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Article

Identification and Expression Analysis of Gretchen Hagen 3 (GH3) in Kiwifruit (Actinidia chinensis) During Postharvest Process

1
Jiangxi Key Laboratory for Postharvest Technology and Nondestructive Testing of Fruits & Vegetables, Collaborative Innovation Center of Postharvest Key Technology and Quality Safety of Fruits and Vegetables, Jiangxi Agricultural University, Nanchang 330045, China
2
College of Agronomy, Jiangxi Agricultural University, Nanchang 330045, China
3
Pingxiang University, Pingxiang 337055, China
*
Author to whom correspondence should be addressed.
Plants 2019, 8(11), 473; https://doi.org/10.3390/plants8110473
Submission received: 16 October 2019 / Revised: 26 October 2019 / Accepted: 5 November 2019 / Published: 6 November 2019
(This article belongs to the Section Plant Molecular Biology)

Abstract

In plants, the Gretchen GH3 (GH3) protein is involved in free auxin (IAA) and amino acid conjugation, thus controlling auxin homeostasis. To date, many GH3 gene families have been identified from different plant species. However, the GH3 gene family in kiwifruit (Actinidia chinensis) has not been reported. In this study, 12 AcGH3 genes were identified, phylogenetic analysis of AtGH3 (Arabidopsis), SlGH3 (Solanum lycopersicum), and AcGH3 provided insights into various orthologous relationships among these proteins, which were categorized into three groups. Expression analysis of AcGH3 genes at different postharvest stages suggested limited or no role for most of the AcGH3 genes at the initiation of fruit ripening. AcGH3.1 was the only gene exhibiting ripening-associated expression. Further study showed that the expression of AcGH3.1 gene was induced by NAA (1-naphthylacetic acid, auxin analogue) and inhibited by 1-MCP (1-methylcyclopropene, ethylene receptor inhibitor), respectively. AcGH3.1 gene silencing inhibited gene expression and delayed fruit softening in kiwifruit. The results indicate that AcGH3.1 may play an important role in the softening process of fruits. Analysis of the AcGH3.1 promoter revealed the presence of many cis-elements related to hormones, light, and drought. The determination of GUS (β-Galactosidase) enzyme activity revealed that promoter activity increased strikingly upon abscisic acid (ABA), ethylene, or NAA treatment, and significantly decreased with salicylic acid (SA) treatment. The present study could help in the identification of GH3 genes and revelation of AcGH3.1 gene function during postharvest stages, which pave the way for further functional verification of the AcGH3.1 gene.
Keywords: GH3 gene; kiwifruit; phylogenetic analysis; gene expression; promoter activity GH3 gene; kiwifruit; phylogenetic analysis; gene expression; promoter activity

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MDPI and ACS Style

Gan, Z.; Fei, L.; Shan, N.; Fu, Y.; Chen, J. Identification and Expression Analysis of Gretchen Hagen 3 (GH3) in Kiwifruit (Actinidia chinensis) During Postharvest Process. Plants 2019, 8, 473. https://doi.org/10.3390/plants8110473

AMA Style

Gan Z, Fei L, Shan N, Fu Y, Chen J. Identification and Expression Analysis of Gretchen Hagen 3 (GH3) in Kiwifruit (Actinidia chinensis) During Postharvest Process. Plants. 2019; 8(11):473. https://doi.org/10.3390/plants8110473

Chicago/Turabian Style

Gan, Zengyu, Liuying Fei, Nan Shan, Yongqi Fu, and Jinyin Chen. 2019. "Identification and Expression Analysis of Gretchen Hagen 3 (GH3) in Kiwifruit (Actinidia chinensis) During Postharvest Process" Plants 8, no. 11: 473. https://doi.org/10.3390/plants8110473

APA Style

Gan, Z., Fei, L., Shan, N., Fu, Y., & Chen, J. (2019). Identification and Expression Analysis of Gretchen Hagen 3 (GH3) in Kiwifruit (Actinidia chinensis) During Postharvest Process. Plants, 8(11), 473. https://doi.org/10.3390/plants8110473

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