TY - JOUR
T1 - New opportunities for the integration of microorganisms into biological pest control systems in greenhouse crops
AU - Francisco, Gonzalez
AU - Tkaczuk, Cezary
AU - Dinu, Mihaela Monica
AU - Fiedler, Zaneta
AU - Vidal, Stefan
AU - Zchori-Fein, Einat
AU - Messelink, Gerben J.
PY - 2016
Y1 - 2016
N2 - Biological pest control with mass-produced arthropod natural enemies is well developed in greenhouse crops and has often resulted in the evolution of complex ecosystems with persistent populations of multiple arthropod natural enemy species. However, there are cases where arthropod natural enemies are either not effective enough, not available, or their use is rather costly. For these reasons, biological control based on microorganisms, also referred to as 'microbials', represents a complementary strategy for further development. Although commercially available microbials have been around for quite some time, research on and the applied use of combinations of arthropod natural enemies and microbials have remained relatively under explored. Here, we review current uses of entomopathogenic fungi, bacteria and viruses, and their possible direct and indirect effects on arthropod natural enemies in European greenhouses. We discuss how microbials might be combined with arthropod natural enemies in the light of new methodologies and technologies such as conservation biological control, greenhouse climate management, and formulation and delivery. Furthermore, we explore the possibilities of using other microorganisms for biological control, such as endophytes, and the need to understand the effect of insect-associated microorganisms, or symbionts, on the success of biological control. Finally, we suggest future research directions to optimize the combined use of microbials and arthropod natural enemies in greenhouse production.
AB - Biological pest control with mass-produced arthropod natural enemies is well developed in greenhouse crops and has often resulted in the evolution of complex ecosystems with persistent populations of multiple arthropod natural enemy species. However, there are cases where arthropod natural enemies are either not effective enough, not available, or their use is rather costly. For these reasons, biological control based on microorganisms, also referred to as 'microbials', represents a complementary strategy for further development. Although commercially available microbials have been around for quite some time, research on and the applied use of combinations of arthropod natural enemies and microbials have remained relatively under explored. Here, we review current uses of entomopathogenic fungi, bacteria and viruses, and their possible direct and indirect effects on arthropod natural enemies in European greenhouses. We discuss how microbials might be combined with arthropod natural enemies in the light of new methodologies and technologies such as conservation biological control, greenhouse climate management, and formulation and delivery. Furthermore, we explore the possibilities of using other microorganisms for biological control, such as endophytes, and the need to understand the effect of insect-associated microorganisms, or symbionts, on the success of biological control. Finally, we suggest future research directions to optimize the combined use of microbials and arthropod natural enemies in greenhouse production.
KW - Arthropod natural enemies
KW - Microbials
KW - Entomopathogens
KW - Endophytes
KW - Symbionts
KW - Arthropod natural enemies
KW - Microbials
KW - Entomopathogens
KW - Endophytes
KW - Symbionts
UR - https://res.slu.se/id/publ/82849
U2 - 10.1007/s10340-016-0751-x
DO - 10.1007/s10340-016-0751-x
M3 - Review article
SN - 1612-4758
VL - 89
SP - 295
EP - 311
JO - Journal of Pest Science
JF - Journal of Pest Science
IS - 2
ER -