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CYP722C from Gossypium arboreum catalyzes the conversion of carlactonoic acid to 5-deoxystrigol
by
Mizutani, Masaharu
, Kitano, Yurie
, Wakabayashi, Takatoshi
, Shida, Kasumi
, Takikawa, Hirosato
, Sugimoto, Yukihiro
in
Agriculture
/ Arbuscular mycorrhizas
/ Baculovirus
/ beta Carotene - metabolism
/ beta-carotene
/ Biomedical and Life Sciences
/ Biosynthesis
/ Carotene
/ catalytic activity
/ Chemical synthesis
/ Configurations
/ Cotton
/ Cowpeas
/ cytochrome P-450
/ Cytochrome P-450 Enzyme System - genetics
/ Cytochrome P-450 Enzyme System - metabolism
/ Cytochrome P450
/ Cytochromes P450
/ Direct conversion
/ Ecology
/ Enzymes
/ Forestry
/ Fungi
/ Gene expression
/ genes
/ Gossypium - enzymology
/ Gossypium - genetics
/ Gossypium - growth & development
/ Gossypium arboreum
/ growth and development
/ Heterocyclic Compounds, 3-Ring - metabolism
/ Homology
/ Insects
/ Lactones - chemistry
/ Lactones - metabolism
/ Life Sciences
/ Mass Spectrometry
/ mycorrhizal fungi
/ Parasitic plants
/ Phosphate starvation response
/ phosphates
/ Phosphates - deficiency
/ Phosphates - metabolism
/ Phytohormones
/ plant development
/ Plant growth
/ Plant Growth Regulators - metabolism
/ Plant hormones
/ Plant Proteins - genetics
/ Plant Proteins - metabolism
/ Plant Sciences
/ Rhizosphere
/ Short Communication
/ Solanum lycopersicum
/ starvation
/ strigolactones
/ Tomatoes
/ Vigna
/ β-Carotene
2020
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CYP722C from Gossypium arboreum catalyzes the conversion of carlactonoic acid to 5-deoxystrigol
by
Mizutani, Masaharu
, Kitano, Yurie
, Wakabayashi, Takatoshi
, Shida, Kasumi
, Takikawa, Hirosato
, Sugimoto, Yukihiro
in
Agriculture
/ Arbuscular mycorrhizas
/ Baculovirus
/ beta Carotene - metabolism
/ beta-carotene
/ Biomedical and Life Sciences
/ Biosynthesis
/ Carotene
/ catalytic activity
/ Chemical synthesis
/ Configurations
/ Cotton
/ Cowpeas
/ cytochrome P-450
/ Cytochrome P-450 Enzyme System - genetics
/ Cytochrome P-450 Enzyme System - metabolism
/ Cytochrome P450
/ Cytochromes P450
/ Direct conversion
/ Ecology
/ Enzymes
/ Forestry
/ Fungi
/ Gene expression
/ genes
/ Gossypium - enzymology
/ Gossypium - genetics
/ Gossypium - growth & development
/ Gossypium arboreum
/ growth and development
/ Heterocyclic Compounds, 3-Ring - metabolism
/ Homology
/ Insects
/ Lactones - chemistry
/ Lactones - metabolism
/ Life Sciences
/ Mass Spectrometry
/ mycorrhizal fungi
/ Parasitic plants
/ Phosphate starvation response
/ phosphates
/ Phosphates - deficiency
/ Phosphates - metabolism
/ Phytohormones
/ plant development
/ Plant growth
/ Plant Growth Regulators - metabolism
/ Plant hormones
/ Plant Proteins - genetics
/ Plant Proteins - metabolism
/ Plant Sciences
/ Rhizosphere
/ Short Communication
/ Solanum lycopersicum
/ starvation
/ strigolactones
/ Tomatoes
/ Vigna
/ β-Carotene
2020
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CYP722C from Gossypium arboreum catalyzes the conversion of carlactonoic acid to 5-deoxystrigol
by
Mizutani, Masaharu
, Kitano, Yurie
, Wakabayashi, Takatoshi
, Shida, Kasumi
, Takikawa, Hirosato
, Sugimoto, Yukihiro
in
Agriculture
/ Arbuscular mycorrhizas
/ Baculovirus
/ beta Carotene - metabolism
/ beta-carotene
/ Biomedical and Life Sciences
/ Biosynthesis
/ Carotene
/ catalytic activity
/ Chemical synthesis
/ Configurations
/ Cotton
/ Cowpeas
/ cytochrome P-450
