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Polyploidization in Heuchera cylindrica (Saxifragaceae) did not result in a shift in climatic requirements.

Authors :
Godsoe W
Larson MA
Glennon KL
Segraves KA
Source :
American journal of botany [Am J Bot] 2013 Mar; Vol. 100 (3), pp. 496-508. Date of Electronic Publication: 2013 Feb 10.
Publication Year :
2013

Abstract

Premise of the Study: Polyploidization is a key factor involved in the diversification of plants. Although polyploids are commonly found, there remains controversy on the mechanisms that lead to their successful establishment. One major problem that has been identified is that newly formed polyploids lack mates of the appropriate ploidy level and may experience severely reduced fertility due to nonproductive intercytotype crosses. Niche differentiation has been proposed as a primary mechanism that can alleviate this reproductive disadvantage and facilitate polyploid establishment. Here we test whether the establishment of tetraploid cytotypes of Heuchera cylindrica (Saxifragaceae) is consistent with climatic niche differentiation. •<br />Methods: We use a combination of field surveys, flow cytometry and species distribution models to: (1) examine the distribution of diploid and tetraploid cytotypes; and (2) determine whether tetraploid Heuchera cylindrica occupy climates that differ from those of its diploid progenitors. •<br />Key Results: The geographic distributions of diploid and tetraploid cytotypes are largely allopatric as an extensive survey of 636 plants from 43 locations failed to detect any populations with both cytotypes. Although diploids and tetraploids occur in different geographic areas, polyploid Heuchera cylindrica occur almost exclusively in environments that are predicted to be suitable to diploid populations. •<br />Conclusions: Climatic niche differentiation does not explain the geographic distribution of tetraploid Heuchera cylindrica. We propose instead that tetraploid lineages were able to establish by taking advantage of glacial retreat and expanding into previously unoccupied sites.

Details

Language :
English
ISSN :
1537-2197
Volume :
100
Issue :
3
Database :
MEDLINE
Journal :
American journal of botany
Publication Type :
Academic Journal
Accession number :
23400493
Full Text :
https://doi.org/10.3732/ajb.1200275