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Ennos, R.

Publications and source records attributed to Ennos, R..

2 recordsLinked to original sources

Evidence of genetic isolation and differentiation among historically fragmented British populations of common juniper, Juniperus communis L.

Habitat fragmentation and populations isolation pose a threat to the genetic diversity and adaptability of many species. The common juniper, Juniperus communis L., a keystone species for juniper scrub habitat and one of only three conifers that are native to the UK, has been in decline for more than a century in the UK and across its European range. Remnant UK juniper populations are now highly fragmented and often small, which has raised concerns for their resilience, especially in the face of climate change and the introduction of novel pathogens, such as Phytophthora austrocedri. This work presents a baseline genetic survey of native UK juniper populations and compares patterns of diversity between populations and among three population centres in southern England, the Lake District, and Scotland using both Single Nucleotide Polymorphism (SNP) and Simple Sequence Repeat (SSR) genetic markers. The aim was to evaluate the standing genetic diversity of native juniper stands, the impacts of habitat fragmentation, and to determine whether juniper populations are genetically isolated from one another. We found that juniper populations, while not completely isolated from one another, face substantial barriers to gene flow, especially between the three population centres. These centres also show different patterns of genetic diversity, indicating varying levels of internal gene flow and inbreeding. Our findings can form a baseline from which to monitor the effectiveness of conservation activities, prioritize populations of concern, and guide genetic rescue efforts.

genetics↗

Not like other conifers: evaluation of phenotypic diversity in British common juniper, Juniperus communis, indicates genetic isolation and local adaptations among remnant populations

Habitat fragmentation and genetic isolation pose threats to the genetic diversity and resilience of natural populations. Protecting the genetic diversity of populations, and the processes that sustain it, optimises their ability to adapt to changing conditions and new threats: conservation efforts with this specific goal are known as "dynamic conservation." The common juniper, Juniperus communis, is a keystone species that provides habitat and resources for many plants and animals. It is a highly polymorphic species, and across its natural range it grows in a variety of habitats and growth forms. Juniper populations have been shrinking and becoming increasingly fragmented for over a century in the UK and elsewhere in Europe, raising concerns about the genetic diversity present in juniper populations and their ability to adapt to changing conditions, or their adaptive potential. This paper presents an analysis of the partitioning of phenotypic diversity among regions, populations and families from 16 UK populations assessed in a common garden trial. Our findings suggest high phenotypic variation among populations compared to the variation among families within populations, indicating barriers to gene flow between juniper populations, relatively homogenous populations and, consequently, potentially reduced adaptive potential. This information is a useful baseline for conservation managers and can also help to infer the genetic diversity and adaptive potential of populations.

genetics↗