/ Cytochrome P-450 Enzyme System - genetics
/ Cytochrome P-450 Enzyme System - metabolism
/ Cytochrome P450
/ Cytochromes P450
/ Direct conversion
/ Ecology
/ Enzymes
/ Forestry
/ Fungi
/ Gene expression
/ genes
/ Gossypium - enzymology
/ Gossypium - genetics
/ Gossypium - growth & development
/ Gossypium arboreum
/ growth and development
/ Heterocyclic Compounds, 3-Ring - metabolism
/ Homology
/ Insects
/ Lactones - chemistry
/ Lactones - metabolism
/ Life Sciences
/ Mass Spectrometry
/ mycorrhizal fungi
/ Parasitic plants
/ Phosphate starvation response
/ phosphates
/ Phosphates - deficiency
/ Phosphates - metabolism
/ Phytohormones
/ plant development
/ Plant growth
/ Plant Growth Regulators - metabolism
/ Plant hormones
/ Plant Proteins - genetics
/ Plant Proteins - metabolism
/ Plant Sciences
/ Rhizosphere
/ Short Communication
/ Solanum lycopersicum
/ starvation
/ strigolactones
/ Tomatoes
/ Vigna
/ β-Carotene
2020
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CYP722C from Gossypium arboreum catalyzes the conversion of carlactonoic acid to 5-deoxystrigol
Journal Article
CYP722C from Gossypium arboreum catalyzes the conversion of carlactonoic acid to 5-deoxystrigol
2020
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Overview
Main conclusion
CYP722C from cotton, a homolog of the enzyme involved in orobanchol synthesis in cowpea and tomato, catalyzes the conversion of carlactonoic acid to 5-deoxystrigol.
Strigolactones (SLs) are important phytohormones with roles in the regulation of plant growth and development. These compounds also function as signaling molecules in the rhizosphere by interacting with beneficial arbuscular mycorrhizal fungi and harmful root parasitic plants. Canonical SLs, such as 5-deoxystrigol (5DS), consist of a tricyclic lactone ring (ABC-ring) connected to a methylbutenolide (D-ring). Although it is known that 5DS biosynthesis begins with carlactonoic acid (CLA) derived from β-carotene, the enzyme that catalyzes the conversion of CLA remains elusive. Recently, we identified cytochrome P450 (CYP) CYP722C as the enzyme that catalyzes direct conversion of CLA to orobanchol in cowpea and tomato (Wakabayashi et al., Sci Adv 5:eaax9067, 2019). Orobanchol has a different C-ring configuration from that of 5DS. The present study aimed to characterize the homologous gene, designated
GaCYP722C,
from cotton (
Gossypium arboreum
) to examine whether this gene is involved in 5DS biosynthesis. Expression of
GaCYP722C
was upregulated under phosphate starvation, which is an SL-producing condition. Recombinant GaCYP722C was expressed in a baculovirus-insect cell expression system and was found to catalyze the conversion of CLA to 5DS but not to 4-deoxyorobanchol. These results strongly suggest that GaCYP722C from cotton is a 5DS synthase and that CYP722C is the crucial CYP subfamily involved in the generation of canonical SLs, irrespective of the different C-ring configurations.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V
Subject
/ Biomedical and Life Sciences
/ Carotene
/ Cotton
/ Cowpeas
/ Cytochrome P-450 Enzyme System - genetics
/ Cytochrome P-450 Enzyme System - metabolism
/ Ecology
/ Enzymes
/ Forestry
/ Fungi
/ genes
/ Gossypium - growth & development
/ Heterocyclic Compounds, 3-Ring - metabolism
/ Homology
/ Insects
/ Phosphate starvation response
/ Plant Growth Regulators - metabolism
/ Tomatoes
/ Vigna
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