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Maintenance of photosynthesis by Betula populifolia in metal contaminated soils
- Source :
- The Science of the total environment. 625
- Publication Year :
- 2017
-
Abstract
- Improving our understanding of plant responses to elevated trace metal concentrations under field conditions will enhance restoration and urban greening practices in settings with contaminated soils. This study examined the effects of trace metal pollution on the leaf gas exchange rates of mature, field-grown Betula populifolia Marsh. (gray birch) trees, additionally assessing whether elevated temperature and drought compounded the effects of trace metal contamination. The study compared B. populifolia growing in areas of comparatively high and low trace metal loads (HML and LML, respectively) within a former rail yard at Liberty State Park in Jersey City, New Jersey, USA. Gas exchange parameters were determined monthly from May through September in 2014 and 2015 using a portable photosynthesis system. The effects of drought and high temperature were assessed during a short heat wave in July 2015 and via a manipulative experiment, respectively. During a few of the measurement months, some parameters differed significantly between the LML and HML groups. However, when considered over the entire study period, no significant differences in biophysical parameters were observed between groups. The photosynthetic capacity of B. populifolia thus appears to be fairly robust across this site's steep gradient of trace metal contamination. Nonetheless, leaf mass per unit area was significantly lower in the HML group, indicating that metal loads affected resource allocation within trees. Also, immediately following the heat wave in 2015, intrinsic water use efficiency declined significantly in the HML group, suggesting that extreme climatic conditions can have a disproportionate effect on the physiological performance of plants growing in metal contaminated soils.
- Subjects :
- 0106 biological sciences
Betula populifolia
Pollution
Stomatal conductance
Environmental Engineering
media_common.quotation_subject
010501 environmental sciences
01 natural sciences
Environmental Chemistry
Soil Pollutants
Trace metal
Water-use efficiency
Photosynthesis
Waste Management and Disposal
Betula
0105 earth and related environmental sciences
media_common
biology
biology.organism_classification
Photosynthetic capacity
Soil contamination
Agronomy
Metals
Environmental science
Water use
010606 plant biology & botany
Subjects
Details
- ISSN :
- 18791026
- Volume :
- 625
- Database :
- OpenAIRE
- Journal :
- The Science of the total environment
- Accession number :
- edsair.doi.dedup.....413c9b7b73b9595eca4c2a8967f71fb4