Similar genetic mechanisms underlie the parallel evolution of floral phenotypes.

The repeated origin of similar phenotypes is invaluable for studying the underlying genetics of adaptive traits; molecular evidence, however, is lacking for most examples of such similarity. The floral morphology of neotropical Malpighiaceae is distinctive and highly conserved, especially with regar...

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Main Authors: Wenheng Zhang, Elena M Kramer, Charles C Davis
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3338646?pdf=render
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spelling doaj-c34eb7ed405047378cebe6044ab3b9522020-11-24T21:55:33ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0174e3603310.1371/journal.pone.0036033Similar genetic mechanisms underlie the parallel evolution of floral phenotypes.Wenheng ZhangElena M KramerCharles C DavisThe repeated origin of similar phenotypes is invaluable for studying the underlying genetics of adaptive traits; molecular evidence, however, is lacking for most examples of such similarity. The floral morphology of neotropical Malpighiaceae is distinctive and highly conserved, especially with regard to symmetry, and is thought to result from specialization on oil-bee pollinators. We recently demonstrated that CYCLOIDEA2-like genes (CYC2A and CYC2B) are associated with the development of the stereotypical floral zygomorphy that is critical to this plant-pollinator mutualism. Here, we build on this developmental framework to characterize floral symmetry in three clades of Malpighiaceae that have independently lost their oil bee association and experienced parallel shifts in their floral morphology, especially in regard to symmetry. We show that in each case these species exhibit a loss of CYC2B function, and a strikingly similar shift in the expression of CYC2A that is coincident with their shift in floral symmetry. These results indicate that similar floral phenotypes in this large angiosperm clade have evolved via parallel genetic changes from an otherwise highly conserved developmental program.http://europepmc.org/articles/PMC3338646?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Wenheng Zhang
Elena M Kramer
Charles C Davis
spellingShingle Wenheng Zhang
Elena M Kramer
Charles C Davis
Similar genetic mechanisms underlie the parallel evolution of floral phenotypes.
PLoS ONE
author_facet Wenheng Zhang
Elena M Kramer
Charles C Davis
author_sort Wenheng Zhang
title Similar genetic mechanisms underlie the parallel evolution of floral phenotypes.
title_short Similar genetic mechanisms underlie the parallel evolution of floral phenotypes.
title_full Similar genetic mechanisms underlie the parallel evolution of floral phenotypes.
title_fullStr Similar genetic mechanisms underlie the parallel evolution of floral phenotypes.
title_full_unstemmed Similar genetic mechanisms underlie the parallel evolution of floral phenotypes.
title_sort similar genetic mechanisms underlie the parallel evolution of floral phenotypes.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The repeated origin of similar phenotypes is invaluable for studying the underlying genetics of adaptive traits; molecular evidence, however, is lacking for most examples of such similarity. The floral morphology of neotropical Malpighiaceae is distinctive and highly conserved, especially with regard to symmetry, and is thought to result from specialization on oil-bee pollinators. We recently demonstrated that CYCLOIDEA2-like genes (CYC2A and CYC2B) are associated with the development of the stereotypical floral zygomorphy that is critical to this plant-pollinator mutualism. Here, we build on this developmental framework to characterize floral symmetry in three clades of Malpighiaceae that have independently lost their oil bee association and experienced parallel shifts in their floral morphology, especially in regard to symmetry. We show that in each case these species exhibit a loss of CYC2B function, and a strikingly similar shift in the expression of CYC2A that is coincident with their shift in floral symmetry. These results indicate that similar floral phenotypes in this large angiosperm clade have evolved via parallel genetic changes from an otherwise highly conserved developmental program.
url http://europepmc.org/articles/PMC3338646?pdf=render
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AT elenamkramer similargeneticmechanismsunderlietheparallelevolutionoffloralphenotypes
AT charlescdavis similargeneticmechanismsunderlietheparallelevolutionoffloralphenotypes
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