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Identification of microRNAs That Provide a Low Light Stress Tolerance-Mediated Signaling Pathway during Vegetative Growth in Rice

Low light intensity affects several physiological parameters during the different growth stages in rice. Plants have various regulatory mechanisms to cope with stresses. One of them is the differential and temporal expression of genes, which is governed by post-transcriptional gene expression regula...

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Autores principales: Sekhar, Sudhanshu, Das, Swagatika, Panda, Darshan, Mohanty, Soumya, Mishra, Baneeta, Kumar, Awadhesh, Navadagi, Devanna Basavantraya, Sah, Rameswar Prasad, Pradhan, Sharat Kumar, Samantaray, Sanghamitra, Baig, Mirza Jaynul, Behera, Lambodar, Mohapatra, Trilochan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614602/
https://www.ncbi.nlm.nih.gov/pubmed/36235424
http://dx.doi.org/10.3390/plants11192558
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author Sekhar, Sudhanshu
Das, Swagatika
Panda, Darshan
Mohanty, Soumya
Mishra, Baneeta
Kumar, Awadhesh
Navadagi, Devanna Basavantraya
Sah, Rameswar Prasad
Pradhan, Sharat Kumar
Samantaray, Sanghamitra
Baig, Mirza Jaynul
Behera, Lambodar
Mohapatra, Trilochan
author_facet Sekhar, Sudhanshu
Das, Swagatika
Panda, Darshan
Mohanty, Soumya
Mishra, Baneeta
Kumar, Awadhesh
Navadagi, Devanna Basavantraya
Sah, Rameswar Prasad
Pradhan, Sharat Kumar
Samantaray, Sanghamitra
Baig, Mirza Jaynul
Behera, Lambodar
Mohapatra, Trilochan
author_sort Sekhar, Sudhanshu
collection PubMed
description Low light intensity affects several physiological parameters during the different growth stages in rice. Plants have various regulatory mechanisms to cope with stresses. One of them is the differential and temporal expression of genes, which is governed by post-transcriptional gene expression regulation through endogenous miRNAs. To decipher low light stress-responsive miRNAs in rice, miRNA expression profiling was carried out using next-generation sequencing of low-light-tolerant (Swarnaprabha) and -sensitive (IR8) rice genotypes through Illumina sequencing. Swarnaprabha and IR8 were subjected to 25% low light treatment for one day, three days, and five days at the active tillering stage. More than 43 million raw reads and 9 million clean reads were identified in Swarnaprabha, while more than 41 million raw reads and 8.5 million clean reads were identified in IR8 after NGS. Importantly, 513 new miRNAs in rice were identified, whose targets were mostly regulated by the genes involved in photosynthesis and metabolic pathways. Additionally, 114 known miRNAs were also identified. Five novel (osa-novmiR1, osa-novmiR2, osa-novmiR3, osa-novmiR4, and osa-novmiR5) and three known (osa-miR166c-3p, osa-miR2102-3p, and osa-miR530-3p) miRNAs were selected for their expression validation through miRNA-specific qRT-PCR. The expression analyses of most of the predicted targets of corresponding miRNAs show negative regulation. Hence, miRNAs modulated the expression of genes providing tolerance/susceptibility to low light stress. This information might be useful in the improvement of crop productivity under low light stress.
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spelling pubmed-96146022022-10-29 Identification of microRNAs That Provide a Low Light Stress Tolerance-Mediated Signaling Pathway during Vegetative Growth in Rice Sekhar, Sudhanshu Das, Swagatika Panda, Darshan Mohanty, Soumya Mishra, Baneeta Kumar, Awadhesh Navadagi, Devanna Basavantraya Sah, Rameswar Prasad Pradhan, Sharat Kumar Samantaray, Sanghamitra Baig, Mirza Jaynul Behera, Lambodar Mohapatra, Trilochan Plants (Basel) Article Low light intensity affects several physiological parameters during the different growth stages in rice. Plants have various regulatory mechanisms to cope with stresses. One of them is the differential and temporal expression of genes, which is governed by post-transcriptional gene expression regulation through endogenous miRNAs. To decipher low light stress-responsive miRNAs in rice, miRNA expression profiling was carried out using next-generation sequencing of low-light-tolerant (Swarnaprabha) and -sensitive (IR8) rice genotypes through Illumina sequencing. Swarnaprabha and IR8 were subjected to 25% low light treatment for one day, three days, and five days at the active tillering stage. More than 43 million raw reads and 9 million clean reads were identified in Swarnaprabha, while more than 41 million raw reads and 8.5 million clean reads were identified in IR8 after NGS. Importantly, 513 new miRNAs in rice were identified, whose targets were mostly regulated by the genes involved in photosynthesis and metabolic pathways. Additionally, 114 known miRNAs were also identified. Five novel (osa-novmiR1, osa-novmiR2, osa-novmiR3, osa-novmiR4, and osa-novmiR5) and three known (osa-miR166c-3p, osa-miR2102-3p, and osa-miR530-3p) miRNAs were selected for their expression validation through miRNA-specific qRT-PCR. The expression analyses of most of the predicted targets of corresponding miRNAs show negative regulation. Hence, miRNAs modulated the expression of genes providing tolerance/susceptibility to low light stress. This information might be useful in the improvement of crop productivity under low light stress. MDPI 2022-09-28 /pmc/articles/PMC9614602/ /pubmed/36235424 http://dx.doi.org/10.3390/plants11192558 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sekhar, Sudhanshu
Das, Swagatika
Panda, Darshan
Mohanty, Soumya
Mishra, Baneeta
Kumar, Awadhesh
Navadagi, Devanna Basavantraya
Sah, Rameswar Prasad
Pradhan, Sharat Kumar
Samantaray, Sanghamitra
Baig, Mirza Jaynul
Behera, Lambodar
Mohapatra, Trilochan
Identification of microRNAs That Provide a Low Light Stress Tolerance-Mediated Signaling Pathway during Vegetative Growth in Rice
title Identification of microRNAs That Provide a Low Light Stress Tolerance-Mediated Signaling Pathway during Vegetative Growth in Rice
title_full Identification of microRNAs That Provide a Low Light Stress Tolerance-Mediated Signaling Pathway during Vegetative Growth in Rice
title_fullStr Identification of microRNAs That Provide a Low Light Stress Tolerance-Mediated Signaling Pathway during Vegetative Growth in Rice
title_full_unstemmed Identification of microRNAs That Provide a Low Light Stress Tolerance-Mediated Signaling Pathway during Vegetative Growth in Rice
title_short Identification of microRNAs That Provide a Low Light Stress Tolerance-Mediated Signaling Pathway during Vegetative Growth in Rice
title_sort identification of micrornas that provide a low light stress tolerance-mediated signaling pathway during vegetative growth in rice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614602/
https://www.ncbi.nlm.nih.gov/pubmed/36235424
http://dx.doi.org/10.3390/plants11192558
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