Comparative Transcriptomics of Root Development in Wild and Cultivated Carrots.

PISSN
2073-4425
Publication Dbxref
PMID:30149572
Title
Comparative Transcriptomics of Root Development in Wild and Cultivated Carrots.
Publication Type
Journal Article
Series Name
Genes
Volume
9
Publication Year
2018
Issue
9
DOI
10.3390/genes9090431
Journal Abbreviation
Genes (Basel)
Publication Date
2018 Aug 24
Citation
Machaj G, Bostan H, Macko-Podgórni A, Iorizzo M, Grzebelus D. Comparative Transcriptomics of Root Development in Wild and Cultivated Carrots.. Genes. 2018 Aug 24; 9(9).
ISSN
2073-4425
Language Abbr
eng
Publication Model
Electronic
Authors
Machaj G, Bostan H, Macko-Podgórni A, Iorizzo M, Grzebelus D
Language
English
Elocation
10.3390/genes9090431
Journal Country
Switzerland
Abstract

The carrot is the most popular root vegetable worldwide. The genetic makeup underlying the development of the edible storage root are fragmentary. Here, we report the first comparative transcriptome analysis between wild and cultivated carrot roots at multiple developmental stages. Overall, 3285, 4637, and 570 genes were differentially expressed in the cultivated carrot in comparisons made for young plants versus developing roots, young plants versus mature roots, and developing roots versus mature roots, respectively. Of those, 1916, 2645, and 475, respectively, were retained after filtering out genes showing similar profiles of expression in the wild carrot. They were assumed to be of special interest with respect to the development of the storage root. Among them, transcription factors and genes encoding proteins involved in post-translational modifications (signal transduction and ubiquitination) were mostly upregulated, while those involved in redox signaling were mostly downregulated. Also, genes encoding proteins regulating cell cycle, involved in cell divisions, development of vascular tissue, water transport, and sugar metabolism were enriched in the upregulated clusters. Genes encoding components of photosystem I and II, together with genes involved in carotenoid biosynthesis, were upregulated in the cultivated roots, as opposed to the wild roots; however, they were largely downregulated in the mature storage root, as compared with the young and developing root. The experiment produced robust resources for future investigations on the regulation of storage root formation in carrot and Apiaceae.

PII
E431
Database Reference Annotations
Is Obsolete
False