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Data and codes from: Taxon-specific responses to landscape-scale and long-term implementation of environmentally friendly rice farming

<ol> <li> <span>Rice feeds about half of the world's population. The intensification of rice farming has threatened biodiversity and ecosystem services</span><span>, such </span><span>as pest control. A growing body of evidence suggests that environmentally friendly rice farming (EFF)</span><span> can be effective in biodiversity conservation. However, its dependence on spatial and temporal scales of EFF implementation and surrounding seminatural habitats has remained largely unknown. </span> </li> <li> <span>We evaluated the effects of three types of EFF (organic farming, winter flooding and Integrated Pest Management [IPM]) against conventional farming on plants, spiders, and waterbirds in Japan. Through systematic surveys of 254 rice fields across rice production areas, we monitored EFF implementation at field and landscape scales, considering the time since transition to EFF and the surrounding seminatural areas.</span> </li> <li> <span>EFF </span><span>implementation</span><span> at the field scale, such as organic farming, was found to have positive effects on plant richness and spider abundance, whereas </span><span>the percent area of EFF fields within a 200-m</span><span> radius</span><span> positively affected Ardeidae abundance. </span><span>However, as the percent area of surrounding semi-natural habitats increased, the difference in the plant richness between organic and other fields decreased</span><span>.</span> </li> <li><span>Prolonged implementation periods of IPM or winter flooding, together with a reduction of more than 50% in synthetic fertilisers and pesticides from conventional agriculture, led to an increase in the spider abundance. Conversely, no clear positive effect of longer implementation periods of organic farming resulted in similar spider abundance in the three EFF types after 20 years.</span></li> <li> <em><span>Synthesis and applications.</span></em><span> This suggests that the </span><span>benefits of environmentally friendly rice farming depend on their spatial and temporal scales and the surrounding seminatural areas. </span><span>We propose </span><span>that such a context dependency should be considered in future policy. Our findings also</span><span> provide a starting point for</span><span> future research to test the mixed biodiversity benefits of EFF across cropland types and around the world.</span> </li> </ol>

ShareScore

36/100

Overall dataset sharing score

Score breakdown

These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
4
Harmonization
12
Access
12
Reuse readiness
0
Engagement
8

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