Literature DB >> 34347458

Identification of Key Genes Controlling Carotenoid Metabolism during Apricot Fruit Development by Integrating Metabolic Phenotypes and Gene Expression Profiles.

Weiquan Zhou1, Shirong Zhao1, Min Xu1, Yingying Niu1, Mansur Nasier1, Guoquan Fan2, Shaowen Quan3, Shikui Zhang2, Yatong Wang2, Kang Liao1.   

Abstract

To explore the metabolic basis of carotenoid accumulation in different developmental periods of apricot fruits, targeted metabonomic and transcriptomic analyses were conducted in four developmental periods (S1-S4) in two cultivars (Prunus armeniaca cv. "Kuchebaixing" with white flesh and P. armeniaca cv. "Shushangganxing" with orange flesh) with different carotenoid contents. 14 types of carotenes and 27 types of carotene lipids were identified in apricot flesh in different developmental periods. In S3 and S4, the carotenoid contents of the two cultivars were significantly different, and β-carotene and (E/Z)-phytoene were the key metabolites that caused the difference in the total carotenoid content between the examined cultivars. Twenty-five structural genes (including genes in the methylerythritol 4-phosphate and carotenoid biosynthesis pathways) related to carotenoid biosynthesis were identified among the differentially expressed genes in different developmental periods of the two cultivars, and a carotenoid metabolic pathway map of apricot fruits was drawn according to the KEGG pathway map. The combined analysis of carotenoid metabolism data and transcriptome data showed that PSY, NCED1, and CCD4 were the key genes leading to the great differences in the total carotenoid content. The results provide a new approach to study the synthesis and accumulation of carotenoids in apricot fruits.

Entities:  

Keywords:  Apricot; DEGs; Flesh; carotenoids; targeted metabonomics; transcriptomics

Year:  2021        PMID: 34347458     DOI: 10.1021/acs.jafc.1c00496

Source DB:  PubMed          Journal:  J Agric Food Chem        ISSN: 0021-8561            Impact factor:   5.279


  5 in total

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5.  Comparative Transcriptome and Phytochemical Analysis Provides Insight into Triterpene Saponin Biosynthesis in Seeds and Flowers of the Tea Plant (Camellia sinensis).

Authors:  Cong Chen; Huanqing Zhu; Jiaxin Kang; Hasitha Kalhari Warusawitharana; Shuna Chen; Kaixi Wang; Fei Yu; Yuanyuan Wu; Puming He; Youying Tu; Bo Li
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  5 in total

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