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Allozyme variation in two forest populations of Platynothrus peltifer (Acari, Oribatida)

Identifieur interne : 000F26 ( Istex/Corpus ); précédent : 000F25; suivant : 000F27

Allozyme variation in two forest populations of Platynothrus peltifer (Acari, Oribatida)

Auteurs : Horacio Vera Ziegler ; Thierry Backeljau ; Georges Wauthy

Source :

RBID : ISTEX:B0B407B6AEF6E2DCFF0366FD5B92317C091C350F

Abstract

Samples of tritonymph individuals of Platynothrus peltifer were collected from two forest populations showing clear ecological and temporal divergences, and subjected to electrophoretic analysis of three enzymes, superoxide-dismutase, malate-dehydrogenase and esterases. Electrophoretic patterns were quite similar in both populations. This suggests that, after more than 40 generations, heterochronic differentiations do not seem to be related to allozyme alterations. Yet, a study of clonal diversity and its temporal modifications in both populations is required to confirm this hypothesis.

Url:
DOI: 10.1016/0305-1978(90)90035-E

Links to Exploration step

ISTEX:B0B407B6AEF6E2DCFF0366FD5B92317C091C350F

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<ce:title>Allozyme variation in two forest populations of
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(Acari, Oribatida)</ce:title>
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<ce:given-name>Horacio</ce:given-name>
<ce:surname>Vera Ziegler</ce:surname>
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<ce:simple-para>Samples of tritonymph individuals of Platynothrus peltifer were collected from two forest populations showing clear ecological and temporal divergences, and subjected to electrophoretic analysis of three enzymes, superoxide-dismutase, malate-dehydrogenase and esterases. Electrophoretic patterns were quite similar in both populations. This suggests that, after more than 40 generations, heterochronic differentiations do not seem to be related to allozyme alterations. Yet, a study of clonal diversity and its temporal modifications in both populations is required to confirm this hypothesis.</ce:simple-para>
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<abstract lang="en">Samples of tritonymph individuals of Platynothrus peltifer were collected from two forest populations showing clear ecological and temporal divergences, and subjected to electrophoretic analysis of three enzymes, superoxide-dismutase, malate-dehydrogenase and esterases. Electrophoretic patterns were quite similar in both populations. This suggests that, after more than 40 generations, heterochronic differentiations do not seem to be related to allozyme alterations. Yet, a study of clonal diversity and its temporal modifications in both populations is required to confirm this hypothesis.</abstract>
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<topic>Platynothrus peltifer</topic>
<topic>Oribatida</topic>
<topic>alloenzymes</topic>
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