Plant Physiology and Biochemistry2022,Vol.1718.DOI:10.1016/j.plaphy.2021.12.001

Differential efficacy of water lily cultivars in phytoremediation of eutrophic water contaminated with phosphorus and nitrogen

Wang, Xiaowen Jain, Ajay Chen, Bingqiong Wang, Yanjie Jin, Qijiang Yugandhar, Poli Xu, Yingchun Sun, Shubin Hu, Feng
Plant Physiology and Biochemistry2022,Vol.1718.DOI:10.1016/j.plaphy.2021.12.001

Differential efficacy of water lily cultivars in phytoremediation of eutrophic water contaminated with phosphorus and nitrogen

Wang, Xiaowen 1Jain, Ajay 2Chen, Bingqiong 1Wang, Yanjie 1Jin, Qijiang 1Yugandhar, Poli 3Xu, Yingchun 1Sun, Shubin 1Hu, Feng1
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作者信息

  • 1. Nanjing Agr Univ
  • 2. Amity Univ Rajasthan
  • 3. ICAR Indian Inst Rice Res
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Abstract

Excessive inputs of phosphorus (P) and nitrogen (N) trigger eutrophication of the water bodies, which promotes the undesirable growth of algal bloom and deterioration of the water quality, and aquatic biodiversity. Macrophytes provide an environmentally benign and economically viable paradigm for the ecological restoration of eutrophic aquatic ecosystems. Water lily (Nymphaea) is largely used as ornamental plant for landscaping, and it has been documented that water lily possesses the potentiality in mitigating polluted aquatic environments. In the present study, water lily cultivars Nymphaea Texas Dawn (NTD), Nymphaea Colorado (NC), Nymphaea Madame Wilfron Gonne`re (NMWG), and Nymphaea Sunshine Princess (NSP) were investigated for their potency in alleviating the eutrophication. The concentrations of total P and total N were significantly higher in the leaves of NC and NSP compared with NTD and NMWG. Therefore, NC and NSP were selected for subsequent studies to decipher their recuperation efficacy on eutrophic waters at different growth stages. NC and NSP significantly reduced the concentrations of eutrophication indicators i.e., total P, NH4+-N, and chemical oxygen demand in different gradients of the simulated eutrophic water in a growth-dependent manner. On the contrary, NC and NSP triggered a significant increase in the concentration of dissolved oxygen particularly at the seedling stage. Notably, the concentrations of total P (shoot and root) and total N (root) were relatively higher in NSP than NC. The study thus revealed a growth-dependent differential efficacy of NSP and NC in mitigating the different eutrophic waters.

Key words

Water lily (Nymphaea)/Eutrophication/Phosphorus/Nitrogen/Phytoremediation/CHEMICAL OXYGEN-DEMAND/SUBMERGED MACROPHYTES/PHOSPHATE TRANSPORTER/CONSTRUCTED WETLANDS/NITRATE TRANSPORTER/EPIDERMAL GLANDS/USE EFFICIENCY/REMOVAL/RICE/NITRIFICATION

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出版年

2022
Plant Physiology and Biochemistry

Plant Physiology and Biochemistry

SCI
ISSN:0981-9428
被引量3
参考文献量59
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