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Calcium-Enriched Animal Manure Alleviates the Adverse Effects of Salt Stress on Growth, Physiology and Nutrients Homeostasis of Zea mays L.
Soil salinity and sodicity are among the main problems for optimum crop production in areas where rainfall is not enough for leaching of salts out of the rooting zone. Application of organic and Ca-based amendments have the potential to increase crop yield and productivity under saline–alkaline soil...
Autores principales: | , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6918338/ https://www.ncbi.nlm.nih.gov/pubmed/31703326 http://dx.doi.org/10.3390/plants8110480 |
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author | Niamat, Bushra Naveed, Muhammad Ahmad, Zulfiqar Yaseen, Muhammad Ditta, Allah Mustafa, Adnan Rafique, Munazza Bibi, Riffat Sun, Nan Xu, Minggang |
author_facet | Niamat, Bushra Naveed, Muhammad Ahmad, Zulfiqar Yaseen, Muhammad Ditta, Allah Mustafa, Adnan Rafique, Munazza Bibi, Riffat Sun, Nan Xu, Minggang |
author_sort | Niamat, Bushra |
collection | PubMed |
description | Soil salinity and sodicity are among the main problems for optimum crop production in areas where rainfall is not enough for leaching of salts out of the rooting zone. Application of organic and Ca-based amendments have the potential to increase crop yield and productivity under saline–alkaline soil environments. Based on this hypothesis, the present study was conducted to evaluate the potential of compost, Ca-based fertilizer industry waste (Ca-FW), and Ca-fortified compost (Ca-FC) to increase growth and yield of maize under saline–sodic soil conditions. Saline–sodic soil conditions with electrical conductivity (EC) levels (1.6, 5, and 10 dS m(−1)) and sodium adsorption ratio (SAR) = 15, were developed by spiking soil with a solution containing NaCl, Na(2)SO(4), MgSO(4), and CaCl(2). Results showed that soil salinity and sodicity significantly reduced plant growth, yield, physiological, and nutrient uptake parameters. However, the application of Ca-FC caused a remarkable increase in the studied parameters of maize at EC levels of 1.6, 5, and 10 dS m(−1) as compared to the control. In addition, Ca-FC caused the maximum decrease in Na(+)/K(+) ratio in shoot up to 85.1%, 71.79%, and 70.37% at EC levels of 1.6, 5, and 10 dS m(−1), respectively as compared to the control treatment. Moreover, nutrient uptake (NPK) was also significantly increased with the application of Ca-FC under normal as well as saline–sodic soil conditions. It is thus inferred that the application of Ca-FC could be an effective amendment to enhance growth, yield, physiology, and nutrient uptake in maize under saline–sodic soil conditions constituting the novelty of this work. |
format | Online Article Text |
id | pubmed-6918338 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-69183382019-12-24 Calcium-Enriched Animal Manure Alleviates the Adverse Effects of Salt Stress on Growth, Physiology and Nutrients Homeostasis of Zea mays L. Niamat, Bushra Naveed, Muhammad Ahmad, Zulfiqar Yaseen, Muhammad Ditta, Allah Mustafa, Adnan Rafique, Munazza Bibi, Riffat Sun, Nan Xu, Minggang Plants (Basel) Article Soil salinity and sodicity are among the main problems for optimum crop production in areas where rainfall is not enough for leaching of salts out of the rooting zone. Application of organic and Ca-based amendments have the potential to increase crop yield and productivity under saline–alkaline soil environments. Based on this hypothesis, the present study was conducted to evaluate the potential of compost, Ca-based fertilizer industry waste (Ca-FW), and Ca-fortified compost (Ca-FC) to increase growth and yield of maize under saline–sodic soil conditions. Saline–sodic soil conditions with electrical conductivity (EC) levels (1.6, 5, and 10 dS m(−1)) and sodium adsorption ratio (SAR) = 15, were developed by spiking soil with a solution containing NaCl, Na(2)SO(4), MgSO(4), and CaCl(2). Results showed that soil salinity and sodicity significantly reduced plant growth, yield, physiological, and nutrient uptake parameters. However, the application of Ca-FC caused a remarkable increase in the studied parameters of maize at EC levels of 1.6, 5, and 10 dS m(−1) as compared to the control. In addition, Ca-FC caused the maximum decrease in Na(+)/K(+) ratio in shoot up to 85.1%, 71.79%, and 70.37% at EC levels of 1.6, 5, and 10 dS m(−1), respectively as compared to the control treatment. Moreover, nutrient uptake (NPK) was also significantly increased with the application of Ca-FC under normal as well as saline–sodic soil conditions. It is thus inferred that the application of Ca-FC could be an effective amendment to enhance growth, yield, physiology, and nutrient uptake in maize under saline–sodic soil conditions constituting the novelty of this work. MDPI 2019-11-07 /pmc/articles/PMC6918338/ /pubmed/31703326 http://dx.doi.org/10.3390/plants8110480 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Niamat, Bushra Naveed, Muhammad Ahmad, Zulfiqar Yaseen, Muhammad Ditta, Allah Mustafa, Adnan Rafique, Munazza Bibi, Riffat Sun, Nan Xu, Minggang Calcium-Enriched Animal Manure Alleviates the Adverse Effects of Salt Stress on Growth, Physiology and Nutrients Homeostasis of Zea mays L. |
title | Calcium-Enriched Animal Manure Alleviates the Adverse Effects of Salt Stress on Growth, Physiology and Nutrients Homeostasis of Zea mays L. |
title_full | Calcium-Enriched Animal Manure Alleviates the Adverse Effects of Salt Stress on Growth, Physiology and Nutrients Homeostasis of Zea mays L. |
title_fullStr | Calcium-Enriched Animal Manure Alleviates the Adverse Effects of Salt Stress on Growth, Physiology and Nutrients Homeostasis of Zea mays L. |
title_full_unstemmed | Calcium-Enriched Animal Manure Alleviates the Adverse Effects of Salt Stress on Growth, Physiology and Nutrients Homeostasis of Zea mays L. |
title_short | Calcium-Enriched Animal Manure Alleviates the Adverse Effects of Salt Stress on Growth, Physiology and Nutrients Homeostasis of Zea mays L. |
title_sort | calcium-enriched animal manure alleviates the adverse effects of salt stress on growth, physiology and nutrients homeostasis of zea mays l. |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6918338/ https://www.ncbi.nlm.nih.gov/pubmed/31703326 http://dx.doi.org/10.3390/plants8110480 |
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