Developmental stages and episode-specific regulatory genes in andromonoecious melon flower development

Author:

Pechar Giuliano S1,Sánchez-Pina M Amelia1,Coronado-Parra Teresa2,Bretó Pau3,García-Almodóvar Roque Carlos3,Liu Lifeng4,Aranda Miguel A1,Donaire Livia13ORCID

Affiliation:

1. Centro de Edafología y Biología Aplicada del Segura (CEBAS)-CSIC, Department of Stress Biology and Plant Pathology , PO Box 164, 30100 Espinardo, Murcia , Spain

2. Microscopy Core Facility, Área Científica y Técnica de Investigación, Universidad de Murcia, PO Box 164 , 30100 Espinardo, Murcia , Spain

3. Abiopep S.L., R&D Department , Parque Científico de Murcia, Ctra. de Madrid, Km 388, Complejo de Espinardo, Edf. R, 2º, 30100 Espinardo, Murcia , Spain

4. Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences (CAAS), Zhengzhou 450009 , Henan , China

Abstract

Abstract Background and Aims Given the lack of specific studies on floral development in melon (Cucumis melo L.), we carried out an extensive study involving morphological and transcriptomic analyses to characterize floral development in this species. Methods Using an andromonoecious line, we analysed the development of floral buds in male and hermaphrodite flowers with both light microscopy and scanning electron microscopy. Based on flower lengths, we established a correlation between the developmental stages and four main episodes of floral development and conducted an extensive RNA sequencing analysis of these episodes. Key Results We identified 12 stages of floral development, from the appearance of the floral meristems to anthesis. The main structural differences between male and hermaphrodite flowers appeared between stages 6 and 7; later stages of development leading to the formation of organs and structures in both types of flowers were also described. We analysed the gene expression patterns of the four episodes in flower development to find the genes that were specific to each given episode. Among others, we identified genes that defined the passage from one episode to the next according to the ABCDE model of floral development. Conclusions This work combines a detailed morphological analysis and a comprehensive transcriptomic study to enable characterization of the structural and molecular mechanisms that determine the floral development of an andromonoecious genotype in melon. Taken together, our results provide a first insight into gene regulation networks in melon floral development that are crucial for flowering and pollen formation, highlighting potential targets for genetic manipulation to improve crop yield of melon in the future.

Funder

Ministerio de Ciencia e Innovación

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Plant Science

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