VvmiR160s/VvARFs interaction and their spatio-temporal expression/cleavage products during GA-induced grape parthenocarpy

Abstract Background Grape (Vitis vinifera) is highly sensitive to gibberellin (GA), which effectively induce grape parthenocarpy. Studies showed that miR160s and their target AUXIN RESPONSIVE FACTOR (ARF) responding hormones are indispensable for various aspects of plant growth and development, but...

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Main Authors: Wenying Zhang, Mostafa Abdelrahman, Songtao Jiu, Le Guan, Jian Han, Ting Zheng, Haifeng Jia, Changnian Song, Jinggui Fang, Chen Wang
Format: Article
Language:English
Published: BMC 2019-03-01
Series:BMC Plant Biology
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12870-019-1719-9
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spelling doaj-b9d1fd8dcdba4448a22cbec681230d062020-11-25T02:17:51ZengBMCBMC Plant Biology1471-22292019-03-0119112210.1186/s12870-019-1719-9VvmiR160s/VvARFs interaction and their spatio-temporal expression/cleavage products during GA-induced grape parthenocarpyWenying Zhang0Mostafa Abdelrahman1Songtao Jiu2Le Guan3Jian Han4Ting Zheng5Haifeng Jia6Changnian Song7Jinggui Fang8Chen Wang9College of Horticulture, Nanjing Agricultural UniversityDepartment of Botany, Faculty of Sciences, Aswan UniversityDepartment of Plant Science, School of Agriculture and Biology, Shanghai Jiao Tong UniversityCollege of Horticulture, Nanjing Agricultural UniversityCollege of Horticulture, Nanjing Agricultural UniversityCollege of Horticulture, Nanjing Agricultural UniversityCollege of Horticulture, Nanjing Agricultural UniversityCollege of Horticulture, Nanjing Agricultural UniversityCollege of Horticulture, Nanjing Agricultural UniversityCollege of Horticulture, Nanjing Agricultural UniversityAbstract Background Grape (Vitis vinifera) is highly sensitive to gibberellin (GA), which effectively induce grape parthenocarpy. Studies showed that miR160s and their target AUXIN RESPONSIVE FACTOR (ARF) responding hormones are indispensable for various aspects of plant growth and development, but their functions in GA-induced grape parthenocarpy remain elusive. Results In this study, the morphological changes during flower development in response to GA treatments were examined in the ‘Rosario Bianco’ cultivar. The precise sequences of VvmiR160a/b/c/d/e and their VvARF10/16/17 target genes were cloned, sequenced and characterized. The phylogenetic relationship and intron-exon structure of VvARFs and other ARF family members derived from different species were investigated. All VvmiR160s (except VvmiR160b) and VvARF10/16/17 had the common cis-elements responsive to GA, which support their function in GA-mediated grape parthenocarpy. The cleavage role of VvmiR160s-mediated VvARF10/16/17 was verified in grape flowers. Moreover, spatio-temporal expression analysis demonstrated that among VvmiR160 family, VvmiR160a/b/c highly expressed at late stage of flower/berry development, while VvARF10/16/17showed a reverse expression trend. Interestingly, GA exhibited a long-term effect through inducing the expression of VvmiR160a/b/c/e to increase their cleavage product accumulations from 5 to 9 days after treatment, but GA enhanced the expressions of VvARF10/16/17 only at short term. Pearson correlation analysis based on expression data revealed a negative correlation between VvmiR160a/b/c and VvARF10/16/17 in flowers not berries during GA-induced grape parthenocarpy. Conclusions This work demonstrated that the negative regulation of VvARF10/16/17 expression by VvmiR160a/b/c as key regulatory factors is critical for GA-mediated grape parthenocarpy, and provide significant implications for molecular breeding of high-quality seedless berry.http://link.springer.com/article/10.1186/s12870-019-1719-9VvmiR160sVvARFsGrapeFlowerGibberellinParthenocarpy
