Genome-Wide Identification and Expression Analysis of GA2ox, GA3ox, and GA20ox Are Related to Gibberellin Oxidase Genes in Grape (<i>Vitis</i> <i>vinifera</i> L.)

Gibberellin (GAs) plays the important role in the regulation of grape developmental and growth processes. The bioinformatics analysis confirmed the differential expression of GA2, GA3, and GA20 gibberellin oxidase genes (<i>VvGA2oxs</i>, <i>VvGA3oxs,</i> and <i>VvGA20ox...

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Main Authors: Honghong He, Guoping Liang, Shixiong Lu, Pingping Wang, Tao Liu, Zonghuan Ma, Cunwu Zuo, Xiaomei Sun, Baihong Chen, Juan Mao
Format: Article
Language:English
Published: MDPI AG 2019-09-01
Series:Genes
Subjects:
Online Access:https://www.mdpi.com/2073-4425/10/9/680
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spelling doaj-f32fb942e1f0477e9fde321dc8ceb3972020-11-25T01:23:30ZengMDPI AGGenes2073-44252019-09-0110968010.3390/genes10090680genes10090680Genome-Wide Identification and Expression Analysis of GA2ox, GA3ox, and GA20ox Are Related to Gibberellin Oxidase Genes in Grape (<i>Vitis</i> <i>vinifera</i> L.)Honghong He0Guoping Liang1Shixiong Lu2Pingping Wang3Tao Liu4Zonghuan Ma5Cunwu Zuo6Xiaomei Sun7Baihong Chen8Juan Mao9College of Horticulture, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Horticulture, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Horticulture, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Horticulture, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Horticulture, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Horticulture, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Horticulture, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Resource and Environmental Sciences, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Horticulture, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Horticulture, Gansu Agricultural University, Lanzhou 730070, ChinaGibberellin (GAs) plays the important role in the regulation of grape developmental and growth processes. The bioinformatics analysis confirmed the differential expression of GA2, GA3, and GA20 gibberellin oxidase genes (<i>VvGA2oxs</i>, <i>VvGA3oxs,</i> and <i>VvGA20oxs</i>) in the grape genome, and laid a theoretical basis for exploring its role in grape. Based on the Arabidopsis <i>GA2oxs</i>, <i>GA3oxs</i>, and <i>GA20oxs</i> genes already reported, the <i>VvGA2oxs</i>, <i>VvGA3oxs</i>, and <i>VvGA20oxs</i> genes in the grape genome were identified using the BLAST software in the grape genome database. Bioinformatics analysis was performed using software such as DNAMAN v.5.0, Clustalx, MapGene2Chrom, MEME, GSDS v.2.0, ExPASy, DNAsp v.5.0, and MEGA v.7.0. Chip expression profiles were generated using grape Affymetrix GeneChip 16K and Grape eFP Browser gene chip data in PLEXdb. The expression of <i>VvGA2oxs</i>, <i>VvGA3oxs</i>, and <i>VvGA20oxs</i> gene families in stress was examined by qRT-PCR (Quantitative real-time-PCR). There are 24 <i>GAoxs</i> genes identified with the grape genome that can be classified into seven subgroups based on a phylogenetic tree, gene structures, and conserved Motifs in our research. The gene family has higher codon preference, while selectivity is negative selection of codon bias and selective stress was analyzed. The expression profiles indicated that the most of <i>VvGAox</i> genes were highly expressed under different time lengths of ABA (Abscisic Acid) treatment, NaCl, PEG and 5 &#176;C. Tissue expression analysis showed that the expression levels of <i>VvGA2oxs</i> and <i>VvGA20oxs</i> in different tissues at different developmental stages of grapes were relatively higher than that of <i>VvGA3oxs</i>. Last but not least, qRT-PCR (Real-time fluorescent quantitative PCR) was used to determine the relative expression of the <i>GAoxs</i> gene family under the treatment of GA3 (gibberellin 3) and uniconazole, which can find that some <i>VvGA2oxs</i> was upregulated under GA3 treatment. Simultaneously, some <i>VvGA3oxs</i> and <i>VvGA20oxs</i> were upregulated under uniconazole treatment. In a nutshell, the <i>GA2ox</i> gene mainly functions to inactivate biologically active GAs, while <i>GA20ox</i> mainly degrades C20 gibberellins, and <i>GA3ox</i> is mainly composed of biologically active GAs. The comprehensive analysis of the three classes of <i>VvGAoxs</i> would provide a basis for understanding the evolution and function of the <i>VvGAox</i> gene family in a grape plant.https://www.mdpi.com/2073-4425/10/9/680GrapeGibberellin oxidasegene family identificationcodon biasGene duplicationAbiotic stressqRT-PCR
collection DOAJ
language English
format Article
sources DOAJ
author Honghong He
Guoping Liang
Shixiong Lu
Pingping Wang
Tao Liu
Zonghuan Ma
Cunwu Zuo
Xiaomei Sun
Baihong Chen
Juan Mao
spellingShingle Honghong He
Guoping Liang
Shixiong Lu
Pingping Wang
Tao Liu
Zonghuan Ma
Cunwu Zuo
Xiaomei Sun
Baihong Chen
Juan Mao
Genome-Wide Identification and Expression Analysis of GA2ox, GA3ox, and GA20ox Are Related to Gibberellin Oxidase Genes in Grape (<i>Vitis</i> <i>vinifera</i> L.)
