Rapid specialization of counter defenses enables two-spotted spider mite to adapt to novel plant hosts

Author:

Salehipourshirazi Golnaz1ORCID,Bruinsma Kristie1ORCID,Ratlamwala Huzefa1,Dixit Sameer1,Arbona Vicent2ORCID,Widemann Emilie1,Milojevic Maja1ORCID,Jin Pengyu1ORCID,Bensoussan Nicolas1,Gómez-Cadenas Aurelio2,Zhurov Vladimir1ORCID,Grbic Miodrag134ORCID,Grbic Vojislava1ORCID

Affiliation:

1. Department of Biology, The University of Western Ontario, London, Ontario N6A 5B8, Canada

2. Departament de Ciències Agràries i del Medi Natural, Universitat Jaume I, Castelló de la Plana, E-12071, Spain

3. Instituto de Ciencias de la Vid y el Vino (CSIC, UR, Gobiernode La Rioja), Logrono 26006, Spain

4. Department of Biology, University of Belgrade, Belgrade, Serbia

Abstract

Abstract Genetic adaptation, occurring over a long evolutionary time, enables host-specialized herbivores to develop novel resistance traits and to efficiently counteract the defenses of a narrow range of host plants. In contrast, physiological acclimation, leading to the suppression and/or detoxification of host defenses, is hypothesized to enable broad generalists to shift between plant hosts. However, the host adaptation mechanisms used by generalists composed of host-adapted populations are not known. Two-spotted spider mite (TSSM; Tetranychus urticae) is an extreme generalist herbivore whose individual populations perform well only on a subset of potential hosts. We combined experimental evolution, Arabidopsis thaliana genetics, mite reverse genetics, and pharmacological approaches to examine mite host adaptation upon the shift of a bean (Phaseolus vulgaris)-adapted population to Arabidopsis. We showed that cytochrome P450 monooxygenases are required for mite adaptation to Arabidopsis. We identified activities of two tiers of P450s: general xenobiotic-responsive P450s that have a limited contribution to mite adaptation to Arabidopsis and adaptation-associated P450s that efficiently counteract Arabidopsis defenses. In approximately 25 generations of mite selection on Arabidopsis plants, mites evolved highly efficient detoxification-based adaptation, characteristic of specialist herbivores. This demonstrates that specialization to plant resistance traits can occur within the ecological timescale, enabling the TSSM to shift to novel plant hosts.

Funder

Government of Canada through the Ontario Research Fund

Natural Sciences and Engineering Research Council of Canada (NSERC

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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