4.7 Article

Ethephon Activates the Transcription of Senescence-Associated Genes and Nitrogen Mobilization in Grapevine Leaves (Vitis vinifera cv. Riesling)

期刊

PLANTS-BASEL
卷 10, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/plants10020333

关键词

ethylene; transcriptome; leaf senescence; stress response

资金

  1. German Research Foundation (Deutsche Forschungsgemeinschaft DFG) [432888308-and]
  2. Open Access Publishing Fund of Geisenheim University

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The study focused on the impact of ethylene on nitrogen mobilization during leaf senescence in grapevines, revealing significant changes in metabolomic processes and amino acid composition, leading to a decrease in leaf nitrogen content. This offers potential for targeted induction of senescence and improvement in nitrogen supply for grapes through ethylene treatment.
Nitrogen (N) remobilization in the context of leaf senescence is of considerable importance for the viability of perennial plants. In late-ripening crops, such as Vitis vinifera, it may also affect berry ripening and fruit quality. Numerous studies on the model plant Arabidopsis thaliana have confirmed an involvement of the plant hormone ethylene in the regulation of senescence. However, ethylene research on grapevine was mostly focused on its involvement in berry ripening and stress tolerance until now. To investigate the effect of ethylene on the initiation, regulation, and progress of senescence-dependent N mobilization in grapevine leaves, we treated field-grown Vitis vinifera cv. Riesling vines with 25 mM ethephon at the end of berry ripening. Ethephon induced premature chlorophyll degradation and caused a shift of the leaf transcriptome equivalent to developmental leaf senescence. The upregulated metabolic processes covered the entire N remobilization process chain, altered the amino acid composition in the leaves, and resulted in an average 60% decrease in leaf N. Our findings increase the fundamental knowledge about the initiation and manipulation of leaf N remobilization in perennial woody plants by ethephon. This offers a methodological approach to the targeted induction of senescence and thus to an improvement in the N supply of grapes.

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