ALLEVIATION OF SOIL SALINITY ON PHYSIOLOGICAL AND AGRONOMIC TRAITS OF RICE CULTIVARS USING Arbuscular mycorrhizal fungi AND Pseudomonas STRAINS UNDER FIELD CONDITIONS

Rice cultivation in Iran has a special place and its cultivation area is about 640,000 ha. Soil salinization is one of the most factor in reducing of grain yields and cultivation of paddy rice. Currently, half of Iran's cultivated lands (9.5 million ha) are affected by salinity, which has a maj...

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Main Authors: Firouz Norouzinia, Mohammad Hossein Ansari, Hashem Aminpanah, Saeed Firozi
Format: Article
Language:English
Published: Universidade Estadual de Mato Grosso do Sul 2020-04-01
Series:Revista de Agricultura Neotropical
Online Access:https://periodicosonline.uems.br/index.php/agrineo/article/view/4042
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spelling doaj-ce4c557f9339404da4e80028c687f67d2020-11-25T02:52:18ZengUniversidade Estadual de Mato Grosso do SulRevista de Agricultura Neotropical2358-63032020-04-0171254210.32404/rean.v7i1.40422881ALLEVIATION OF SOIL SALINITY ON PHYSIOLOGICAL AND AGRONOMIC TRAITS OF RICE CULTIVARS USING Arbuscular mycorrhizal fungi AND Pseudomonas STRAINS UNDER FIELD CONDITIONSFirouz Norouzinia0Mohammad Hossein Ansari1Hashem Aminpanah2Saeed Firozi3Ph.D. student of Agronomy, Department of Agronomy, Rasht Branch, Islamic Azad University, Rasht, Iran.Department of Agronomy, Rasht Branch, Islamic Azad University, Rasht, Iran.Department of Agronomy, Rasht Branch, Islamic Azad University, Rasht, Iran.Department of Agronomy, Rasht Branch, Islamic Azad University, Rasht, Iran.Rice cultivation in Iran has a special place and its cultivation area is about 640,000 ha. Soil salinization is one of the most factor in reducing of grain yields and cultivation of paddy rice. Currently, half of Iran's cultivated lands (9.5 million ha) are affected by salinity, which has a major impact on crop yields. For this purpose, an field experiment conducted with the use of microorganisms (Pseudomonas putida strain S34, Pseudomonas fluorescens strain R167, Arbuscular mycorrhizal fungi (AMF) (Rhizophagus irregularis), co-inoculation of P.putida + P.fluorescens + AMF, and a non-inoculated treatment as control) on two rice cultivars (Hashemi and Gilane) in saline and normal soil in north of Iran during the 2018 and 2019. The results showed interactions of microorganisms and soil condition could alleviate the adverse effects of salinity by decreasing H2O2 (14-71% in normal soil and 44-281% in saline soil) and increasing catalase (CAT) activity (39.5-65% in Gilane and 45-61% in Hashemi), proline (17-46% in Gilane and 13.5-52% in Hashemi) and nitrogen (N) concentrations (12-27% in normal soil and 7-23% in saline soil) of leaves. Also microorganisms significantly increased tiller, panicle and grain number plant-1, and biological and grain yield (23-44.5% and 32.5-56% in normal and saline soil, respectively). Furthermore, the greatest mitigating effects were observed in treated by P.putida + P.fluorescens + AMF plants. This study indicated that P.putida + P.fluorescens + AMF synergistically mitigate harmful impacts of soil salinity in rice cultivars.https://periodicosonline.uems.br/index.php/agrineo/article/view/4042
collection DOAJ
language English
format Article
sources DOAJ
author Firouz Norouzinia
Mohammad Hossein Ansari
Hashem Aminpanah
Saeed Firozi
spellingShingle Firouz Norouzinia
Mohammad Hossein Ansari
