| Literature DB >> 32506430 |
Rana Roy1,2, Jinxin Wang1,3, Mohammad Golam Mostofa4, Dario Fornara5.
Abstract
Coal-mined areas are often associated with hostile environmental conditions where the scarcity of water and key nutrienpan>t resources negatively affect plant growth and developmenpan>t. In this study we specifically addressed how differenpan>t combinpan>ationpan>s of water (W), nitrogen (N) and phosphorus (P) might affect morpho-physiological and biochemical attributes of a native shrub species, Tamarix chinensis, grown on coal mine spoils. Our results show that under greenhouse conditions the application of moderate-to-high doses of W, N and P considerably improved growth-associated parameters (i.e. plant height, stem diameter, dry weight), as well as gas-exchange parameters, photosynthetic pigment contents and leaf water status of T. chinensis. Under field conditions high W and low N, P doses led to significant increases in plant growth-associated traits, gas-exchange parameters and leaf water status. Plant growth was generally higher under greenhouse conditions mainly because seedlings faced multiple stress when growing under field conditions. Low W-regime, regardless of N-P additions, improved osmotic adjustments in leaf tissues and also boosted the activity of several antioxidant enzymes to reduce the oxidative stress associated with W scarcity under greenhouse conditions. Importantly, our study shows how maximum growth performance of T. chinensis under field conditions was achieved at W, N and P doses of 150 mm year-1 , 80 kg ha-1 and 40 kg ha-1 , respectively. Our findings suggest that achieving optimal rates of W, N and P application is crucial for promoting the ecological restoration of coal-mined areas with T. chinensis under arid environmental conditions.Entities:
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Year: 2020 PMID: 32506430 DOI: 10.1111/ppl.13147
Source DB: PubMed Journal: Physiol Plant ISSN: 0031-9317 Impact factor: 4.500