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Journal Article

Effects of amending soil with black soldier fly frass on survival and growth of the cabbage root fly (Delia radicum) depend on soil type

Max Wantulla; Marcel Dicke; Joop J. A. van Loon
Journal of Pest Science · Vol. 97, Issue 3 · pp. 1451-1459 · 2024

Abstract

New approaches to managing the cabbage root fly ( Delia radicum L.) are needed because pesticide regulations continue to limit the availability of effective control products. Soil amendment with black soldier fly ( Hermetia illucens L.) frass has recently been shown to reduce D. radicum survival. In a greenhouse experiment, soil from a field on which brassicaceous plant species had repeatedly been grown (brassica field soil) was mixed with frass at ratios of 1, 2 or 5 g/kg. In a second greenhouse experiment, 5 g/kg were added to (a) brassica field soil, (b) soil from a different field on which non-brassicaceous species had been rotated (crop rotation field soil) or (c) blocks of potting soil that were later transplanted to unamended field soil. Brussels sprouts ( Brassica oleracea L.) plants were grown in amended soil and were infested with D. radicum larvae after 4 weeks. While amendment with 1 or 2 g/kg did not affect D. radicum performance compared with unamended soil, 5 g/kg reduced D. radicum survival and pupal biomass in brassica field soil. In crop rotation field soil, amendment with 5 g/kg reduced pupal biomass but did not reduce D. radicum survival. Amendment with 5 g/kg had no effect on D. radicum performance in potting soil. In general, D. radicum survival was lower in brassica field soil than in either other soil, irrespective of soil amendment. The effects of black soldier fly frass on D. radicum appear to depend on soil type.

Bibliographic Information

JournalJournal of Pest Science
PublisherSpringer
Publication Date2024-06-01
Publication Year2024
Volume97
Issue3
Pages1451-1459
Document TypeJournal Article
Print ISSN1612-4758
eISSN1612-4766
DOI10.1007/s10340-023-01710-9

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NARA Access Coverage1925-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10340
Publisher PageOpen Publisher Page
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