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An effective homologous cloning method for isolating novel miR172s from Phalaenopsis hybrida

MiR172 is an important microRNA that regulates floral development in various plants and downregulates AP2 family members to relieve the stress on floral determinacy, leading to phase transition from vegetative to reproductive growth. In this work, PCR with primers designed based on the rice miR172 s...

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Detalles Bibliográficos
Autores principales: Han, Ying Ying, Yan, Qin Hua, Ming, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira de Genética 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4094608/
https://www.ncbi.nlm.nih.gov/pubmed/25071407
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author Han, Ying Ying
Yan, Qin Hua
Ming, Feng
author_facet Han, Ying Ying
Yan, Qin Hua
Ming, Feng
author_sort Han, Ying Ying
collection PubMed
description MiR172 is an important microRNA that regulates floral development in various plants and downregulates AP2 family members to relieve the stress on floral determinacy, leading to phase transition from vegetative to reproductive growth. In this work, PCR with primers designed based on the rice miR172 sequence was used to isolate two miR172-like transcripts from Phalaenopsis hybrida (PhmiR172-1 and PhmiR172-2) that were very similar to Oryza miR172d and Arabidopsis miR172b. RT-PCR indicated that the levels of these two transcripts were negatively correlated with the level of the Phalaenopsis AP2 (PhAP2) gene in stem, root, pedicel and sepal, and that both were co-expressed with PhAP2 in young buds. Overproduction of PhmiR172-2 in Arabidopsis led to early flowering. The homologous cloning method used to isolate the Phalaenopsis miR172-like transcripts can be used to isolate miRNAs from other species. These PhmiR172 transcripts may be used to accelerate the flowering of orchids.
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spelling pubmed-40946082014-07-28 An effective homologous cloning method for isolating novel miR172s from Phalaenopsis hybrida Han, Ying Ying Yan, Qin Hua Ming, Feng Genet Mol Biol Plant Genetics MiR172 is an important microRNA that regulates floral development in various plants and downregulates AP2 family members to relieve the stress on floral determinacy, leading to phase transition from vegetative to reproductive growth. In this work, PCR with primers designed based on the rice miR172 sequence was used to isolate two miR172-like transcripts from Phalaenopsis hybrida (PhmiR172-1 and PhmiR172-2) that were very similar to Oryza miR172d and Arabidopsis miR172b. RT-PCR indicated that the levels of these two transcripts were negatively correlated with the level of the Phalaenopsis AP2 (PhAP2) gene in stem, root, pedicel and sepal, and that both were co-expressed with PhAP2 in young buds. Overproduction of PhmiR172-2 in Arabidopsis led to early flowering. The homologous cloning method used to isolate the Phalaenopsis miR172-like transcripts can be used to isolate miRNAs from other species. These PhmiR172 transcripts may be used to accelerate the flowering of orchids. Sociedade Brasileira de Genética 2014-06 /pmc/articles/PMC4094608/ /pubmed/25071407 Text en Copyright © 2014, Sociedade Brasileira de Genética. All the content of the journal, except where otherwise noted, is licensed under a Creative Commons License CC BY-NC.
spellingShingle Plant Genetics
Han, Ying Ying
Yan, Qin Hua
Ming, Feng
An effective homologous cloning method for isolating novel miR172s from Phalaenopsis hybrida
title An effective homologous cloning method for isolating novel miR172s from Phalaenopsis hybrida
title_full An effective homologous cloning method for isolating novel miR172s from Phalaenopsis hybrida
title_fullStr An effective homologous cloning method for isolating novel miR172s from Phalaenopsis hybrida
title_full_unstemmed An effective homologous cloning method for isolating novel miR172s from Phalaenopsis hybrida
title_short An effective homologous cloning method for isolating novel miR172s from Phalaenopsis hybrida
title_sort effective homologous cloning method for isolating novel mir172s from phalaenopsis hybrida
topic Plant Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4094608/
https://www.ncbi.nlm.nih.gov/pubmed/25071407
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