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High Salinity Reduces Plant Growth and Photosynthetic Performance but Enhances Certain Nutritional Quality of C(4) Halophyte Portulaca oleracea L. Grown Hydroponically Under LED Lighting

Portulaca oleracea L. (known as purslane) is one of the most nutritious leafy vegetables owing to its high content of antioxidants. In this study, all plants were grown indoors hydroponically with different NaCl salinities. Photosynthetic photo flux density (PPFD) at 200 μmol m(−2) s(−1) (12 h) was...

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Autores principales: He, Jie, You, Xueli, Qin, Lin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8019967/
https://www.ncbi.nlm.nih.gov/pubmed/33828578
http://dx.doi.org/10.3389/fpls.2021.651341
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author He, Jie
You, Xueli
Qin, Lin
author_facet He, Jie
You, Xueli
Qin, Lin
author_sort He, Jie
collection PubMed
description Portulaca oleracea L. (known as purslane) is one of the most nutritious leafy vegetables owing to its high content of antioxidants. In this study, all plants were grown indoors hydroponically with different NaCl salinities. Photosynthetic photo flux density (PPFD) at 200 μmol m(−2) s(−1) (12 h) was provided to all plants by LED with red:blue ratio of 2.2. Thirty days after transplanting, plants grown with100 mM NaCl had the highest productivity and the fastest leaf growth followed by those with 0, 200 and 300 mM NaCl. Grown with 300 mM NaCl, purslane had the lowest specific leaf area due to its highest leaf dry matter content and its lowest water content. All plants had similar values of leaf succulence except for those with 300 mM NaCl. Total chlorophyll and carotenoids contents were significantly higher in plants grown with 0 and 100 mM NaCl than with 200, and 300 mM NaCl. All plants had F(v)/F(m) ratios close to 0.8. However, electron transport rate and ΔF/F(m)′ were significantly higher in plants grown with 0 and 100 mM NaCl than with 200 and 300 mM NaCl. CAM-induced purslane with 300 mM NaCl had higher non-photochemical quenching. Maximum net photosynthetic O(2) evolution rate and Cyt b(6)f concentration were significantly lower with 300 mM NaCl compared to all other plants while all plants had similar PS II concentration. Proline concentration increased with increasing salinities. All plants had similar levels of total soluble sugars. Plants grown with 0 and 100 mM NaCl had significantly higher concentrations of NO(3)(−), total reduced nitrogen, total leaf soluble protein, Rubisco protein, total ascorbic acid, and total phenolic compounds than with 200 and 300 mM NaCl. The highest concentrations of K, Ca, and Mg were found in purslane grown under 0 mM NaCl. Statistically, no significant differences in Fe concentrations were observed among all plants. However, salinity seems to increase Fe concentration. In conclusion, it is feasible to grow purslane under 100 mM NaCl as it is the most optimal condition to achieve higher productivity and better quality. However, the production of antioxidants may depend on not only salinity but also other growth conditions.
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spelling pubmed-80199672021-04-06 High Salinity Reduces Plant Growth and Photosynthetic Performance but Enhances Certain Nutritional Quality of C(4) Halophyte Portulaca oleracea L. Grown Hydroponically Under LED Lighting He, Jie You, Xueli Qin, Lin Front Plant Sci Plant Science Portulaca oleracea L. (known as purslane) is one of the most nutritious leafy vegetables owing to its high content of antioxidants. In this study, all plants were grown indoors hydroponically with different NaCl salinities. Photosynthetic photo flux density (PPFD) at 200 μmol m(−2) s(−1) (12 h) was provided to all plants by LED with red:blue ratio of 2.2. Thirty days after transplanting, plants grown with100 mM NaCl had the highest productivity and the fastest leaf growth followed by those with 0, 200 and 300 mM NaCl. Grown with 300 mM NaCl, purslane had the lowest specific leaf area due to its highest leaf dry matter content and its lowest water content. All plants had similar values of leaf succulence except for those with 300 mM NaCl. Total chlorophyll and carotenoids contents were significantly higher in plants grown with 0 and 100 mM NaCl than with 200, and 300 mM NaCl. All plants had F(v)/F(m) ratios close to 0.8. However, electron transport rate and ΔF/F(m)′ were significantly higher in plants grown with 0 and 100 mM NaCl than with 200 and 300 mM NaCl. CAM-induced purslane with 300 mM NaCl had higher non-photochemical quenching. Maximum net photosynthetic O(2) evolution rate and Cyt b(6)f concentration were significantly lower with 300 mM NaCl compared to all other plants while all plants had similar PS II concentration. Proline concentration increased with increasing salinities. All plants had similar levels of total soluble sugars. Plants grown with 0 and 100 mM NaCl had significantly higher concentrations of NO(3)(−), total reduced nitrogen, total leaf soluble protein, Rubisco protein, total ascorbic acid, and total phenolic compounds than with 200 and 300 mM NaCl. The highest concentrations of K, Ca, and Mg were found in purslane grown under 0 mM NaCl. Statistically, no significant differences in Fe concentrations were observed among all plants. However, salinity seems to increase Fe concentration. In conclusion, it is feasible to grow purslane under 100 mM NaCl as it is the most optimal condition to achieve higher productivity and better quality. However, the production of antioxidants may depend on not only salinity but also other growth conditions. Frontiers Media S.A. 2021-03-22 /pmc/articles/PMC8019967/ /pubmed/33828578 http://dx.doi.org/10.3389/fpls.2021.651341 Text en Copyright © 2021 He, You and Qin. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
He, Jie
You, Xueli
Qin, Lin
High Salinity Reduces Plant Growth and Photosynthetic Performance but Enhances Certain Nutritional Quality of C(4) Halophyte Portulaca oleracea L. Grown Hydroponically Under LED Lighting
title High Salinity Reduces Plant Growth and Photosynthetic Performance but Enhances Certain Nutritional Quality of C(4) Halophyte Portulaca oleracea L. Grown Hydroponically Under LED Lighting
title_full High Salinity Reduces Plant Growth and Photosynthetic Performance but Enhances Certain Nutritional Quality of C(4) Halophyte Portulaca oleracea L. Grown Hydroponically Under LED Lighting
title_fullStr High Salinity Reduces Plant Growth and Photosynthetic Performance but Enhances Certain Nutritional Quality of C(4) Halophyte Portulaca oleracea L. Grown Hydroponically Under LED Lighting
title_full_unstemmed High Salinity Reduces Plant Growth and Photosynthetic Performance but Enhances Certain Nutritional Quality of C(4) Halophyte Portulaca oleracea L. Grown Hydroponically Under LED Lighting
title_short High Salinity Reduces Plant Growth and Photosynthetic Performance but Enhances Certain Nutritional Quality of C(4) Halophyte Portulaca oleracea L. Grown Hydroponically Under LED Lighting
title_sort high salinity reduces plant growth and photosynthetic performance but enhances certain nutritional quality of c(4) halophyte portulaca oleracea l. grown hydroponically under led lighting
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8019967/
https://www.ncbi.nlm.nih.gov/pubmed/33828578
http://dx.doi.org/10.3389/fpls.2021.651341
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