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Molecular Basis Underlying Leaf Variegation of a Moth Orchid Mutant (Phalaenopsis aphrodite subsp. formosana)

Leaf variegation is often the focus of plant breeding. Here, we studied a variegated mutant of Phalaenopsis aphrodite subsp. formosana, which is usually used as a parent of horticultural breeding, to understand its anatomic and genetic regulatory mechanisms in variegation. Chloroplasts with well-org...

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Autores principales: Tsai, Chi-Chu, Wu, Yu-Jen, Sheue, Chiou-Rong, Liao, Pei-Chun, Chen, Ying-Hao, Li, Shu-Ju, Liu, Jian-Wei, Chang, Han-Tsung, Liu, Wen-Lin, Ko, Ya-Zhu, Chiang, Yu-Chung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5529386/
https://www.ncbi.nlm.nih.gov/pubmed/28798769
http://dx.doi.org/10.3389/fpls.2017.01333
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author Tsai, Chi-Chu
Wu, Yu-Jen
Sheue, Chiou-Rong
Liao, Pei-Chun
Chen, Ying-Hao
Li, Shu-Ju
Liu, Jian-Wei
Chang, Han-Tsung
Liu, Wen-Lin
Ko, Ya-Zhu
Chiang, Yu-Chung
author_facet Tsai, Chi-Chu
Wu, Yu-Jen
Sheue, Chiou-Rong
Liao, Pei-Chun
Chen, Ying-Hao
Li, Shu-Ju
Liu, Jian-Wei
Chang, Han-Tsung
Liu, Wen-Lin
Ko, Ya-Zhu
Chiang, Yu-Chung
author_sort Tsai, Chi-Chu
collection PubMed
description Leaf variegation is often the focus of plant breeding. Here, we studied a variegated mutant of Phalaenopsis aphrodite subsp. formosana, which is usually used as a parent of horticultural breeding, to understand its anatomic and genetic regulatory mechanisms in variegation. Chloroplasts with well-organized thylakoids and starch grains were found only in the mesophyll cells of green sectors but not of yellow sectors, confirming that the variegation belongs to the chlorophyll type. The two-dimensional electrophoresis and LC/MS/MS also reveal differential expressions of PsbP and PsbO between the green and yellow leaf sectors. Full-length cDNA sequencing revealed that mutant transcripts were caused by intron retention. When conditioning on the total RNA expression, we found that the functional transcript of PsbO and mutant transcript of PsbP are higher expressed in the yellow sector than in the green sector, suggesting that the post-transcriptional regulation of PsbO and PsbP differentiates the performance between green and yellow sectors. Because PsbP plays an important role in the stability of thylakoid folding, we suggest that the negative regulation of PsbP may inhibit thylakoid development in the yellow sectors. This causes chlorophyll deficiency in the yellow sectors and results in leaf variegation. We also provide evidence of the link of virus CymMV and the formation of variegation according to the differential expression of CymMV between green and yellow sectors.
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spelling pubmed-55293862017-08-10 Molecular Basis Underlying Leaf Variegation of a Moth Orchid Mutant (Phalaenopsis aphrodite subsp. formosana) Tsai, Chi-Chu Wu, Yu-Jen Sheue, Chiou-Rong Liao, Pei-Chun Chen, Ying-Hao Li, Shu-Ju Liu, Jian-Wei Chang, Han-Tsung Liu, Wen-Lin Ko, Ya-Zhu Chiang, Yu-Chung Front Plant Sci Plant Science Leaf variegation is often the focus of plant breeding. Here, we studied a variegated mutant of Phalaenopsis aphrodite subsp. formosana, which is usually used as a parent of horticultural breeding, to understand its anatomic and genetic regulatory mechanisms in variegation. Chloroplasts with well-organized thylakoids and starch grains were found only in the mesophyll cells of green sectors but not of yellow sectors, confirming that the variegation belongs to the chlorophyll type. The two-dimensional electrophoresis and LC/MS/MS also reveal differential expressions of PsbP and PsbO between the green and yellow leaf sectors. Full-length cDNA sequencing revealed that mutant transcripts were caused by intron retention. When conditioning on the total RNA expression, we found that the functional transcript of PsbO and mutant transcript of PsbP are higher expressed in the yellow sector than in the green sector, suggesting that the post-transcriptional regulation of PsbO and PsbP differentiates the performance between green and yellow sectors. Because PsbP plays an important role in the stability of thylakoid folding, we suggest that the negative regulation of PsbP may inhibit thylakoid development in the yellow sectors. This causes chlorophyll deficiency in the yellow sectors and results in leaf variegation. We also provide evidence of the link of virus CymMV and the formation of variegation according to the differential expression of CymMV between green and yellow sectors. Frontiers Media S.A. 2017-07-27 /pmc/articles/PMC5529386/ /pubmed/28798769 http://dx.doi.org/10.3389/fpls.2017.01333 Text en Copyright © 2017 Tsai, Wu, Sheue, Liao, Chen, Li, Liu, Chang, Liu, Ko and Chiang. 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
Tsai, Chi-Chu
Wu, Yu-Jen
Sheue, Chiou-Rong
Liao, Pei-Chun
Chen, Ying-Hao
Li, Shu-Ju
Liu, Jian-Wei
Chang, Han-Tsung
Liu, Wen-Lin
Ko, Ya-Zhu
Chiang, Yu-Chung
Molecular Basis Underlying Leaf Variegation of a Moth Orchid Mutant (Phalaenopsis aphrodite subsp. formosana)
title Molecular Basis Underlying Leaf Variegation of a Moth Orchid Mutant (Phalaenopsis aphrodite subsp. formosana)
title_full Molecular Basis Underlying Leaf Variegation of a Moth Orchid Mutant (Phalaenopsis aphrodite subsp. formosana)
title_fullStr Molecular Basis Underlying Leaf Variegation of a Moth Orchid Mutant (Phalaenopsis aphrodite subsp. formosana)
title_full_unstemmed Molecular Basis Underlying Leaf Variegation of a Moth Orchid Mutant (Phalaenopsis aphrodite subsp. formosana)
title_short Molecular Basis Underlying Leaf Variegation of a Moth Orchid Mutant (Phalaenopsis aphrodite subsp. formosana)
title_sort molecular basis underlying leaf variegation of a moth orchid mutant (phalaenopsis aphrodite subsp. formosana)
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5529386/
https://www.ncbi.nlm.nih.gov/pubmed/28798769
http://dx.doi.org/10.3389/fpls.2017.01333
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