Literature DB >> 28160498

Long-term effects of fungicides on leaf-associated microorganisms and shredder populations-an artificial stream study.

Jochen P Zubrod1, Dominic Englert1, Jakob Wolfram1, Ricki R Rosenfeldt1,2, Alexander Feckler3, Rebecca Bundschuh1, Frank Seitz1,2, Marco Konschak1, Patrick Baudy1, Simon Lüderwald1, Patrick Fink4, Andreas Lorke1, Ralf Schulz1, Mirco Bundschuh3.   

Abstract

Leaf litter is a major source of carbon and energy for stream food webs, while both leaf-decomposing microorganisms and macroinvertebrate leaf shredders can be affected by fungicides. Despite the potential for season-long fungicide exposure for these organisms, however, such chronic exposures have not yet been considered. Using an artificial stream facility, effects of a chronic (lasting up to 8 wk) exposure to a mixture of 5 fungicides (sum concentration 20 μg/L) on leaf-associated microorganisms and the key leaf shredder Gammarus fossarum were therefore assessed. While bacterial density and microorganism-mediated leaf decomposition remained unaltered, fungicide exposure reduced fungal biomass (≤71%) on leaves from day 28 onward. Gammarids responded to the combined stress from consumption of fungicide-affected leaves and waterborne exposure with a reduced abundance (≤18%), which triggered reductions in final population biomass (18%) and in the number of precopula pairs (≤22%) but could not fully explain the decreased leaf consumption (19%), lipid content (≤43%; going along with an altered composition of fatty acids), and juvenile production (35%). In contrast, fine particulate organic matter production and stream respiration were unaffected. Our results imply that long-term exposure of leaf-associated fungi and shredders toward fungicides may result in detrimental implications in stream food webs and impairments of detrital material fluxes. These findings render it important to understand decomposer communities' long-term adaptational capabilities to ensure that functional integrity is safeguarded. Environ Toxicol Chem 2017;36:2178-2189.
© 2017 SETAC. © 2017 SETAC.

Entities:  

Keywords:  Aquatic hyphomycetes; Chronic exposure; Gammarus fossarum; Leaf litter breakdown; Population development

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Substances:

Year:  2017        PMID: 28160498     DOI: 10.1002/etc.3756

Source DB:  PubMed          Journal:  Environ Toxicol Chem        ISSN: 0730-7268            Impact factor:   3.742


  2 in total

1.  Bottom-up effects of fungicides on tadpoles of the European common frog (Rana temporaria).

Authors:  Mirco Bundschuh; Jochen P Zubrod; Theo Wernicke; Marco Konschak; Leon Werner; Carsten A Brühl; Patrick Baudy; Ralf Schulz
Journal:  Ecol Evol       Date:  2021-03-21       Impact factor: 2.912

2.  Impacts of detritivore diversity loss on instream decomposition are greatest in the tropics.

Authors:  Luz Boyero; Naiara López-Rojo; Alan M Tonin; Javier Pérez; Francisco Correa-Araneda; Richard G Pearson; Jaime Bosch; Ricardo J Albariño; Sankarappan Anbalagan; Leon A Barmuta; Ana Basaguren; Francis J Burdon; Adriano Caliman; Marcos Callisto; Adolfo R Calor; Ian C Campbell; Bradley J Cardinale; J Jesús Casas; Ana M Chará-Serna; Eric Chauvet; Szymon Ciapała; Checo Colón-Gaud; Aydeé Cornejo; Aaron M Davis; Monika Degebrodt; Emerson S Dias; María E Díaz; Michael M Douglas; Andrea C Encalada; Ricardo Figueroa; Alexander S Flecker; Tadeusz Fleituch; Erica A García; Gabriela García; Pavel E García; Mark O Gessner; Jesús E Gómez; Sergio Gómez; Jose F Gonçalves; Manuel A S Graça; Daniel C Gwinn; Robert O Hall; Neusa Hamada; Cang Hui; Daichi Imazawa; Tomoya Iwata; Samuel K Kariuki; Andrea Landeira-Dabarca; Kelsey Laymon; María Leal; Richard Marchant; Renato T Martins; Frank O Masese; Megan Maul; Brendan G McKie; Adriana O Medeiros; Charles M M' Erimba; Jen A Middleton; Silvia Monroy; Timo Muotka; Junjiro N Negishi; Alonso Ramírez; John S Richardson; José Rincón; Juan Rubio-Ríos; Gisele M Dos Santos; Romain Sarremejane; Fran Sheldon; Augustine Sitati; Nathalie S D Tenkiano; Scott D Tiegs; Janine R Tolod; Michael Venarsky; Anne Watson; Catherine M Yule
Journal:  Nat Commun       Date:  2021-06-17       Impact factor: 14.919

  2 in total

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