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Mixed heavy metal stress on photosynthesis, transpiration rate, and chlorophyll content in poplar hybridsopen access

Authors
Chandra, R.Kang, H.
Issue Date
2-Apr-2016
Publisher
Taylor and Francis Ltd.
Keywords
mixed heavy metals; photosynthetic pigments; photosynthetic rate; poplar hybrids; transpiration rate
Citation
Forest Science and Technology, v.12, no.2, pp 55 - 61
Pages
7
Indexed
SCOPUS
KCI
Journal Title
Forest Science and Technology
Volume
12
Number
2
Start Page
55
End Page
61
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/18961
DOI
10.1080/21580103.2015.1044024
ISSN
2158-0103
2158-0715
Abstract
The present work aimed to study the physiological effects of mixed heavy metals, cadmium (Cd), copper (Cu), chromium (Cr), and zinc (Zn) in four poplar hybrids. Poplar hybrids were treated once with six different concentrations (0, 5, 50, 100, 200, and 500 ppm) of mixed heavy metals for a period of 3 months. The photosynthetic and transpiration rates were measured before and during treatment using an LCi–SD portable photosynthesis system whereas the photosynthetic pigments were analytically determined. According to the results obtained, poplar hybrids exhibited a decrease in chlorophyll content and carotenoids except for hybrid 1 (Eco 28) which showed an increase at 200 and 500 ppm heavy metal concentrations. The photosynthetic rate decreased with increasing heavy metal concentrations; however, an increase was observed at the highest concentration of 500 ppm at 14.54 µmol m−2 s−1. Transpiration rates were significantly affected by increased heavy metals. Hybrid 1 (Eco 28) was deduced as the hybrid that has the ability to tolerate high levels of mixed heavy metals. Among the four poplar hybrids tested, hybrid 1 (Eco 28) was the best candidate for phytoremediative experiments under greenhouse conditions. These results are valuable in understanding how various tree hybrids respond to mixed heavy metal stress, especially when using them as bio indicators for phytoremediation experiments. © 2015 Korean Forest Society.
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