Extremely Low Concentrations of Acetic Acid Stimulate Cell Differentiation in Rice Blast Fungus
Author(s) -
Misa Kuroki,
Yuriko Shiga,
Megumi NarukawaNara,
Takayuki Arazoe,
Takashi Kamakura
Publication year - 2019
Publication title -
iscience
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.805
H-Index - 27
ISSN - 2589-0042
DOI - 10.1016/j.isci.2019.100786
Subject(s) - fungus , acetic acid , chemistry , blast disease , botany , microbiology and biotechnology , biology , biochemistry , gene
Summary Metabolic switching and rewiring play a dynamic role in programmed cell differentiation. Many pathogenic microbes need to survive in nutrient-deficient conditions and use the glyoxylate cycle, an anaplerotic pathway of the tricarboxylic acid cycle, to produce carbohydrates. The plant pathogenic fungus Magnaporthe oryzae ( Pyricularia oryzae ) has a unique chitin deacetylase, Cbp1. The spatiotemporal activity of this protein is required for modification of the M. oryzae wall and for cell differentiation into the specialized infection structure (appressorium). Here we show that acetic acid, another product released by the Cbp1-catalyzed conversion of chitin into chitosan, induces appressorium formation. An extremely low concentration (fM) of acetic acid restored cell differentiation in a Δ cbp1 mutant possibly through the glyoxylate cycle.
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