Isolation of Cells Specialized in Anticancer Alkaloid Metabolism by Fluorescence-Activated Cell Sorting
Author(s) -
Inês Carqueijeiro,
Ana Luísa Guimarães,
Sara Bettencourt,
Teresa Martínez-Cortés,
Joana G. Guedes,
Rui Gardner,
Telma Lopes,
Claúdia Andrade,
Cláudia Bispo,
Nuno Pimpão Martins,
Paula B. Andrade,
Patrı́cia Valentão,
Inês M. Valente,
José A. Rodrigues,
Patrícia Duarte,
Mariana Sottomayor
Publication year - 2016
Publication title -
plant physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.554
H-Index - 312
eISSN - 1532-2548
pISSN - 0032-0889
DOI - 10.1104/pp.16.01028
Subject(s) - catharanthus roseus , cell sorting , biology , biochemistry , secondary metabolism , plant cell , biosynthesis , indole alkaloid , alkaloid , microbiology and biotechnology , cell , indole test , gene , botany
Plant specialized metabolism often presents a complex cell-specific compartmentation essential to accomplish the biosynthesis of valuable plant natural products. Hence, the disclosure and potential manipulation of such pathways may depend on the capacity to isolate and characterize specific cell types. Catharanthus roseus is the source of several medicinal terpenoid indole alkaloids, including the low-level anticancer vinblastine and vincristine, for which the late biosynthetic steps occur in specialized mesophyll cells called idioblasts. Here, the optical, fluorescence, and alkaloid-accumulating properties of C. roseus leaf idioblasts are characterized, and a methodology for the isolation of idioblast protoplasts by fluorescence-activated cell sorting is established, taking advantage of the distinctive autofluorescence of these cells. This achievement represents a crucial step for the development of differential omic strategies leading to the identification of candidate genes putatively involved in the biosynthesis, pathway regulation, and transmembrane transport leading to the anticancer alkaloids from C. roseus.
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