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Identification of the VvmiR164s-VvNAC100 Action Module and Analysis of Their Expressions Responsive to Exogenous GA During Grape Ovary Development
Scientia Agricultura Sinica 2023, 56(10): 1966-1981
Published: 16 May 2023
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【Objective】

The aim of this study was to identify grapevine miR164s (VvmiR164a/b/c/d) and their target genes, and to elucidate the regulatory roles of VvmiR164s and their target genes during exogenous GA-induced grape parthenocarpic process.

【Method】

Using ‘Wink’ grapes (Vitis vinifera L. Wink) as the test material, miR-RACE, PCR, RLM-RACE and PPM-RACE, qRT-PCR and bioinformatics were used to analyze the spatio-temporal expression of VvmiR164s-VvNAC100 module in response to exogenous GA and its potential functions during grape parthenocarpic process.

【Result】

Gibberellin application on ‘Wink’ grapes before flowering induced parthenocarpy, leading to seedless berries. The precise sequence of VvmiR164a/b/c/d was cloned and identified, and four of its target genes were predicted, including VvNAC100-1, VvNAC100-2, VvNAC098, and VvNAC021. Combining the degree of match with the comprehensive analysis of the previous data, this work focused on the analysis of the target gene VvNAC100-2, which was named as VvNAC100. The VvNAC100 cleavage site was located at position 9 and position 11 of the 5′ end of miRNA, with a cleavage frequency of 17/20 and 11/20, respectively, and was localized on Chr14, encoding 363 amino acids and containing a NAM. The VvNAC100 protein is highly conserved in amino acid sequence and functionally similar to other species, among which it is more closely related to species such as pepper and tobacco. The promoters of VvMIR164a/b/c/d and its target gene VvNAC100 both contain multiple hormone-acting elements, suggesting that it might be involved in the regulation of grape growth and development by responding to mult-hormones. The RT-qPCR results showed that the expression level of VvmiR164b tended to decrease as the grape ovary developed, while its target gene VvNAC100 showed an increasing expression trend in the early stage of ovary development with a certain negative correlation. On the other hand, VvmiR164a/c/d showed a similar expression pattern with VvNAC100 with a certain positive correlation. However, after GA treatment, the expression of VvmiR164a/c/d was highly significantly increased during parthenocarpy in the grape ovary, which also significantly suppressed the expression of VvNAC100 during this period, promoting a negative correlation between VvmiR164a/c/d-VvNAC100 their expression levels. VvmiR164b showed a decreasing trend after GA treatment, and it’s the expression levels showed some positive correlation with those of VvNAC100, indicating that GA treatment promoted the negative regulation of VvmiR164a/c/d on VvNAC100, but repressed the negative regulation of VvmiR164b on VvNAC100.

【Conclusion】

VvNAC100 was the true target gene of VvmiR164 family. During grape parthenocarpy, GA induced the negative regulation of VvmiR164a/c/d on the target gene VvNAC100 and suppressed that of VvmiR164b on the target gene VvNAC100. VvmiR164a/c/d were the main effectors of the VvmiR164 family involved in modulation of GA-induced grape parthenocarpy.

Open Access Research paper Issue
Competitive network of polyamines metabolic and ethylene biosynthesis pathways during gibberellin-induced parthenocarpic grape fruit setting
Horticultural Plant Journal 2025, 11(3): 1048-1065
Published: 02 November 2024
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Polyamines (PAs) and ethylene are involved in the modulation of plant growth and development. However, their roles in fruit-set, especially in exogenous gibberellin (GA3)-induced grape parthenocarpic berries, and the related competitive action mode are poorly understood. For this, we, here performed their content determination, bioinformatics and expression pattern analysis of genes to identify the key ones in the competitive network of polyamines metabolic and ethylene biosynthesis (PMEB) pathways. The content of putrescine (Put) significantly increased; while 1-aminocyclopropanecarboxylic acid (ACC) sharply decreased during the fruit-set process of GA3-induced grape parthenocarpic seedless berries. Totally, twenty-five genes in PMEB pathways, including 20 polyamines metabolic (PM) genes and 5 ethylene biosynthesis (EB) ones were identified in grape, of which 8 PM and 2 EB genes possessed the motifs responsive to phytohormone GA. The expression levels of most PMEB genes kept changing during grape fruit-set generating a competitive action mode of GA3-mediated two metabolic fluxes toward PAs and ethylene synthesis. Exogenous GA3 might enhance grape fruit-set of parthenocarpic berries via up-regulation of VvSAMS4, VvSAMDC1/2, VvODC1, VvSPDS1, and VvPAO1 to promote PAs accumulation, whereby repressing the ethylene synthesis by down-regulation of VvACS1 and VvACO2. Our findings provide novel insights into GA3-mediated competitive inhibition of ethylene by PAs to promote the fruit-set of parthenocarpic berries in grape, which has important implications for molecular breeding of seedless grape with high fruit-setting rate.

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