Simulating pollen flow and field sampling constraints helps revise seed sampling recommendations for conserving genetic diversity

Author:

Rosenberger Kaylee J.12ORCID,Hoban Sean23

Affiliation:

1. The Morton Arboretum 4100 IL‐53 Lisle Illinois 60532 USA

2. Department of Ecology and Evolutionary Biology University of Colorado 1900 Pleasant St. Boulder Colorado 80302 USA

3. Committee on Evolutionary Biology The University of Chicago 1025 E. 57th St. Chicago Illinois 60637 USA

Abstract

AbstractPremiseIn this study, we use simulations to determine how pollen flow and sampling constraints can influence the genetic conservation found in seed collections.MethodsWe simulated genotypes of parental individuals and crossed the parentals based on three different ranges of pollen flow (panmictic, limited, and highly limited) to create new seed sets for sampling. We tested a variety of sampling scenarios modeled on those occurring in nature and calculated the proportion of alleles conserved in each scenario.ResultsWe found that pollen flow greatly influences collection outcomes, with panmictic pollen flow resulting in seed sets containing 21.6% more alleles than limited pollen flow and 48.6% more alleles than highly limited pollen flow, although this impact diminishes when large numbers of maternal plants are sampled. Simulations of realistic seed sampling (sampling more seed from some plants and fewer from others) showed a relatively minor impact (<2.5%) on genetic diversity conserved compared to ideal sampling (uniform sampling across all maternal plants).DiscussionWe conclude that future work must consider limited pollen flow, but collectors can be flexible with their sampling in the field as long as many unique maternal plants are sampled. Simulations remain a fruitful method to advance ex situ sampling guidelines.

Publisher

Wiley

Subject

Plant Science,Ecology, Evolution, Behavior and Systematics

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