Endogenous Auxin Content Contributes to Larger Size of Apple Fruit

Fruit size is an important economic trait that is controlled by multiple genes. However, the regulatory mechanism for fruit size remains poorly understood. A bud sport variety of “Longfeng” (LF) apple ( Malus domestica ) was identified and named “Grand Longfeng” (GLF). The fruit size of GLF is large...

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Published inFrontiers in plant science Vol. 11; p. 592540
Main Authors Bu, Haidong, Yu, Wenquan, Yuan, Hui, Yue, Pengtao, Wei, Yun, Wang, Aide
Format Journal Article
LanguageEnglish
Published Switzerland Frontiers Media S.A 03.12.2020
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Summary:Fruit size is an important economic trait that is controlled by multiple genes. However, the regulatory mechanism for fruit size remains poorly understood. A bud sport variety of “Longfeng” (LF) apple ( Malus domestica ) was identified and named “Grand Longfeng” (GLF). The fruit size of GLF is larger than that of LF, and both varieties are diploid. We found that the cell size in GLF fruit was larger than that of LF. Then, we compared the fruit transcriptomes of the two varieties using RNA-Seq technology. A total of 1166 differentially expressed genes (DEGs) were detected between GLF and LF fruits. The KEGG analysis revealed that the phytohormone pathway was the most enriched, in which most of the DEGs were related to auxin signaling. Moreover, the endogenous auxin levels of GLF fruit were higher than those of LF. The expressions of auxin synthetic genes, including MdTAR1 and MdYUCCA6 , were higher in GLF fruit than LF. Collectively, our findings suggest that auxin plays an important role in fruit size development.
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Edited by: Chunying Kang, Huazhong Agricultural University, China
This article was submitted to Plant Development and EvoDevo, a section of the journal Frontiers in Plant Science
Reviewed by: Chizuko Yamamuro, Fujian Agriculture and Forestry University, China; Anish Malladi, University of Georgia, United States
ISSN:1664-462X
1664-462X
DOI:10.3389/fpls.2020.592540