Insect pest consumption by bats in macadamia orchards established by molecular diet analyses

The diet of insectivorous bat species is difficult to study and the least invasive tool to gain information on these predators’ foraging preferences is the study of their faecal pellets. The aim of this study was to determine whether bats consumed insect pest species in macadamia orchards, with the...

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Main Authors: Sina M. Weier, Yoshan Moodley, Mischa F. Fraser, Valerie M.G. Linden, Ingo Grass, Teja Tscharntke, Peter J. Taylor
Format: Article
Language:English
Published: Elsevier 2019-04-01
Series:Global Ecology and Conservation
Online Access:http://www.sciencedirect.com/science/article/pii/S2351989418304475
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spelling doaj-a19460b7bce9415d865fe6a767d2a2212020-11-25T01:31:31ZengElsevierGlobal Ecology and Conservation2351-98942019-04-0118Insect pest consumption by bats in macadamia orchards established by molecular diet analysesSina M. Weier0Yoshan Moodley1Mischa F. Fraser2Valerie M.G. Linden3Ingo Grass4Teja Tscharntke5Peter J. Taylor6SARChI Chair on Biodiversity & Change, School of Mathematical & Natural Science, University of Venda, Thohoyandou, South Africa; Department of Zoology, University of Venda, University Road, Thohoyandou, 0950, South Africa; Corresponding author. SARChI Chair on Biodiversity & Change, School of Mathematical & Natural Sciences, University of Venda, P. Bag X5050, Thohoyandou, 0950, Limpopo, South Africa.Department of Zoology, University of Venda, University Road, Thohoyandou, 0950, South AfricaInqaba Biotechnical Industries (Pty) Ltd., PO Box 14356, Hatfield, 0028, Pretoria, South AfricaSARChI Chair on Biodiversity & Change, School of Mathematical & Natural Science, University of Venda, Thohoyandou, South AfricaAgroecology, Department of Crop Sciences, University of Goettingen, Grisebachstrasse 6, 37077, Göttingen, GermanyAgroecology, Department of Crop Sciences, University of Goettingen, Grisebachstrasse 6, 37077, Göttingen, GermanySARChI Chair on Biodiversity & Change, School of Mathematical & Natural Science, University of Venda, Thohoyandou, South Africa; School of Life Sciences, University of KwaZulu-Natal, Biological Sciences Building, South Ring Road, Westville Campus, Durban, KwaZulu-Natal, 3630, South AfricaThe diet of insectivorous bat species is difficult to study and the least invasive tool to gain information on these predators’ foraging preferences is the study of their faecal pellets. The aim of this study was to determine whether bats consumed insect pest species in macadamia orchards, with the additional goal of incentivising farmers to adopt a more integrated pest management approach (IPM). We used a molecular approach to provide insight into insectivorous bat diet, analysing pellets with fluorescent-labelled and species-specific primers (COI). Faecal pellets were collected from captured individuals or from trays installed underneath bathouses and roosts between July 2015 and April 2017 in the Levubu region, Limpopo, South Africa. Four of the main insect pests, two moth (Lepidoptera: Tortricidae) and two stinkbug (Hemiptera: Pentatomidae) species, were collected for species-specific primer development and assay optimisation. We extracted DNA from the faecal pellets and amplified the target regions of the four target pest species present. To verify the results of the fragment analyses we also sequenced all PCR products.All the species or families of bats from which pellets were collected foraged on at least one of the four major insect pests, with insect pest sequences obtained and confirmed from 57 out of 103 samples (55%). Bats consumed insect pests throughout the macadamia growing seasons and are much more generalist and presumably opportunistic feeders than previously assumed. Nearly all species and families of bats analysed foraged on both the Lepidopteran and Hemipteran insect pest species. In conclusion, bats appear to be important for pest control and we suggest that farmers should maintain or restore (semi-)natural vegetation inside and adjacent to their farms. Adding water sources and roosting opportunities, and minimizing pesticide treatments may furthermore promote bat activity. Keywords: Fragment analyses, IPM, Molecular diet analyses, Bat, Ecosystem service, Agriculturehttp://www.sciencedirect.com/science/article/pii/S2351989418304475
collection DOAJ
language English
format Article
sources DOAJ
author Sina M. Weier
Yoshan Moodley
Mischa F. Fraser
Valerie M.G. Linden
Ingo Grass
Teja Tscharntke
Peter J. Taylor
spellingShingle Sina M. Weier
Yoshan Moodley
Mischa F. Fraser
Valerie M.G. Linden
Ingo Grass
Teja Tscharntke
Peter J. Taylor
Insect pest consumption by bats in macadamia orchards established by molecular diet analyses
Global Ecology and Conservation
author_facet Sina M. Weier
Yoshan Moodley
Mischa F. Fraser
Valerie M.G. Linden
Ingo Grass
Teja Tscharntke
Peter J. Taylor
author_sort Sina M. Weier
title Insect pest consumption by bats in macadamia orchards established by molecular diet analyses
title_short Insect pest consumption by bats in macadamia orchards established by molecular diet analyses
title_full Insect pest consumption by bats in macadamia orchards established by molecular diet analyses
title_fullStr Insect pest consumption by bats in macadamia orchards established by molecular diet analyses
title_full_unstemmed Insect pest consumption by bats in macadamia orchards established by molecular diet analyses
title_sort insect pest consumption by bats in macadamia orchards established by molecular diet analyses
publisher Elsevier
series Global Ecology and Conservation
issn 2351-9894
publishDate 2019-04-01
description The diet of insectivorous bat species is difficult to study and the least invasive tool to gain information on these predators’ foraging preferences is the study of their faecal pellets. The aim of this study was to determine whether bats consumed insect pest species in macadamia orchards, with the additional goal of incentivising farmers to adopt a more integrated pest management approach (IPM). We used a molecular approach to provide insight into insectivorous bat diet, analysing pellets with fluorescent-labelled and species-specific primers (COI). Faecal pellets were collected from captured individuals or from trays installed underneath bathouses and roosts between July 2015 and April 2017 in the Levubu region, Limpopo, South Africa. Four of the main insect pests, two moth (Lepidoptera: Tortricidae) and two stinkbug (Hemiptera: Pentatomidae) species, were collected for species-specific primer development and assay optimisation. We extracted DNA from the faecal pellets and amplified the target regions of the four target pest species present. To verify the results of the fragment analyses we also sequenced all PCR products.All the species or families of bats from which pellets were collected foraged on at least one of the four major insect pests, with insect pest sequences obtained and confirmed from 57 out of 103 samples (55%). Bats consumed insect pests throughout the macadamia growing seasons and are much more generalist and presumably opportunistic feeders than previously assumed. Nearly all species and families of bats analysed foraged on both the Lepidopteran and Hemipteran insect pest species. In conclusion, bats appear to be important for pest control and we suggest that farmers should maintain or restore (semi-)natural vegetation inside and adjacent to their farms. Adding water sources and roosting opportunities, and minimizing pesticide treatments may furthermore promote bat activity. Keywords: Fragment analyses, IPM, Molecular diet analyses, Bat, Ecosystem service, Agriculture
url http://www.sciencedirect.com/science/article/pii/S2351989418304475
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