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Journal Article

Remote sensing of cytotype and its consequences for canopy damage in quaking aspen

Benjamin Blonder; Philip G. Brodrick; James A. Walton; Katherine Dana Chadwick; Ian K. Breckheimer; Suzanne Marchetti; Courtenay A. Ray; Karen E. Mock
Global Change Biology · Vol. 28, Issue 7 · pp. 2491-2504 · 2022

Abstract

Mapping geographic mosaics of genetic variation and their consequences via genotype x environment interactions at large extents and high resolution has been limited by the scalability of DNA sequencing. Here, we address this challenge for cytotype (chromosome copy number) variation in quaking aspen, a drought‐impacted foundation tree species. We integrate airborne imaging spectroscopy data with ground‐based DNA sequencing data and canopy damage data in 391 km 2 of southwestern Colorado. We show that (1) aspen cover and cytotype can be remotely sensed at 1 m spatial resolution, (2) the geographic mosaic of cytotypes is heterogeneous and interdigitated, (3) triploids have higher leaf nitrogen, canopy water content, and carbon isotope shifts (δ 13 C) than diploids, and (4) canopy damage varies among cytotypes and depends on interactions with topography, canopy height, and trait variables. Triploids are at higher risk in hotter and drier conditions.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2022-04-01
Publication Year2022
Volume28
Issue7
Pages2491-2504
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/gcb.16064
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
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