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Journal Article

The role of black nightshade in population development of tomato russet mite (Aculops lycopersici)

Anna Sybilska; Sauro Simoni; Elżbieta Wójcik-Gront; Brian Rector; Mariusz Lewandowski
Journal of Pest Science · Vol. 98, Issue 4 · pp. 2353-2362 · 2025

Abstract

The tomato russet mite (TRM), Aculops lycopersici (Tyron), is a significant pest of tomato ( Solanum lycopersicum L.), with the ability to infest various solanaceous plants and some species outside this family. This study investigated the role of black nightshade ( Solanum nigrum L.), a globally widespread weed, as an alternative host for TRM and its implications for pest dynamics. The development time, survival rate, and reproductive parameters of TRM were compared between tomato and black nightshade. While TRM developed more rapidly and exhibited higher survival rates on tomato, black nightshade supported higher fecundity and a greater proportion of female offspring. These findings suggest that black nightshade can act as a viable host of TRM. Further experiments evaluated the adaptability of TRM populations to switch between tomato and black nightshade. No significant fitness costs were observed when populations were transferred between these hosts, indicating high adaptability. Additionally, we assessed the colonization potential of TRM on hosts in three different plant families, including pepper ( Capsicum annuum L.), field bindweed ( Convolvulus arvensis L.), petunia ( Petunia hybrida L.), tobacco ( Nicotiana tabacum L.), and white goosefoot ( Chenopodium album L.). Among these, only black nightshade and field bindweed supported population growth rates comparable to tomato, while white goosefoot supported TRM for short periods. The results highlight the significance of black nightshade as a reservoir host for TRM, potentially serving as a “green bridge” that facilitates pest survival during the absence of tomato crops in the field. These findings highlight the need for TRM management strategies to include effective weed control to disrupt the pest’s lifecycle and reduce its economic impact on tomato cultivation, especially in regions with mild winters. In addition, tomato germplasm with effective resistance to TRM appears to be generally lacking.

Bibliographic Information

JournalJournal of Pest Science
PublisherSpringer
Publication Date2025-09-01
Publication Year2025
Volume98
Issue4
Pages2353-2362
Document TypeJournal Article
Print ISSN1612-4758
eISSN1612-4766
DOI10.1007/s10340-025-01942-x

Access Information

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