Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran
Younesi S, Assadi M, Nejadsattari T, Mehregan I. 2017. Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran. Biodiversitas 18: 1173-1178. Dionysia revoluta Boiss. (Primulaceae), the most widespread species of the genus in Zagros Mountains of western...
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oai:doaj.org-article:ba2edfd960cb488c958e60cd7ef755d12021-11-16T13:56:34ZMorphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran1412-033X2085-472210.13057/biodiv/d180340https://doaj.org/article/ba2edfd960cb488c958e60cd7ef755d12017-07-01T00:00:00Zhttps://smujo.id/biodiv/article/view/2040https://doaj.org/toc/1412-033Xhttps://doaj.org/toc/2085-4722Younesi S, Assadi M, Nejadsattari T, Mehregan I. 2017. Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran. Biodiversitas 18: 1173-1178. Dionysia revoluta Boiss. (Primulaceae), the most widespread species of the genus in Zagros Mountains of western Iran, is studied morphologically and genetically. Clustering analysis of morphological characters did not match the biogeography of the populations. Cluster analysis separated two subspieces of D. revoluta i.e. subsp. revoluta and subsp. canescens (Boiss.) Wendelbo. Factor analysis (FA) showed that petal size and length of the corolla tube were the only two factors with the slightest variation. Amplified Fragment Length Polymorphism (AFLP) fingerprint technique was used to evaluate the genetic structure and diversity among 14 populations of D. revoluta. The results of AFLP analysis of D. revoluta individuals showed that 67% of the total diversity was that of within-population diversity, 17% was among-population diversity and 16% was among-region diversity. AFLP data suggest that amount of genetic variation of populations growing in localities with other Dionysia species in sympatry is higher than those populations growing allopatric. This implies the hybridization as a possible important factor in the evolution of the group. It was also concluded that hybridization would result in higher genetic diversity within those populations of D. revulota occur with other species in sympatry.SIMIN YOUNESIMOSTAFA ASSADITAHER NEJADSATTARIIRAJ MEHREGANMBI & UNS Soloarticleaflpbiogeographygenetic structureiranprimulaceaeBiology (General)QH301-705.5ENBiodiversitas, Vol 18, Iss 3, Pp 1173-1178 (2017) |
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aflp biogeography genetic structure iran primulaceae Biology (General) QH301-705.5 |
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aflp biogeography genetic structure iran primulaceae Biology (General) QH301-705.5 SIMIN YOUNESI MOSTAFA ASSADI TAHER NEJADSATTARI IRAJ MEHREGAN Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran |
description |
Younesi S, Assadi M, Nejadsattari T, Mehregan I. 2017. Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran. Biodiversitas 18: 1173-1178. Dionysia revoluta Boiss. (Primulaceae), the most widespread species of the genus in Zagros Mountains of western Iran, is studied morphologically and genetically. Clustering analysis of morphological characters did not match the biogeography of the populations. Cluster analysis separated two subspieces of D. revoluta i.e. subsp. revoluta and subsp. canescens (Boiss.) Wendelbo. Factor analysis (FA) showed that petal size and length of the corolla tube were the only two factors with the slightest variation. Amplified Fragment Length Polymorphism (AFLP) fingerprint technique was used to evaluate the genetic structure and diversity among 14 populations of D. revoluta. The results of AFLP analysis of D. revoluta individuals showed that 67% of the total diversity was that of within-population diversity, 17% was among-population diversity and 16% was among-region diversity. AFLP data suggest that amount of genetic variation of populations growing in localities with other Dionysia species in sympatry is higher than those populations growing allopatric. This implies the hybridization as a possible important factor in the evolution of the group. It was also concluded that hybridization would result in higher genetic diversity within those populations of D. revulota occur with other species in sympatry. |
format |
article |
author |
SIMIN YOUNESI MOSTAFA ASSADI TAHER NEJADSATTARI IRAJ MEHREGAN |
author_facet |
SIMIN YOUNESI MOSTAFA ASSADI TAHER NEJADSATTARI IRAJ MEHREGAN |
author_sort |
SIMIN YOUNESI |
title |
Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran |
title_short |
Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran |
title_full |
Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran |
title_fullStr |
Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran |
title_full_unstemmed |
Morphology and assessment of genetic structure and diversity of Dionysia revoluta (Primulaceae) in Iran |
title_sort |
morphology and assessment of genetic structure and diversity of dionysia revoluta (primulaceae) in iran |
publisher |
MBI & UNS Solo |
publishDate |
2017 |
url |
https://doaj.org/article/ba2edfd960cb488c958e60cd7ef755d1 |
work_keys_str_mv |
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_version_ |
1718426501150408704 |