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The non-native plant Rosa multiflora expresses shade avoidance traits under low light availability.

Authors :
Dlugos DM
Collins H
Bartelme EM
Drenovsky RE
Source :
American journal of botany [Am J Bot] 2015 Aug; Vol. 102 (8), pp. 1323-31. Date of Electronic Publication: 2015 Aug 12.
Publication Year :
2015

Abstract

Unlabelled: •<br />Premise of the Study: Shade tolerance is a key trait promoting invasive plant performance in forest interiors. Rosa multiflora is a problematic invasive shrub in the northeastern United States, occurring in edge habitats and encroaching into forests. Our objective was to evaluate the shade tolerance of R. multiflora to assess how ecophysiological traits may facilitate its spread into forest interiors.•<br />Methods: In the field, we documented shrub and seed bank density, fecundity, phenology, and seasonal photosynthetic rates of R. multiflora in contrasting light environments. In the greenhouse, we exposed seedlings to simulated canopy treatments by altering spectral quantity and quality, mimicking habitats ranging from open fields to forest interiors.•<br />Key Results: In the field, shrub density and fecundity of R. multiflora sharply increased with light availability. However, no differences were observed between forest edge and interior seed banks. Rosa multiflora initiated leaf growth earlier and retained leaves longer than canopy vegetation and tended to have higher photosynthetic rates in spring and fall. In the greenhouse, plants displayed shade-avoidance traits, decreasing relative growth rate and reducing branching, while increasing elongation and showing no change in light response curve parameters.•<br />Conclusions: In deciduous forest understories, R. multiflora appears to make use of a lengthened growing season in spring and fall, and therefore, substantial growth and spread through intact forests appears dependent on canopy gaps. Management should focus on reducing edge populations to reduce spread into the interior and on monitoring newly created canopy gaps.<br /> (© 2015 Botanical Society of America, Inc.)

Details

Language :
English
ISSN :
1537-2197
Volume :
102
Issue :
8
Database :
MEDLINE
Journal :
American journal of botany
Publication Type :
Academic Journal
Accession number :
26290555
Full Text :
https://doi.org/10.3732/ajb.1500115