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Drought-Induced miRNA Expression Correlated with Heavy Metal, Phenolic Acid, and Protein and Nitrogen Levels in Five Chickpea Genotypes

[Image: see text] Drought is a prime stress, drastically affecting plant growth, development, and yield. Plants have evolved various physiological, molecular, and biochemical mechanisms to cope with drought. Investigating specific biochemical pathways related to drought tolerance mechanisms of plant...

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Autores principales: Inal, Behcet, Mirzapour, Mohsen, Tufekci, Ebru Derelli, Rustemoglu, Mustafa, Kaba, Adem, Albalawi, Marzough Aziz, Alalawy, Adel I., Sakran, Mohamed, Alqurashi, Mohammed, Ditta, Allah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10552140/
https://www.ncbi.nlm.nih.gov/pubmed/37810661
http://dx.doi.org/10.1021/acsomega.3c03003
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author Inal, Behcet
Mirzapour, Mohsen
Tufekci, Ebru Derelli
Rustemoglu, Mustafa
Kaba, Adem
Albalawi, Marzough Aziz
Alalawy, Adel I.
Sakran, Mohamed
Alqurashi, Mohammed
Ditta, Allah
author_facet Inal, Behcet
Mirzapour, Mohsen
Tufekci, Ebru Derelli
Rustemoglu, Mustafa
Kaba, Adem
Albalawi, Marzough Aziz
Alalawy, Adel I.
Sakran, Mohamed
Alqurashi, Mohammed
Ditta, Allah
author_sort Inal, Behcet
collection PubMed
description [Image: see text] Drought is a prime stress, drastically affecting plant growth, development, and yield. Plants have evolved various physiological, molecular, and biochemical mechanisms to cope with drought. Investigating specific biochemical pathways related to drought tolerance mechanisms of plants through biotechnology approaches is one of the quickest and most effective strategies for enhancing crop production. Among them, microRNAs (miRNAs) are the principal post-transcriptional regulators of gene expression in plants during plant growth under biotic and abiotic stresses. In this study, five different chickpea genotypes (İnci, Hasan bey, Arda, Seçkin, and Diyar 95) were grown under normal and drought stress. We recorded the expression levels of microRNAs in these genotypes and found differential expression (miRNA396, miR408, miRNA414, miRNA528, and miRNA1533) under contrasting conditions. Results revealed that miRNA414 and miRNA528 considerably increased in all genotypes under drought stress, and expression levels of miRNA418, miRNA1533, and miRNA396 (except for the Seçkin genotype) were found to be higher under the watered conditions. These genotypes were also investigated for heavy metal, phenolic acid, protein, and nitrogen concentrations under normal and drought stress conditions. The Arda genotype showed a significant increase in nitrogen (5.46%) and protein contents (28.3%), while protein contents were decreased in the Hasan bey and Seçkin genotypes subjected to drought stress. In the case of metals, iron was the most abundant element in all genotypes (İnci = 15.4 ppm, Hasan bey = 29.6 ppm, Seçkin = 37.8 ppm, Arda = 26.3 ppm, and Diyar 95 = 40.8 ppm) under normal conditions. Interestingly, these results were related to miRNA expression in the chickpea genotypes and hint at the regulation of multiple pathways under drought conditions. Overall, the present study will help us to understand the miRNA-mediated regulation of various pathways in chickpea genotypes.
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spelling pubmed-105521402023-10-06 Drought-Induced miRNA Expression Correlated with Heavy Metal, Phenolic Acid, and Protein and Nitrogen Levels in Five Chickpea Genotypes Inal, Behcet Mirzapour, Mohsen Tufekci, Ebru Derelli Rustemoglu, Mustafa Kaba, Adem Albalawi, Marzough Aziz Alalawy, Adel I. Sakran, Mohamed Alqurashi, Mohammed Ditta, Allah ACS Omega [Image: see text] Drought is a prime stress, drastically affecting plant growth, development, and yield. Plants have evolved various physiological, molecular, and biochemical mechanisms to cope with drought. Investigating specific biochemical pathways related to drought tolerance mechanisms of plants through biotechnology approaches is one of the quickest and most effective strategies for enhancing crop production. Among them, microRNAs (miRNAs) are the principal post-transcriptional regulators of gene expression in plants during plant growth under biotic and abiotic stresses. In this study, five different chickpea genotypes (İnci, Hasan bey, Arda, Seçkin, and Diyar 95) were grown under normal and drought stress. We recorded the expression levels of microRNAs in these genotypes and found differential expression (miRNA396, miR408, miRNA414, miRNA528, and miRNA1533) under contrasting conditions. Results revealed that miRNA414 and miRNA528 considerably increased in all genotypes under drought stress, and expression levels of miRNA418, miRNA1533, and miRNA396 (except for the Seçkin genotype) were found to be higher under the watered conditions. These genotypes were also investigated for heavy metal, phenolic acid, protein, and nitrogen concentrations under normal and drought stress conditions. The Arda genotype showed a significant increase in nitrogen (5.46%) and protein contents (28.3%), while protein contents were decreased in the Hasan bey and Seçkin genotypes subjected to drought stress. In the case of metals, iron was the most abundant element in all genotypes (İnci = 15.4 ppm, Hasan bey = 29.6 ppm, Seçkin = 37.8 ppm, Arda = 26.3 ppm, and Diyar 95 = 40.8 ppm) under normal conditions. Interestingly, these results were related to miRNA expression in the chickpea genotypes and hint at the regulation of multiple pathways under drought conditions. Overall, the present study will help us to understand the miRNA-mediated regulation of various pathways in chickpea genotypes. American Chemical Society 2023-09-18 /pmc/articles/PMC10552140/ /pubmed/37810661 http://dx.doi.org/10.1021/acsomega.3c03003 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Inal, Behcet
Mirzapour, Mohsen
Tufekci, Ebru Derelli
Rustemoglu, Mustafa
Kaba, Adem
Albalawi, Marzough Aziz
Alalawy, Adel I.
Sakran, Mohamed
Alqurashi, Mohammed
Ditta, Allah
Drought-Induced miRNA Expression Correlated with Heavy Metal, Phenolic Acid, and Protein and Nitrogen Levels in Five Chickpea Genotypes
title Drought-Induced miRNA Expression Correlated with Heavy Metal, Phenolic Acid, and Protein and Nitrogen Levels in Five Chickpea Genotypes
title_full Drought-Induced miRNA Expression Correlated with Heavy Metal, Phenolic Acid, and Protein and Nitrogen Levels in Five Chickpea Genotypes
title_fullStr Drought-Induced miRNA Expression Correlated with Heavy Metal, Phenolic Acid, and Protein and Nitrogen Levels in Five Chickpea Genotypes
title_full_unstemmed Drought-Induced miRNA Expression Correlated with Heavy Metal, Phenolic Acid, and Protein and Nitrogen Levels in Five Chickpea Genotypes
title_short Drought-Induced miRNA Expression Correlated with Heavy Metal, Phenolic Acid, and Protein and Nitrogen Levels in Five Chickpea Genotypes
title_sort drought-induced mirna expression correlated with heavy metal, phenolic acid, and protein and nitrogen levels in five chickpea genotypes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10552140/
https://www.ncbi.nlm.nih.gov/pubmed/37810661
http://dx.doi.org/10.1021/acsomega.3c03003
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