[Optimization model of spatial population structure: example of poplar moth laying eggs on leaves].
Identifieur interne : 004599 ( Main/Curation ); précédent : 004598; suivant : 004600[Optimization model of spatial population structure: example of poplar moth laying eggs on leaves].
Auteurs : O P Sekretenko [Russie] ; V G Sukhovol'Ski ; O V TarasovaSource :
- Zhurnal obshchei biologii [ 0044-4596 ]
Descripteurs français
- KwdFr :
- MESH :
- anatomie et histologie : Papillons de nuit.
- physiologie : Papillons de nuit.
- Animaux, Comportement alimentaire, Comportement spatial, Dynamique des populations, Modèles biologiques, Oviposition.
English descriptors
- KwdEn :
- MESH :
- anatomy & histology : Moths.
- physiology : Moths.
- Animals, Feeding Behavior, Models, Biological, Oviposition, Population Dynamics, Spatial Behavior.
Abstract
The authors analyze spatial distribution and survival of populations of poplar moth Litchcolletis populifoliella Tr. on its feeding plant--balsam poplar Populus balsamifera. Imago of the moth glue its eggs on the leaves thus determining the future location of their offspring on the host plant. Spatial distribution of eggs on leaf surface and distribution of leaves according egg numbers are not random. On the short distance from each egg the average number of eggs is less, than it should be in case of random distribution. While this distance increases up to some particular value the occurrence of eggs is higher than random. Thus, the eggs of moth are located by groups on the leaf surface. Within each group eggs are situated not very close to each other, this allowing larvae to lower competition for common resource. It is suggested that on the same feeding plant individuals have different interactions: competition, caused by limited quantity of resource and cooperation that is necessary to resist leaf defensive (antibiosis) reaction.
PubMed: 12298182
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pubmed:12298182Le document en format XML
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<term>Moths (physiology)</term>
<term>Oviposition (MeSH)</term>
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<term>Comportement alimentaire</term>
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<front><div type="abstract" xml:lang="en">The authors analyze spatial distribution and survival of populations of poplar moth Litchcolletis populifoliella Tr. on its feeding plant--balsam poplar Populus balsamifera. Imago of the moth glue its eggs on the leaves thus determining the future location of their offspring on the host plant. Spatial distribution of eggs on leaf surface and distribution of leaves according egg numbers are not random. On the short distance from each egg the average number of eggs is less, than it should be in case of random distribution. While this distance increases up to some particular value the occurrence of eggs is higher than random. Thus, the eggs of moth are located by groups on the leaf surface. Within each group eggs are situated not very close to each other, this allowing larvae to lower competition for common resource. It is suggested that on the same feeding plant individuals have different interactions: competition, caused by limited quantity of resource and cooperation that is necessary to resist leaf defensive (antibiosis) reaction.</div>
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<ArticleTitle>[Optimization model of spatial population structure: example of poplar moth laying eggs on leaves].</ArticleTitle>
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<Abstract><AbstractText>The authors analyze spatial distribution and survival of populations of poplar moth Litchcolletis populifoliella Tr. on its feeding plant--balsam poplar Populus balsamifera. Imago of the moth glue its eggs on the leaves thus determining the future location of their offspring on the host plant. Spatial distribution of eggs on leaf surface and distribution of leaves according egg numbers are not random. On the short distance from each egg the average number of eggs is less, than it should be in case of random distribution. While this distance increases up to some particular value the occurrence of eggs is higher than random. Thus, the eggs of moth are located by groups on the leaf surface. Within each group eggs are situated not very close to each other, this allowing larvae to lower competition for common resource. It is suggested that on the same feeding plant individuals have different interactions: competition, caused by limited quantity of resource and cooperation that is necessary to resist leaf defensive (antibiosis) reaction.</AbstractText>
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<VernacularTitle>Optimizatsionnaia model' prostranstvennoĭ struktury populiatsii (na primere razmeshcheniia iaits topolevoĭ moli na liste).</VernacularTitle>
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