collection DOAJ
language English
format Article
sources DOAJ
author Wenying Zhang
Mostafa Abdelrahman
Songtao Jiu
Le Guan
Jian Han
Ting Zheng
Haifeng Jia
Changnian Song
Jinggui Fang
Chen Wang
spellingShingle Wenying Zhang
Mostafa Abdelrahman
Songtao Jiu
Le Guan
Jian Han
Ting Zheng
Haifeng Jia
Changnian Song
Jinggui Fang
Chen Wang
VvmiR160s/VvARFs interaction and their spatio-temporal expression/cleavage products during GA-induced grape parthenocarpy
BMC Plant Biology
VvmiR160s
VvARFs
Grape
Flower
Gibberellin
Parthenocarpy
author_facet Wenying Zhang
Mostafa Abdelrahman
Songtao Jiu
Le Guan
Jian Han
Ting Zheng
Haifeng Jia
Changnian Song
Jinggui Fang
Chen Wang
author_sort Wenying Zhang
title VvmiR160s/VvARFs interaction and their spatio-temporal expression/cleavage products during GA-induced grape parthenocarpy
title_short VvmiR160s/VvARFs interaction and their spatio-temporal expression/cleavage products during GA-induced grape parthenocarpy
title_full VvmiR160s/VvARFs interaction and their spatio-temporal expression/cleavage products during GA-induced grape parthenocarpy
title_fullStr VvmiR160s/VvARFs interaction and their spatio-temporal expression/cleavage products during GA-induced grape parthenocarpy
title_full_unstemmed VvmiR160s/VvARFs interaction and their spatio-temporal expression/cleavage products during GA-induced grape parthenocarpy
title_sort vvmir160s/vvarfs interaction and their spatio-temporal expression/cleavage products during ga-induced grape parthenocarpy
publisher BMC
series BMC Plant Biology
issn 1471-2229
publishDate 2019-03-01
description Abstract Background Grape (Vitis vinifera) is highly sensitive to gibberellin (GA), which effectively induce grape parthenocarpy. Studies showed that miR160s and their target AUXIN RESPONSIVE FACTOR (ARF) responding hormones are indispensable for various aspects of plant growth and development, but their functions in GA-induced grape parthenocarpy remain elusive. Results In this study, the morphological changes during flower development in response to GA treatments were examined in the ‘Rosario Bianco’ cultivar. The precise sequences of VvmiR160a/b/c/d/e and their VvARF10/16/17 target genes were cloned, sequenced and characterized. The phylogenetic relationship and intron-exon structure of VvARFs and other ARF family members derived from different species were investigated. All VvmiR160s (except VvmiR160b) and VvARF10/16/17 had the common cis-elements responsive to GA, which support their function in GA-mediated grape parthenocarpy. The cleavage role of VvmiR160s-mediated VvARF10/16/17 was verified in grape flowers. Moreover, spatio-temporal expression analysis demonstrated that among VvmiR160 family, VvmiR160a/b/c highly expressed at late stage of flower/berry development, while VvARF10/16/17showed a reverse expression trend. Interestingly, GA exhibited a long-term effect through inducing the expression of VvmiR160a/b/c/e to increase their cleavage product accumulations from 5 to 9 days after treatment, but GA enhanced the expressions of VvARF10/16/17 only at short term. Pearson correlation analysis based on expression data revealed a negative correlation between VvmiR160a/b/c and VvARF10/16/17 in flowers not berries during GA-induced grape parthenocarpy. Conclusions This work demonstrated that the negative regulation of VvARF10/16/17 expression by VvmiR160a/b/c as key regulatory factors is critical for GA-mediated grape parthenocarpy, and provide significant implications for molecular breeding of high-quality seedless berry.
topic VvmiR160s
VvARFs
Grape
Flower
Gibberellin
Parthenocarpy
url http://link.springer.com/article/10.1186/s12870-019-1719-9
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