Biological factors controlling developmental duration, growth and metamorphosis of the larval green toad, Bufo viridis viridis

The present study in a controlled laboratory setting provided important insights into both the degree of plasticity and the proximal environmental cues operating in the response of green toad tadpoles to pond drying, food level. It was concluded that timing of metamorphosis and size at metamorphosis...

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Main Authors: Gamal A. Bekhet, Heba A. Abdou, Samir A. Dekinesh, Hussein A. Hussein, Samar S. Sebiae
Format: Article
Language:English
Published: SpringerOpen 2014-05-01
Series:Journal of Basic and Applied Zoology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2090989614000320
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spelling doaj-a21fdf4c8a9d4093a7446faec7bc93322020-11-25T00:19:08ZengSpringerOpenJournal of Basic and Applied Zoology2090-98962014-05-01673678210.1016/j.jobaz.2014.09.005Biological factors controlling developmental duration, growth and metamorphosis of the larval green toad, Bufo viridis viridisGamal A. BekhetHeba A. AbdouSamir A. DekineshHussein A. HusseinSamar S. SebiaeThe present study in a controlled laboratory setting provided important insights into both the degree of plasticity and the proximal environmental cues operating in the response of green toad tadpoles to pond drying, food level. It was concluded that timing of metamorphosis and size at metamorphosis were highly affected by pond duration. The effects of pond desiccation are reflected by shorter developmental duration and smaller size at metamorphosis as a result of increased crowding in the shallow tanks than tadpoles in the deep tanks. Bufo viridis raised on high food supplements grew faster than those raised on low food in low or high population density. In the tanks with decreased water and food levels, the tadpoles accelerate development and metamorphose earlier than tadpoles in higher food and water levels. The obtained data revealed that tadpoles grew faster under conditions of high population density than low one in either high or low food levels. Actual density had limited but significant effects on tadpole size and development. It also suggested that density regulation, acting on the tadpole stage, may be present in the population but was of less short-term importance than abiotic factors. Environmentally induced variation in developmental rates translated to changes in relative hind leg length. Hind leg length plasticity was positively correlated with growth rate plasticity. Finally, documenting the recent results of this study, B. viridis breed in temporary ponds and exhibited plasticity in developmental duration and growth rate in response to a change in water level.http://www.sciencedirect.com/science/article/pii/S2090989614000320Bufo viridis viridisPlasticityWater levelFood supplementsGrowth ratesBody length
collection DOAJ
language English
format Article
sources DOAJ
author Gamal A. Bekhet
Heba A. Abdou
Samir A. Dekinesh
Hussein A. Hussein
Samar S. Sebiae
spellingShingle Gamal A. Bekhet
Heba A. Abdou
Samir A. Dekinesh
Hussein A. Hussein
Samar S. Sebiae
Biological factors controlling developmental duration, growth and metamorphosis of the larval green toad, Bufo viridis viridis
Journal of Basic and Applied Zoology
Bufo viridis viridis
Plasticity
Water level
Food supplements
Growth rates
Body length
author_facet Gamal A. Bekhet
Heba A. Abdou
Samir A. Dekinesh
Hussein A. Hussein
Samar S. Sebiae
author_sort Gamal A. Bekhet
title Biological factors controlling developmental duration, growth and metamorphosis of the larval green toad, Bufo viridis viridis
title_short Biological factors controlling developmental duration, growth and metamorphosis of the larval green toad, Bufo viridis viridis
title_full Biological factors controlling developmental duration, growth and metamorphosis of the larval green toad, Bufo viridis viridis
title_fullStr Biological factors controlling developmental duration, growth and metamorphosis of the larval green toad, Bufo viridis viridis
title_full_unstemmed Biological factors controlling developmental duration, growth and metamorphosis of the larval green toad, Bufo viridis viridis
title_sort biological factors controlling developmental duration, growth and metamorphosis of the larval green toad, bufo viridis viridis
publisher SpringerOpen
series Journal of Basic and Applied Zoology
issn 2090-9896
publishDate 2014-05-01
description The present study in a controlled laboratory setting provided important insights into both the degree of plasticity and the proximal environmental cues operating in the response of green toad tadpoles to pond drying, food level. It was concluded that timing of metamorphosis and size at metamorphosis were highly affected by pond duration. The effects of pond desiccation are reflected by shorter developmental duration and smaller size at metamorphosis as a result of increased crowding in the shallow tanks than tadpoles in the deep tanks. Bufo viridis raised on high food supplements grew faster than those raised on low food in low or high population density. In the tanks with decreased water and food levels, the tadpoles accelerate development and metamorphose earlier than tadpoles in higher food and water levels. The obtained data revealed that tadpoles grew faster under conditions of high population density than low one in either high or low food levels. Actual density had limited but significant effects on tadpole size and development. It also suggested that density regulation, acting on the tadpole stage, may be present in the population but was of less short-term importance than abiotic factors. Environmentally induced variation in developmental rates translated to changes in relative hind leg length. Hind leg length plasticity was positively correlated with growth rate plasticity. Finally, documenting the recent results of this study, B. viridis breed in temporary ponds and exhibited plasticity in developmental duration and growth rate in response to a change in water level.
topic Bufo viridis viridis
Plasticity
Water level
Food supplements
Growth rates
Body length
url http://www.sciencedirect.com/science/article/pii/S2090989614000320
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