Genes
Grape
Gibberellin oxidase
gene family identification
codon bias
Gene duplication
Abiotic stress
qRT-PCR
author_facet Honghong He
Guoping Liang
Shixiong Lu
Pingping Wang
Tao Liu
Zonghuan Ma
Cunwu Zuo
Xiaomei Sun
Baihong Chen
Juan Mao
author_sort Honghong He
title Genome-Wide Identification and Expression Analysis of GA2ox, GA3ox, and GA20ox Are Related to Gibberellin Oxidase Genes in Grape (<i>Vitis</i> <i>vinifera</i> L.)
title_short Genome-Wide Identification and Expression Analysis of GA2ox, GA3ox, and GA20ox Are Related to Gibberellin Oxidase Genes in Grape (<i>Vitis</i> <i>vinifera</i> L.)
title_full Genome-Wide Identification and Expression Analysis of GA2ox, GA3ox, and GA20ox Are Related to Gibberellin Oxidase Genes in Grape (<i>Vitis</i> <i>vinifera</i> L.)
title_fullStr Genome-Wide Identification and Expression Analysis of GA2ox, GA3ox, and GA20ox Are Related to Gibberellin Oxidase Genes in Grape (<i>Vitis</i> <i>vinifera</i> L.)
title_full_unstemmed Genome-Wide Identification and Expression Analysis of GA2ox, GA3ox, and GA20ox Are Related to Gibberellin Oxidase Genes in Grape (<i>Vitis</i> <i>vinifera</i> L.)
title_sort genome-wide identification and expression analysis of ga2ox, ga3ox, and ga20ox are related to gibberellin oxidase genes in grape (<i>vitis</i> <i>vinifera</i> l.)
publisher MDPI AG
series Genes
issn 2073-4425
publishDate 2019-09-01
description Gibberellin (GAs) plays the important role in the regulation of grape developmental and growth processes. The bioinformatics analysis confirmed the differential expression of GA2, GA3, and GA20 gibberellin oxidase genes (<i>VvGA2oxs</i>, <i>VvGA3oxs,</i> and <i>VvGA20oxs</i>) in the grape genome, and laid a theoretical basis for exploring its role in grape. Based on the Arabidopsis <i>GA2oxs</i>, <i>GA3oxs</i>, and <i>GA20oxs</i> genes already reported, the <i>VvGA2oxs</i>, <i>VvGA3oxs</i>, and <i>VvGA20oxs</i> genes in the grape genome were identified using the BLAST software in the grape genome database. Bioinformatics analysis was performed using software such as DNAMAN v.5.0, Clustalx, MapGene2Chrom, MEME, GSDS v.2.0, ExPASy, DNAsp v.5.0, and MEGA v.7.0. Chip expression profiles were generated using grape Affymetrix GeneChip 16K and Grape eFP Browser gene chip data in PLEXdb. The expression of <i>VvGA2oxs</i>, <i>VvGA3oxs</i>, and <i>VvGA20oxs</i> gene families in stress was examined by qRT-PCR (Quantitative real-time-PCR). There are 24 <i>GAoxs</i> genes identified with the grape genome that can be classified into seven subgroups based on a phylogenetic tree, gene structures, and conserved Motifs in our research. The gene family has higher codon preference, while selectivity is negative selection of codon bias and selective stress was analyzed. The expression profiles indicated that the most of <i>VvGAox</i> genes were highly expressed under different time lengths of ABA (Abscisic Acid) treatment, NaCl, PEG and 5 &#176;C. Tissue expression analysis showed that the expression levels of <i>VvGA2oxs</i> and <i>VvGA20oxs</i> in different tissues at different developmental stages of grapes were relatively higher than that of <i>VvGA3oxs</i>. Last but not least, qRT-PCR (Real-time fluorescent quantitative PCR) was used to determine the relative expression of the <i>GAoxs</i> gene family under the treatment of GA3 (gibberellin 3) and uniconazole, which can find that some <i>VvGA2oxs</i> was upregulated under GA3 treatment. Simultaneously, some <i>VvGA3oxs</i> and <i>VvGA20oxs</i> were upregulated under uniconazole treatment. In a nutshell, the <i>GA2ox</i> gene mainly functions to inactivate biologically active GAs, while <i>GA20ox</i> mainly degrades C20 gibberellins, and <i>GA3ox</i> is mainly composed of biologically active GAs. The comprehensive analysis of the three classes of <i>VvGAoxs</i> would provide a basis for understanding the evolution and function of the <i>VvGAox</i> gene family in a grape plant.
topic Grape
Gibberellin oxidase
gene family identification
codon bias
Gene duplication
Abiotic stress
qRT-PCR
url https://www.mdpi.com/2073-4425/10/9/680
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