Hashem Aminpanah
Saeed Firozi
ALLEVIATION OF SOIL SALINITY ON PHYSIOLOGICAL AND AGRONOMIC TRAITS OF RICE CULTIVARS USING Arbuscular mycorrhizal fungi AND Pseudomonas STRAINS UNDER FIELD CONDITIONS
Revista de Agricultura Neotropical
author_facet Firouz Norouzinia
Mohammad Hossein Ansari
Hashem Aminpanah
Saeed Firozi
author_sort Firouz Norouzinia
title ALLEVIATION OF SOIL SALINITY ON PHYSIOLOGICAL AND AGRONOMIC TRAITS OF RICE CULTIVARS USING Arbuscular mycorrhizal fungi AND Pseudomonas STRAINS UNDER FIELD CONDITIONS
title_short ALLEVIATION OF SOIL SALINITY ON PHYSIOLOGICAL AND AGRONOMIC TRAITS OF RICE CULTIVARS USING Arbuscular mycorrhizal fungi AND Pseudomonas STRAINS UNDER FIELD CONDITIONS
title_full ALLEVIATION OF SOIL SALINITY ON PHYSIOLOGICAL AND AGRONOMIC TRAITS OF RICE CULTIVARS USING Arbuscular mycorrhizal fungi AND Pseudomonas STRAINS UNDER FIELD CONDITIONS
title_fullStr ALLEVIATION OF SOIL SALINITY ON PHYSIOLOGICAL AND AGRONOMIC TRAITS OF RICE CULTIVARS USING Arbuscular mycorrhizal fungi AND Pseudomonas STRAINS UNDER FIELD CONDITIONS
title_full_unstemmed ALLEVIATION OF SOIL SALINITY ON PHYSIOLOGICAL AND AGRONOMIC TRAITS OF RICE CULTIVARS USING Arbuscular mycorrhizal fungi AND Pseudomonas STRAINS UNDER FIELD CONDITIONS
title_sort alleviation of soil salinity on physiological and agronomic traits of rice cultivars using arbuscular mycorrhizal fungi and pseudomonas strains under field conditions
publisher Universidade Estadual de Mato Grosso do Sul
series Revista de Agricultura Neotropical
issn 2358-6303
publishDate 2020-04-01
description Rice cultivation in Iran has a special place and its cultivation area is about 640,000 ha. Soil salinization is one of the most factor in reducing of grain yields and cultivation of paddy rice. Currently, half of Iran's cultivated lands (9.5 million ha) are affected by salinity, which has a major impact on crop yields. For this purpose, an field experiment conducted with the use of microorganisms (Pseudomonas putida strain S34, Pseudomonas fluorescens strain R167, Arbuscular mycorrhizal fungi (AMF) (Rhizophagus irregularis), co-inoculation of P.putida + P.fluorescens + AMF, and a non-inoculated treatment as control) on two rice cultivars (Hashemi and Gilane) in saline and normal soil in north of Iran during the 2018 and 2019. The results showed interactions of microorganisms and soil condition could alleviate the adverse effects of salinity by decreasing H2O2 (14-71% in normal soil and 44-281% in saline soil) and increasing catalase (CAT) activity (39.5-65% in Gilane and 45-61% in Hashemi), proline (17-46% in Gilane and 13.5-52% in Hashemi) and nitrogen (N) concentrations (12-27% in normal soil and 7-23% in saline soil) of leaves. Also microorganisms significantly increased tiller, panicle and grain number plant-1, and biological and grain yield (23-44.5% and 32.5-56% in normal and saline soil, respectively). Furthermore, the greatest mitigating effects were observed in treated by P.putida + P.fluorescens + AMF plants. This study indicated that P.putida + P.fluorescens + AMF synergistically mitigate harmful impacts of soil salinity in rice cultivars.
url https://periodicosonline.uems.br/index.php/agrineo/article/view/4042
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AT hashemaminpanah alleviationofsoilsalinityonphysiologicalandagronomictraitsofricecultivarsusingarbuscularmycorrhizalfungiandpseudomonasstrainsunderfieldconditions
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