Fungal plant pathogens are persistent and global food security threats. To invade their hosts they often form highly specialized infection structures, known as appressoria. The cAMP/ PKA- and MAP kinase-signaling cascades have been functionally delineated as positive-acting pathways required for appressorium development. Negative-acting regulatory pathways that block appressorial development are not known. Here, we present the first detailed evidence that the conserved Target of Rapamycin (TOR) signaling pathway is a powerful inhibitor of appressorium formation by the rice blast fungus Magnaporthe oryzae. We determined TOR signaling was activated in an M. oryzae mutant strain lacking a functional copy of the GATA transcription factor-encoding gene ASD4. Îasd4 mutant strains could not form appressoria and expressed GLN1, a glutamine synthetase-encoding orthologue silenced in wild type. Inappropriate expression of GLN1 increased the intracellular steady-state levels of glutamine in Îasd4 mutant strains during axenic growth when compared to wild type. Deleting GLN1 lowered glutamine levels and promoted appressorium formation by Îasd4 strains. Furthermore, glutamine is an agonist of TOR. Treating Îasd4 mutant strains with the specific TOR kinase inhibitor rapamycin restored appressorium development. Rapamycin was also shown to induce appressorium formation by wild type and Îcpka mutant strains on non-inductive hydrophilic surfaces but had no effect on the MAP kinase mutant Îpmk1. When taken together, we implicate Asd4 in regulating intracellular glutamine levels in order to modulate TOR inhibition of appressorium formation downstream of cPKA. This study thus provides novel insight into the metabolic mechanisms that underpin the highly regulated process of appressorium development.
GATA-Dependent Glutaminolysis Drives Appressorium Formation in Magnaporthe oryzae by Suppressing TOR Inhibition of cAMP/PKA Signaling.
GATA依赖的谷氨酰胺分解通过抑制TOR对cAMP/PKA信号的抑制来驱动稻瘟病菌附着胞的形成
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作者:Marroquin-Guzman Margarita, Wilson Richard A
| 期刊: | PLoS Pathogens | 影响因子: | 4.900 |
| 时间: | 2015 | 起止号: | 2015 Apr 22; 11(4):e1004851 |
| doi: | 10.1371/journal.ppat.1004851 | 研究方向: | 信号转导 |
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