Proteome Landscape during Ripening of Solid Endosperm from Two Different Coconut Cultivars Reveals Contrasting Carbohydrate and Fatty Acid Metabolic Pathway Modulation

Author:

Félix Jean Wildort1ORCID,Granados-Alegría María Inés1ORCID,Gómez-Tah Rufino2ORCID,Tzec-Simá Miguel1ORCID,Ruíz-May Eliel3ORCID,Canto-Canché Blondy2ORCID,Zamora-Briseño Jesús Alejandro3ORCID,Bojórquez-Velázquez Esaú3ORCID,Oropeza-Salín Carlos2,Islas-Flores Ignacio1ORCID

Affiliation:

1. Unidad de Bioquímica y Biología Molecular de Plantas, Centro de Investigación Científica de Yucatán, A.C., Calle 43 No. 130 x 32 y 34, Chuburná de Hidalgo, Mérida C.P. 97205, Yucatán, Mexico

2. Unidad de Biotecnología, Centro de Investigación Científica de Yucatán, A.C., Calle 43 No. 130 x 32 y 34, Chuburná de Hidalgo, Mérida C.P. 97205, Yucatán, Mexico

3. Red de Estudios Moleculares Avanzados, Instituto de Ecología, A.C., Carretera antigua a Coatepec 351, Colonia El Haya, Xalapa C.P. 91073, Veracruz, Mexico

Abstract

Cocos nucifera L. is a crop grown in the humid tropics. It is grouped into two classes of varieties: dwarf and tall; regardless of the variety, the endosperm of the coconut accumulates carbohydrates in the early stages of maturation and fatty acids in the later stages, although the biochemical factors that determine such behavior remain unknown. We used tandem mass tagging with synchronous precursor selection (TMT-SPS-MS3) to analyze the proteomes of solid endosperms from Yucatan green dwarf (YGD) and Mexican pacific tall (MPT) coconut cultivars. The analysis was conducted at immature, intermediate, and mature development stages to better understand the regulation of carbohydrate and lipid metabolisms. Proteomic analyses showed 244 proteins in YGD and 347 in MPT; from these, 155 proteins were shared between both cultivars. Furthermore, the proteomes related to glycolysis, photosynthesis, and gluconeogenesis, and those associated with the biosynthesis and elongation of fatty acids, were up-accumulated in the solid endosperm of MPT, while in YGD, they were down-accumulated. These results support that carbohydrate and fatty acid metabolisms differ among the developmental stages of the solid endosperm and between the dwarf and tall cultivars. This is the first proteomics study comparing different stages of maturity in two contrasting coconut cultivars and may help in understanding the maturity process in other palms.

Funder

Consejo Nacional de Humanidades, Ciencias y Tecnologías (CONAHCyT), México

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference82 articles.

1. Rajesh, M.K., Ramesh, S.V., Perera, L., and Kole, C. (2021). The Coconut Genome, Springer International Publishing. Compendium of Plant Genomes.

2. Authenticity and the Potability of Coconut Water—A Critical Review;Burns;J. AOAC Int.,2020

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4. Genetic Variations for “Nam Hom” Coconut (Cocos nucifera L.) Grownin the Western Region of Thailand Using AFLP Markers;Nartvaranant;J. Thai Interdiscip. Res.,2019

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