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Fluctuated water depth with high nutrient concentrations promote the invasiveness of Wedelia trilobata in Wetland

The distribution of invasive and native species in wetlands is determined by hydrological conditions; whereas conditions such as water depth fluctuations, variations in the nutrient concentrations are expected to affect the growth and physiological traits of plants. For the assessment of such effect...

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Autores principales: Sun, Jianfan, Javed, Qaiser, Azeem, Ahmad, Ullah, Ikram, Saifullah, Muhammad, Kama, Rakhwe, Du, Daolin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6988542/
https://www.ncbi.nlm.nih.gov/pubmed/32015847
http://dx.doi.org/10.1002/ece3.5941
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author Sun, Jianfan
Javed, Qaiser
Azeem, Ahmad
Ullah, Ikram
Saifullah, Muhammad
Kama, Rakhwe
Du, Daolin
author_facet Sun, Jianfan
Javed, Qaiser
Azeem, Ahmad
Ullah, Ikram
Saifullah, Muhammad
Kama, Rakhwe
Du, Daolin
author_sort Sun, Jianfan
collection PubMed
description The distribution of invasive and native species in wetlands is determined by hydrological conditions; whereas conditions such as water depth fluctuations, variations in the nutrient concentrations are expected to affect the growth and physiological traits of plants. For the assessment of such effects, we conduct greenhouse experiment with three factors; 1) water depth of 5 cm and 15 cm (static and fluctuated); 2) three levels of nutrient concentrations (i) full‐strength Hoagland solution (N1), (ii) ¼‐strength Hoagland solution (N2), and (iii) (1)/(8)‐strength Hoagland solution (N3); and 3) species, invasive Wedelia trilobata (L.) and its congener, native Wedelia chinensis (Osbeck.) under mono and mixed culture. Water depth of 5 cm combined with any of the nutrient treatments significantly restrained the photosynthesis, intracellular CO(2) concentration and leaf chlorophyll of both W. trilobata and W. chinensis. Increase in the water depth to 15 cm with low‐nutrient treatment N3 did not sustain the physiological traits of W. chinensis under mono and mixed planting. A great loss was noted in the growth of W. chinensis at 15 cm static and fluctuated water depth with low‐nutrient treatment (N3) and under mixed culture. In addition, water depth fluctuations with both low‐ and high‐nutrient treatments significantly affected the root‐shoot ratio, relative growth rate, and interspecific interaction among these two species. W. trilobata benefited more from competitive interaction index (CII) under fluctuated water depth at 15 cm with high nutrients, and the value of CII was clearly positive. Therefore, higher competitive ability may contribute to the invasiveness of W. trilobata in wetlands.
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spelling pubmed-69885422020-02-03 Fluctuated water depth with high nutrient concentrations promote the invasiveness of Wedelia trilobata in Wetland Sun, Jianfan Javed, Qaiser Azeem, Ahmad Ullah, Ikram Saifullah, Muhammad Kama, Rakhwe Du, Daolin Ecol Evol Original Research The distribution of invasive and native species in wetlands is determined by hydrological conditions; whereas conditions such as water depth fluctuations, variations in the nutrient concentrations are expected to affect the growth and physiological traits of plants. For the assessment of such effects, we conduct greenhouse experiment with three factors; 1) water depth of 5 cm and 15 cm (static and fluctuated); 2) three levels of nutrient concentrations (i) full‐strength Hoagland solution (N1), (ii) ¼‐strength Hoagland solution (N2), and (iii) (1)/(8)‐strength Hoagland solution (N3); and 3) species, invasive Wedelia trilobata (L.) and its congener, native Wedelia chinensis (Osbeck.) under mono and mixed culture. Water depth of 5 cm combined with any of the nutrient treatments significantly restrained the photosynthesis, intracellular CO(2) concentration and leaf chlorophyll of both W. trilobata and W. chinensis. Increase in the water depth to 15 cm with low‐nutrient treatment N3 did not sustain the physiological traits of W. chinensis under mono and mixed planting. A great loss was noted in the growth of W. chinensis at 15 cm static and fluctuated water depth with low‐nutrient treatment (N3) and under mixed culture. In addition, water depth fluctuations with both low‐ and high‐nutrient treatments significantly affected the root‐shoot ratio, relative growth rate, and interspecific interaction among these two species. W. trilobata benefited more from competitive interaction index (CII) under fluctuated water depth at 15 cm with high nutrients, and the value of CII was clearly positive. Therefore, higher competitive ability may contribute to the invasiveness of W. trilobata in wetlands. John Wiley and Sons Inc. 2019-12-20 /pmc/articles/PMC6988542/ /pubmed/32015847 http://dx.doi.org/10.1002/ece3.5941 Text en © 2019 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Sun, Jianfan
Javed, Qaiser
Azeem, Ahmad
Ullah, Ikram
Saifullah, Muhammad
Kama, Rakhwe
Du, Daolin
Fluctuated water depth with high nutrient concentrations promote the invasiveness of Wedelia trilobata in Wetland
title Fluctuated water depth with high nutrient concentrations promote the invasiveness of Wedelia trilobata in Wetland
title_full Fluctuated water depth with high nutrient concentrations promote the invasiveness of Wedelia trilobata in Wetland
title_fullStr Fluctuated water depth with high nutrient concentrations promote the invasiveness of Wedelia trilobata in Wetland
title_full_unstemmed Fluctuated water depth with high nutrient concentrations promote the invasiveness of Wedelia trilobata in Wetland
title_short Fluctuated water depth with high nutrient concentrations promote the invasiveness of Wedelia trilobata in Wetland
title_sort fluctuated water depth with high nutrient concentrations promote the invasiveness of wedelia trilobata in wetland
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6988542/
https://www.ncbi.nlm.nih.gov/pubmed/32015847
http://dx.doi.org/10.1002/ece3.5941
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