Literature DB >> 29801804

The Xenon Test Chamber Q-SUN® for testing realistic tolerances of fungi exposed to simulated full spectrum solar radiation.

Luciana P Dias1, Claudinéia A S Araújo2, Breno Pupin2, Paulo C Ferreira2, Gilberto Ú L Braga3, Drauzio E N Rangel4.   

Abstract

The low survival of insect-pathogenic fungi when used for insect control in agriculture is mainly due to the deleterious effects of ultraviolet radiation and heat from solar irradiation. In this study, conidia of 15 species of entomopathogenic fungi were exposed to simulated full-spectrum solar radiation emitted by a Xenon Test Chamber Q-SUN XE-3-HC 340S (Q-LAB® Corporation, Westlake, OH, USA), which very closely simulates full-spectrum solar radiation. A dendrogram obtained from cluster analyses, based on lethal time 50 % and 90 % calculated by Probit analyses, separated the fungi into three clusters: cluster 3 contains species with highest tolerance to simulated full-spectrum solar radiation, included Metarhizium acridum, Cladosporium herbarum, and Trichothecium roseum with LT50 > 200 min irradiation. Cluster 2 contains eight species with moderate UV tolerance: Aschersonia aleyrodis, Isaria fumosorosea, Mariannaea pruinosa, Metarhizium anisopliae, Metarhizium brunneum, Metarhizium robertsii, Simplicillium lanosoniveum, and Torrubiella homopterorum with LT50 between 120 and 150 min irradiation. The four species in cluster 1 had the lowest UV tolerance: Lecanicillium aphanocladii, Beauveria bassiana, Tolypocladium cylindrosporum, and Tolypocladium inflatum with LT50 < 120 min irradiation. The QSUN Xenon Test Chamber XE3 is often used by the pharmaceutical and automotive industry to test light stability and weathering, respectively, but it was never used to evaluate fungal tolerance to full-spectrum solar radiation before. We conclude that the equipment provided an excellent tool for testing realistic tolerances of fungi to full-spectrum solar radiation of microbial agents for insect biological control in agriculture.
Copyright © 2018 British Mycological Society. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Agricultural microbiology; Entomopathogenic fungi; Simulated full-spectrum solar radiation; Solar simulator; Stress tolerance; Xenon Test Chamber Q-SUN

Mesh:

Substances:

Year:  2018        PMID: 29801804     DOI: 10.1016/j.funbio.2018.01.003

Source DB:  PubMed          Journal:  Fungal Biol


  3 in total

1.  Microbial Control of Leptopharsa heveae Drake & Poor (Hemiptera: Tingidae) in Brazilian Rubber Tree Plantations: a Brief Historical Account and Identification of Entomopathogenic Fungi by Means of Multigene Phylogeny.

Authors:  M Faria; D A de Souza; R B Lopes
Journal:  Neotrop Entomol       Date:  2020-09-24       Impact factor: 1.434

2.  The Third International Symposium on Fungal Stress - ISFUS.

Authors:  Alene Alder-Rangel; Alexander Idnurm; Alexandra C Brand; Alistair J P Brown; Anna Gorbushina; Christina M Kelliher; Claudia B Campos; David E Levin; Deborah Bell-Pedersen; Ekaterina Dadachova; Florian F Bauer; Geoffrey M Gadd; Gerhard H Braus; Gilberto U L Braga; Guilherme T P Brancini; Graeme M Walker; Irina Druzhinina; István Pócsi; Jan Dijksterhuis; Jesús Aguirre; John E Hallsworth; Julia Schumacher; Koon Ho Wong; Laura Selbmann; Luis M Corrochano; Martin Kupiec; Michelle Momany; Mikael Molin; Natalia Requena; Oded Yarden; Radamés J B Cordero; Reinhard Fischer; Renata C Pascon; Rocco L Mancinelli; Tamas Emri; Thiago O Basso; Drauzio E N Rangel
Journal:  Fungal Biol       Date:  2020-02-24

3.  Low- or high-white light irradiance induces similar conidial stress tolerance in Metarhizium robertsii.

Authors:  Luciana P Dias; Breno Pupin; Donald W Roberts; Drauzio E N Rangel
Journal:  Arch Microbiol       Date:  2021-12-27       Impact factor: 2.552

  3 in total

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