Possible involvement of locus-specific methylation on expression regulation of leafy homologous gene (CiLFY) during precocious trifoliate orange phase change process.

DNA methylation plays an essential role in regulating plant development. Here, we described an early flowering trifoliate orange (precocious trifoliate orange, Poncirus trifoliata L. Raf) was treated with 5-azacytidine and displayed a number of phenotypic and developmental abnormalities. These obser...

Full description

Bibliographic Details
Main Authors: Jin-Zhi Zhang, Li Mei, Rong Liu, Muhammad Rehman Gul Khan, Chun-Gen Hu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3921215?pdf=render
id doaj-a2d6e9f2f15a4727a5ae81e333a1c1f3
record_format Article
spelling doaj-a2d6e9f2f15a4727a5ae81e333a1c1f32020-11-25T02:08:48ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0192e8855810.1371/journal.pone.0088558Possible involvement of locus-specific methylation on expression regulation of leafy homologous gene (CiLFY) during precocious trifoliate orange phase change process.Jin-Zhi ZhangLi MeiRong LiuMuhammad Rehman Gul KhanChun-Gen HuDNA methylation plays an essential role in regulating plant development. Here, we described an early flowering trifoliate orange (precocious trifoliate orange, Poncirus trifoliata L. Raf) was treated with 5-azacytidine and displayed a number of phenotypic and developmental abnormalities. These observations suggested that DNA methylation might play an important role in regulating many developmental pathways including early flowering trait, and then the expression level of five key or integrated citrus flowering genes were analyzed. Our results showed that flowering locus T (CiFT) relative expression level was increased with the increasing concentrations of 5-AzaC. However, leafy (CiLFY), APETELA1 (CiAP1), terminal flower1 (CiTFL1), and flowering locus C (CiFLC) showed highest relative expression levels at 250 µΜ treatment, while decreased sharply at higher concentrations. In order to further confirm DNA methylation affects the expression of these genes, their full-length sequences were isolated by genome-walker method, and then was analyzed by using bioinformatics tools. However, only one locus-specific methylation site was observed in CiLFY sequence. Therefore, DNA methylation level of the CiLFY was investigated both at juvenile and adult stages of precocious trifoliate orange by bisulfate sequencing PCR; it has been shown that the level of DNA methylation was altered during phase change. In addition, spatial and temporal expression patterns of CiLFY promoter and a series of 5' deletions were investigated by driving the expression of a β-glucuronidase reporter gene in Arabidopsis. Exogenous GA3 treatment on transgenic Arabidopsis revealed that GA3 might be involved in the developmental regulation of CiLFY during flowering process of precocious trifoliate orange. These results provided insights into the molecular regulation of CiLFY gene expression, which would be helpful for studying citrus flowering.http://europepmc.org/articles/PMC3921215?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jin-Zhi Zhang
Li Mei
Rong Liu
Muhammad Rehman Gul Khan
Chun-Gen Hu
spellingShingle Jin-Zhi Zhang
Li Mei
Rong Liu
Muhammad Rehman Gul Khan
Chun-Gen Hu
Possible involvement of locus-specific methylation on expression regulation of leafy homologous gene (CiLFY) during precocious trifoliate orange phase change process.
PLoS ONE
author_facet Jin-Zhi Zhang
Li Mei
Rong Liu
Muhammad Rehman Gul Khan
Chun-Gen Hu
author_sort Jin-Zhi Zhang
title Possible involvement of locus-specific methylation on expression regulation of leafy homologous gene (CiLFY) during precocious trifoliate orange phase change process.
title_short Possible involvement of locus-specific methylation on expression regulation of leafy homologous gene (CiLFY) during precocious trifoliate orange phase change process.
title_full Possible involvement of locus-specific methylation on expression regulation of leafy homologous gene (CiLFY) during precocious trifoliate orange phase change process.
title_fullStr Possible involvement of locus-specific methylation on expression regulation of leafy homologous gene (CiLFY) during precocious trifoliate orange phase change process.
title_full_unstemmed Possible involvement of locus-specific methylation on expression regulation of leafy homologous gene (CiLFY) during precocious trifoliate orange phase change process.
title_sort possible involvement of locus-specific methylation on expression regulation of leafy homologous gene (cilfy) during precocious trifoliate orange phase change process.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description DNA methylation plays an essential role in regulating plant development. Here, we described an early flowering trifoliate orange (precocious trifoliate orange, Poncirus trifoliata L. Raf) was treated with 5-azacytidine and displayed a number of phenotypic and developmental abnormalities. These observations suggested that DNA methylation might play an important role in regulating many developmental pathways including early flowering trait, and then the expression level of five key or integrated citrus flowering genes were analyzed. Our results showed that flowering locus T (CiFT) relative expression level was increased with the increasing concentrations of 5-AzaC. However, leafy (CiLFY), APETELA1 (CiAP1), terminal flower1 (CiTFL1), and flowering locus C (CiFLC) showed highest relative expression levels at 250 µΜ treatment, while decreased sharply at higher concentrations. In order to further confirm DNA methylation affects the expression of these genes, their full-length sequences were isolated by genome-walker method, and then was analyzed by using bioinformatics tools. However, only one locus-specific methylation site was observed in CiLFY sequence. Therefore, DNA methylation level of the CiLFY was investigated both at juvenile and adult stages of precocious trifoliate orange by bisulfate sequencing PCR; it has been shown that the level of DNA methylation was altered during phase change. In addition, spatial and temporal expression patterns of CiLFY promoter and a series of 5' deletions were investigated by driving the expression of a β-glucuronidase reporter gene in Arabidopsis. Exogenous GA3 treatment on transgenic Arabidopsis revealed that GA3 might be involved in the developmental regulation of CiLFY during flowering process of precocious trifoliate orange. These results provided insights into the molecular regulation of CiLFY gene expression, which would be helpful for studying citrus flowering.
url http://europepmc.org/articles/PMC3921215?pdf=render
work_keys_str_mv AT jinzhizhang possibleinvolvementoflocusspecificmethylationonexpressionregulationofleafyhomologousgenecilfyduringprecocioustrifoliateorangephasechangeprocess
AT limei possibleinvolvementoflocusspecificmethylationonexpressionregulationofleafyhomologousgenecilfyduringprecocioustrifoliateorangephasechangeprocess
AT rongliu possibleinvolvementoflocusspecificmethylationonexpressionregulationofleafyhomologousgenecilfyduringprecocioustrifoliateorangephasechangeprocess
AT muhammadrehmangulkhan possibleinvolvementoflocusspecificmethylationonexpressionregulationofleafyhomologousgenecilfyduringprecocioustrifoliateorangephasechangeprocess
AT chungenhu possibleinvolvementoflocusspecificmethylationonexpressionregulationofleafyhomologousgenecilfyduringprecocioustrifoliateorangephasechangeprocess
_version_ 1724925240405917696