RECORD

Vascular Development in Very Young Conifer Seedlings: Theoretical Hydraulic Capacities and Potential Resistance to Embolism

Title:
Vascular Development in Very Young Conifer Seedlings: Theoretical Hydraulic Capacities and Potential Resistance to Embolism
Creator:
Miller, Megan L.; Johnson, Daniel M.
Date Created:
2017-07-19
Description:
Conifers have the highest rates of mortality during their first year, often attributed to water stress; yet, this tree life stage is the least studied in terms of hydraulic properties. Previous work has revealed correlations between xylem anatomy to both hydraulic transport capacity and resistance to hydraulic dysfunction. In this study, we compared xylem anatomical and plant functional traits of Pseudotsuga menziesii, Larix occidentalis, and Pinus ponderosa seedlings over the first 10 wk of growth to evaluate potential maximum hydraulic capabilities and resistance to drought‐induced embolism. We hypothesized that, based on key functional traits of the xylem, predicted xylem embolism resistance of the species will reflect their previously determined drought tolerances with L. occidentalis, P. menziesii, and P. ponderosa in order of least to most embolism‐resistant xylem. METHODS: Xylem and pit anatomical characteristics and additional hydraulic‐related functional traits were compared at five times during the first 10 wk of growth using confocal laser scanning microscopy (CLSM). KEY RESULTS: Based on thickness to span ratio, torus to pit aperture overlap, and torus thickness, primary xylem appeared to be not only more hydraulically conductive but also less embolism‐resistant than secondary xylem. By week 10, P. menziesii was predicted to have the most embolism‐resistant xylem followed by P. ponderosa and L. occidentalis. CONCLUSIONS: Theoretical measurements suggest that hydraulic transport capacities and vulnerability to embolism varied for each species over the first 10 wk of growth; thus, the timing of germination and onset of limited soil moisture is critical for growth and survival of seedlings.
Document Type:
Research Article
Subjects:
UIEF conifer seedlings embolism vascular development hydraulic capacity drought-induced embolism xylem anatomy silviculture
Location:
UIEF
Latitude:
46.869607
Longitude:
-116.733856
Publisher:
John Wiley and Sons, Inc.
Department:
Forest, Rangeland, and Fire Sciences
Source:
American Journal of Botany, 104: 979-992.
Source Identifier:
doi:10.3732/ajb.1700161
Type:
Text

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Preferred Citation:
"Vascular Development in Very Young Conifer Seedlings: Theoretical Hydraulic Capacities and Potential Resistance to Embolism", UIEF Research Exchange, University of Idaho Library Digital Collections, https://www.lib.uidaho.edu/digital/uief/items/uief_0165.html
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