Literature DB >> 12647167

Redundancy among three herbivorous insects across an experimental current velocity gradient.

N LeRoy Poff1, Todd Wellnitz, Jeremy B Monroe.   

Abstract

We conducted streamside experiments to determine if the ability of herbivorous insects to remove algal periphyton varies with local current velocity. We used two mayfly species (Baetis bicaudatusand Drunella grandis) and one caddisfly species (Glossosoma verdona), which differ from one another in body morphology and mobility. Periphyton was grown for 30 days on ceramic tiles in constant velocity to create similar initial forage conditions for grazers. Tiles were transferred to three velocity regimes characteristic of the natural streambed: slow (3-5 cm s(-1)), medium (15-20 cm s(-1)) and fast (32-41 cm s(-1)). Four grazer treatments (Baetis, Drunella, and Glossosoma alone, and all species combined) were repeated for each velocity treatment to isolate the effect of local current on grazer ability to crop periphyton. Grazers differed in their abilities to remove periphyton across current treatments. Glossosoma removed significantly (P<0.05) more periphyton at fast versus either slow or medium velocities; Baetis showed a similar (but non-significant) trend; and, Drunella always removed about 75% of periphyton, irrespective of current. At fast current, periphyton removal was equivalent among the species. At medium current, Drunella removed significantly more than both Baetis and Glossosoma, whereas at slow current, Drunella removed more than Baetis, which removed more than Glossosoma. Periphyton removal under the combined three-grazer treatment was similar qualitatively to the combined effects of individual grazers. More periphyton tended to be removed as current increased, with the fast versus slow contrast showing marginal significance (P=0.10). Under all current regimes, the quantity of periphyton removed did not differ from the null model expectation of simple additive effects among individual grazers (i.e., no facilitation or inhibition). These experiments show that for some species, herbivory varies with current, which suggests that the herbivore "function" of cropping periphyton may vary with the environmental context of local current. Under some local velocities, however, different herbivore species "function" similarly and are potentially redundant with respect to periphytic removal. In naturally heterogeneous streams characterized by sharp gradients in local current velocity, we expect current-dependent species interactions to be common and at least partially contribute to intra-guild co-existence of species.

Entities:  

Mesh:

Year:  2002        PMID: 12647167     DOI: 10.1007/s00442-002-1086-2

Source DB:  PubMed          Journal:  Oecologia        ISSN: 0029-8549            Impact factor:   3.225


  4 in total

1.  Bayesian Modeling of the Effects of Extreme Flooding and the Grazer Community on Algal Biomass Dynamics in a Monsoonal Taiwan Stream.

Authors:  Ming-Chih Chiu; Mei-Hwa Kuo; Hao-Yen Chang; Hsing-Juh Lin
Journal:  Microb Ecol       Date:  2016-06-06       Impact factor: 4.552

2.  Competition, predation and flow rate as mediators of direct and indirect effects in a stream food chain.

Authors:  S Blanchet; G Loot; J J Dodson
Journal:  Oecologia       Date:  2008-05-09       Impact factor: 3.225

3.  Impact of irrigation practices on Gilgel Abay, Ribb and Gumara fisheries, Tana Sub-Basin, Ethiopia.

Authors:  Dagnew Mequanent; Minwyelet Mingist; Abebe Getahun; Wassie Anteneh
Journal:  Heliyon       Date:  2021-03-19

4.  Managing the effects of multiple stressors on aquatic ecosystems under water scarcity. The GLOBAQUA project.

Authors:  Alícia Navarro-Ortega; Vicenç Acuña; Alberto Bellin; Peter Burek; Giorgio Cassiani; Redouane Choukr-Allah; Sylvain Dolédec; Arturo Elosegi; Federico Ferrari; Antoni Ginebreda; Peter Grathwohl; Colin Jones; Philippe Ker Rault; Kasper Kok; Phoebe Koundouri; Ralf Peter Ludwig; Ralf Merz; Radmila Milacic; Isabel Muñoz; Grigory Nikulin; Claudio Paniconi; Momir Paunović; Mira Petrovic; Laia Sabater; Sergi Sabaterb; Nikolaos Th Skoulikidis; Adriaan Slob; Georg Teutsch; Nikolaos Voulvoulis; Damià Barceló
Journal:  Sci Total Environ       Date:  2014-07-05       Impact factor: 7.963

  4 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.