from 20 rice fields embedded in a gradient of landscapes from crop-domi...
This datasets comprises data from 20 rice fields embedded in a gradient of landscapes from crop-domi...
This datasets comprises data from 20 rice fields embedded in a gradient of landscapes from crop-domi...
1. While the biocontrol potential of natural enemies is well established, it is largely unknown how ...
1. While the biocontrol potential of natural enemies is well established, it is largely unknown how ...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
While the biocontrol potential of natural enemies is well established, it is largely unknown how lan...
Agricultural intensification has brought obvious increases in the extent and intensity of agricultur...
1. Increasing landscape heterogeneity of agroecosystems can enhance natural enemy populations and pr...
1. Increasing landscape heterogeneity of agroecosystems can enhance natural enemy populations and pr...
Background Natural enemy abundance in a crop plot depends on its prey presence and also influenced b...