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Updated: May 28, 2026

Generating Homo- and Heterografts Between Watermelon and Bottle Gourd for the Study of Cold-responsive MicroRNAs
Published on: November 20, 2018
Grafting Modulates Bottle Gourd Flavor via WRKY23-GS1 and PHR1-ALMT8 Pathways
Ying Wang1, Linying Li2, Xiaohua Wu1
1State Key Laboratory for Quality and Safety of Agro-Products, Key Laboratory of Vegetable Germplasm Innovation and Quality Breeding in the Province, Institute of Vegetables, Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China.
Abstract:
Grafting in Cucurbitaceae is known to enhance agronomical traits; however, its impact on the underlying fruit flavor quality remains elusive. This study elucidates the biochemical and molecular mechanisms by which pumpkin rootstock alters the content of flavor-related compounds in bottle gourd fruit, conferring Fusarium wilt resistance and increased yield. Sensory-related metabolites were significantly impacted: grafted fruits exhibited increased glutamate content and elevated accumulation of malic and oxalic acids. Mechanistically, grafting induced the LsWRKY23 expression to directly activate LsGS1, a key gene in glutamate biosynthesis. Concurrently, elevated fruit phosphorus levels in grafted plants inhibit LsPHR1 to downregulate the expression of LsALMT8, a malate transporter gene, thereby reducing organic acid exudation. These results delineate a dual regulatory pathway, involving the LsWRKY23-LsGS1 and LsPHR1-LsALMT8 modules through which grafting orchestrates key flavor attributes. This study provides novel insights into rootstock-scion-mediated modulation of fruit flavor chemistry and identifies potential metabolic engineering targets for Cucurbitaceae crop improvement.
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