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Identification, Characterization, and Functional Validation of Drought-responsive MicroRNAs in Subtropical Maize Inbreds

MicroRNA-mediated gene regulation plays a crucial role in controlling drought tolerance. In the present investigation, 13 drought-associated miRNA families consisting of 65 members and regulating 42 unique target mRNAs were identified from drought-associated microarray expression data in maize and w...

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Autores principales: Aravind, Jayaraman, Rinku, Sharma, Pooja, Banduni, Shikha, Mittal, Kaliyugam, Shiriga, Mallikarjuna, Mallana Gowdra, Kumar, Arun, Rao, Atmakuri Ramakrishna, Nepolean, Thirunavukkarasu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5454542/
https://www.ncbi.nlm.nih.gov/pubmed/28626466
http://dx.doi.org/10.3389/fpls.2017.00941
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author Aravind, Jayaraman
Rinku, Sharma
Pooja, Banduni
Shikha, Mittal
Kaliyugam, Shiriga
Mallikarjuna, Mallana Gowdra
Kumar, Arun
Rao, Atmakuri Ramakrishna
Nepolean, Thirunavukkarasu
author_facet Aravind, Jayaraman
Rinku, Sharma
Pooja, Banduni
Shikha, Mittal
Kaliyugam, Shiriga
Mallikarjuna, Mallana Gowdra
Kumar, Arun
Rao, Atmakuri Ramakrishna
Nepolean, Thirunavukkarasu
author_sort Aravind, Jayaraman
collection PubMed
description MicroRNA-mediated gene regulation plays a crucial role in controlling drought tolerance. In the present investigation, 13 drought-associated miRNA families consisting of 65 members and regulating 42 unique target mRNAs were identified from drought-associated microarray expression data in maize and were subjected to structural and functional characterization. The largest number of members (14) was found in the zma-miR166 and zma-miR395 families, with several targets. However, zma-miR160, zma-miR390, zma-miR393, and zma-miR2275 each showed a single target. Twenty-three major drought-responsive cis-regulatory elements were found in the upstream regions of miRNAs. Many drought-related transcription factors, such as GAMYB, HD-Zip III, and NAC, were associated with the target mRNAs. Furthermore, two contrasting subtropical maize genotypes (tolerant: HKI-1532 and sensitive: V-372) were used to understand the miRNA-assisted regulation of target mRNA under drought stress. Approximately 35 and 31% of miRNAs were up-regulated in HKI-1532 and V-372, respectively. The up-regulation of target mRNAs was as high as 14.2% in HKI-1532 but was only 2.38% in V-372. The expression patterns of miRNA-target mRNA pairs were classified into four different types: Type I- up-regulation, Type II- down-regulation, Type III- neutral regulation, and Type IV- opposite regulation. HKI-1532 displayed 46 Type I, 13 Type II, and 23 Type III patterns, whereas V-372 had mostly Type IV interactions (151). A low level of negative regulations of miRNA associated with a higher level of mRNA activity in the tolerant genotype helped to maintain crucial biological functions such as ABA signaling, the auxin response pathway, the light-responsive pathway and endosperm expression under stress conditions, thereby leading to drought tolerance. Our study identified candidate miRNAs and mRNAs operating in important pathways under drought stress conditions, and these candidates will be useful in the development of drought-tolerant maize hybrids.
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spelling pubmed-54545422017-06-16 Identification, Characterization, and Functional Validation of Drought-responsive MicroRNAs in Subtropical Maize Inbreds Aravind, Jayaraman Rinku, Sharma Pooja, Banduni Shikha, Mittal Kaliyugam, Shiriga Mallikarjuna, Mallana Gowdra Kumar, Arun Rao, Atmakuri Ramakrishna Nepolean, Thirunavukkarasu Front Plant Sci Plant Science MicroRNA-mediated gene regulation plays a crucial role in controlling drought tolerance. In the present investigation, 13 drought-associated miRNA families consisting of 65 members and regulating 42 unique target mRNAs were identified from drought-associated microarray expression data in maize and were subjected to structural and functional characterization. The largest number of members (14) was found in the zma-miR166 and zma-miR395 families, with several targets. However, zma-miR160, zma-miR390, zma-miR393, and zma-miR2275 each showed a single target. Twenty-three major drought-responsive cis-regulatory elements were found in the upstream regions of miRNAs. Many drought-related transcription factors, such as GAMYB, HD-Zip III, and NAC, were associated with the target mRNAs. Furthermore, two contrasting subtropical maize genotypes (tolerant: HKI-1532 and sensitive: V-372) were used to understand the miRNA-assisted regulation of target mRNA under drought stress. Approximately 35 and 31% of miRNAs were up-regulated in HKI-1532 and V-372, respectively. The up-regulation of target mRNAs was as high as 14.2% in HKI-1532 but was only 2.38% in V-372. The expression patterns of miRNA-target mRNA pairs were classified into four different types: Type I- up-regulation, Type II- down-regulation, Type III- neutral regulation, and Type IV- opposite regulation. HKI-1532 displayed 46 Type I, 13 Type II, and 23 Type III patterns, whereas V-372 had mostly Type IV interactions (151). A low level of negative regulations of miRNA associated with a higher level of mRNA activity in the tolerant genotype helped to maintain crucial biological functions such as ABA signaling, the auxin response pathway, the light-responsive pathway and endosperm expression under stress conditions, thereby leading to drought tolerance. Our study identified candidate miRNAs and mRNAs operating in important pathways under drought stress conditions, and these candidates will be useful in the development of drought-tolerant maize hybrids. Frontiers Media S.A. 2017-06-02 /pmc/articles/PMC5454542/ /pubmed/28626466 http://dx.doi.org/10.3389/fpls.2017.00941 Text en Copyright © 2017 Aravind, Rinku, Pooja, Shikha, Kaliyugam, Mallikarjuna, Kumar, Rao and Nepolean. 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) or licensor 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
Aravind, Jayaraman
Rinku, Sharma
Pooja, Banduni
Shikha, Mittal
Kaliyugam, Shiriga
Mallikarjuna, Mallana Gowdra
Kumar, Arun
Rao, Atmakuri Ramakrishna
Nepolean, Thirunavukkarasu
Identification, Characterization, and Functional Validation of Drought-responsive MicroRNAs in Subtropical Maize Inbreds
title Identification, Characterization, and Functional Validation of Drought-responsive MicroRNAs in Subtropical Maize Inbreds
title_full Identification, Characterization, and Functional Validation of Drought-responsive MicroRNAs in Subtropical Maize Inbreds
title_fullStr Identification, Characterization, and Functional Validation of Drought-responsive MicroRNAs in Subtropical Maize Inbreds
title_full_unstemmed Identification, Characterization, and Functional Validation of Drought-responsive MicroRNAs in Subtropical Maize Inbreds
title_short Identification, Characterization, and Functional Validation of Drought-responsive MicroRNAs in Subtropical Maize Inbreds
title_sort identification, characterization, and functional validation of drought-responsive micrornas in subtropical maize inbreds
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5454542/
https://www.ncbi.nlm.nih.gov/pubmed/28626466
http://dx.doi.org/10.3389/fpls.2017.00941
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