Smart orchard design improves crop pollination

Author:

Anders Mina1ORCID,Grass Ingo2ORCID,Linden Valerie M. G.3ORCID,Taylor Peter J.4,Westphal Catrin15ORCID

Affiliation:

1. Functional Agrobiodiversity, Department of Crop Sciences University of Goettingen Goettingen Germany

2. Ecology of Tropical Agricultural Systems University of Hohenheim Stuttgart Germany

3. School of Mathematical & Natural Sciences and Core Team Member of the Centre for Invasion Biology University of Venda Thohoyandou South Africa

4. Department of Zoology and Entomology University of the Free State Bloemfontein South Africa

5. Centre of Biodiversity and Sustainable Land Use (CBL) University of Göttingen Goettingen Germany

Abstract

Abstract More sustainable and environmentally friendly agricultural practices, including ecological intensification, are needed to reduce biodiversity loss and environmental degradation. We evaluated the potential of ecological intensification through the enhancement of pollination services in an intensively managed and insect‐pollinated crop, Macadamia integrifolia. We compared the effects and importance of agronomic practices that include agronomic input (i.e. irrigation and managed honeybees), orchard design requiring no external inputs (i.e. spatial orchard structure) and landscape factors in 10 South African macadamia orchards. In comparison to experimental pollinator exclusion, insect pollination increased the initial and final nut set by 304% and 23%, respectively. However, nut set was pollination limited as hand pollination further improved nut set. Flower visitation rates increased with the cover of semi‐natural habitats in the surrounding landscape (1 km radius). This effect was outperforming the effect of the number of managed honeybee colonies, as agronomic practice. Initial nut set increased with orchard design and flower visitation rates. Perpendicular orientation of the planted macadamia rows towards the semi‐natural habitats increased initial nut set more than threefold compared to parallel row orientation. The initial nut set was 80% higher at the edge to semi‐natural habitats than in the orchard centre. In contrast, agronomic practices, such as irrigation, did not increase initial nut set. Final nut set depended on the preconditions of the initial nut set, additionally, high altitudes and the position in the centre of the orchard had positive effects. Synthesis and applications: Pollination services were prerequisites for high yields in macadamia and could be improved without further agronomic input. Especially, the orchard design, that is, spatial arrangement of tree rows and semi‐natural habitats at local and landscape scales, was more important to boost insect pollination and the initial development of macadamia nuts than agronomic practices, such as high levels of irrigation. Considering the urgency to reduce the environmental impacts of agricultural production, we highlight the high potential of ecological intensification by a smart orchard design and the restoration and conservation of semi‐natural habitats in the orchards and their surrounding landscape.

Funder

Bundesministerium für Bildung und Forschung

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Ecology

Reference66 articles.

1. Bartoń K.(2020).MuMIn: Multi‐model inference (1.43.17).https://CRAN.R‐project.org/package=MuMIn

2. Spillover of functionally important organisms between managed and natural habitats

3. Ecological intensification: harnessing ecosystem services for food security

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