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Jozwiak, A.

Publications and source records attributed to Jozwiak, A..

2 recordsLinked to original sources

Quinoa produces an insect molting hormone through a plant biosynthetic gene cluster

The steroid hormone 20-hydroxyecdysone (20E) controls molting and metamorphosis in arthropods, yet it also accumulates in plants, where its biosynthesis has remained unknown. We show that quinoa (Chenopodium quinoa) produces 20E through a seven-gene biosynthetic cluster encoding five cytochrome P450s, a fatty acid hydroxylase-like enzyme (FAH), and a 2-oxoglutarate-dependent dioxygenase (2OGD). Distinct mutant alleles, complementation crosses, and chemical rescue established FAH as essential for pathway entry, whereas natural accessions carrying a large cluster deletion lacked 20E and all detectable intermediates. Heterologous reconstruction in Nicotiana benthamiana demonstrated that the cluster is sufficient to convert lathosterol to 20E through an unusual FAH-catalyzed C6 oxidation and 2OGD-mediated C5 epimerization. Plants and arthropods therefore evolved distinct enzymatic routes to the same molecule. This pathway provides a blueprint for engineering 20E and defining its broader ecological functions.

plant biology↗

Resolving Phytophthora α2 hormone biosynthesis reveals species-specific mechanisms for mating type regulation

Sexual reproduction by heterothallic species of Phytophthora involves communication between its two mating types by diterpenoid hormones derived from plant phytol. The genetics of mating type determination have remained unknown. We identified a conserved gene cluster that links mating identity to 2 hormone biosynthesis. Functional perturbation in P. infestans and pathway reconstruction in yeast showed that a cytochrome P450 in the cluster performs a mating type-specific step in hormone production. Comparative analyses revealed that the hormonal system is implemented through distinct genetic mechanisms in different species, including mating type-specific transcription in P. infestans and hemizygous inheritance in P. capsici. In self-fertile species the cluster is often eroded. These findings reveal a genetic basis for mating type and how conserved signaling systems can be evolutionarily remodeled.

microbiology↗