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A De Novo Floral Transcriptome Reveals Clues into Phalaenopsis Orchid Flower Development

Phalaenopsis has a zygomorphic floral structure, including three outer tepals, two lateral inner tepals and a highly modified inner median tepal called labellum or lip; however, the regulation of its organ development remains unelucidated. We generated RNA-seq reads with the Illumina platform for fl...

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Autores principales: Huang, Jian-Zhi, Lin, Chih-Peng, Cheng, Ting-Chi, Chang, Bill Chia-Han, Cheng, Shu-Yu, Chen, Yi-Wen, Lee, Chen-Yu, Chin, Shih-Wen, Chen, Fure-Chyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4430480/
https://www.ncbi.nlm.nih.gov/pubmed/25970572
http://dx.doi.org/10.1371/journal.pone.0123474
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author Huang, Jian-Zhi
Lin, Chih-Peng
Cheng, Ting-Chi
Chang, Bill Chia-Han
Cheng, Shu-Yu
Chen, Yi-Wen
Lee, Chen-Yu
Chin, Shih-Wen
Chen, Fure-Chyi
author_facet Huang, Jian-Zhi
Lin, Chih-Peng
Cheng, Ting-Chi
Chang, Bill Chia-Han
Cheng, Shu-Yu
Chen, Yi-Wen
Lee, Chen-Yu
Chin, Shih-Wen
Chen, Fure-Chyi
author_sort Huang, Jian-Zhi
collection PubMed
description Phalaenopsis has a zygomorphic floral structure, including three outer tepals, two lateral inner tepals and a highly modified inner median tepal called labellum or lip; however, the regulation of its organ development remains unelucidated. We generated RNA-seq reads with the Illumina platform for floral organs of the Phalaenopsis wild-type and peloric mutant with a lip-like petal. A total of 43,552 contigs were obtained after de novo assembly. We used differentially expressed gene profiling to compare the transcriptional changes in floral organs for both the wild-type and peloric mutant. Pair-wise comparison of sepals, petals and labellum between peloric mutant and its wild-type revealed 1,838, 758 and 1,147 contigs, respectively, with significant differential expression. PhAGL6a (CUFF.17763), PhAGL6b (CUFF.17763.1), PhMADS1 (CUFF.36625.1), PhMADS4 (CUFF.25909) and PhMADS5 (CUFF.39479.1) were significantly upregulated in the lip-like petal of the peloric mutant. We used real-time PCR analysis of lip-like petals, lip-like sepals and the big lip of peloric mutants to confirm the five genes’ expression patterns. PhAGL6a, PhAGL6b and PhMADS4 were strongly expressed in the labellum and significantly upregulated in lip-like petals and lip-like sepals of peloric-mutant flowers. In addition, PhAGL6b was significantly downregulated in the labellum of the big lip mutant, with no change in expression of PhAGL6a. We provide a comprehensive transcript profile and functional analysis of Phalaenopsis floral organs. PhAGL6a PhAGL6b, and PhMADS4 might play crucial roles in the development of the labellum in Phalaenopsis. Our study provides new insights into how the orchid labellum differs and why the petal or sepal converts to a labellum in Phalaenopsis floral mutants.
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spelling pubmed-44304802015-05-21 A De Novo Floral Transcriptome Reveals Clues into Phalaenopsis Orchid Flower Development Huang, Jian-Zhi Lin, Chih-Peng Cheng, Ting-Chi Chang, Bill Chia-Han Cheng, Shu-Yu Chen, Yi-Wen Lee, Chen-Yu Chin, Shih-Wen Chen, Fure-Chyi PLoS One Research Article Phalaenopsis has a zygomorphic floral structure, including three outer tepals, two lateral inner tepals and a highly modified inner median tepal called labellum or lip; however, the regulation of its organ development remains unelucidated. We generated RNA-seq reads with the Illumina platform for floral organs of the Phalaenopsis wild-type and peloric mutant with a lip-like petal. A total of 43,552 contigs were obtained after de novo assembly. We used differentially expressed gene profiling to compare the transcriptional changes in floral organs for both the wild-type and peloric mutant. Pair-wise comparison of sepals, petals and labellum between peloric mutant and its wild-type revealed 1,838, 758 and 1,147 contigs, respectively, with significant differential expression. PhAGL6a (CUFF.17763), PhAGL6b (CUFF.17763.1), PhMADS1 (CUFF.36625.1), PhMADS4 (CUFF.25909) and PhMADS5 (CUFF.39479.1) were significantly upregulated in the lip-like petal of the peloric mutant. We used real-time PCR analysis of lip-like petals, lip-like sepals and the big lip of peloric mutants to confirm the five genes’ expression patterns. PhAGL6a, PhAGL6b and PhMADS4 were strongly expressed in the labellum and significantly upregulated in lip-like petals and lip-like sepals of peloric-mutant flowers. In addition, PhAGL6b was significantly downregulated in the labellum of the big lip mutant, with no change in expression of PhAGL6a. We provide a comprehensive transcript profile and functional analysis of Phalaenopsis floral organs. PhAGL6a PhAGL6b, and PhMADS4 might play crucial roles in the development of the labellum in Phalaenopsis. Our study provides new insights into how the orchid labellum differs and why the petal or sepal converts to a labellum in Phalaenopsis floral mutants. Public Library of Science 2015-05-13 /pmc/articles/PMC4430480/ /pubmed/25970572 http://dx.doi.org/10.1371/journal.pone.0123474 Text en © 2015 Huang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Huang, Jian-Zhi
Lin, Chih-Peng
Cheng, Ting-Chi
Chang, Bill Chia-Han
Cheng, Shu-Yu
Chen, Yi-Wen
Lee, Chen-Yu
Chin, Shih-Wen
Chen, Fure-Chyi
A De Novo Floral Transcriptome Reveals Clues into Phalaenopsis Orchid Flower Development
title A De Novo Floral Transcriptome Reveals Clues into Phalaenopsis Orchid Flower Development
title_full A De Novo Floral Transcriptome Reveals Clues into Phalaenopsis Orchid Flower Development
title_fullStr A De Novo Floral Transcriptome Reveals Clues into Phalaenopsis Orchid Flower Development
title_full_unstemmed A De Novo Floral Transcriptome Reveals Clues into Phalaenopsis Orchid Flower Development
title_short A De Novo Floral Transcriptome Reveals Clues into Phalaenopsis Orchid Flower Development
title_sort de novo floral transcriptome reveals clues into phalaenopsis orchid flower development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4430480/
https://www.ncbi.nlm.nih.gov/pubmed/25970572
http://dx.doi.org/10.1371/journal.pone.0123474
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