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The Amino Acid Permease MoGap1 Regulates TOR Activity and Autophagy in Magnaporthe oryzae.


ABSTRACT: Rice is an important food crop all over the world. It can be infected by the rice blast fungus Magnaporthe oryzae, which results in a significant reduction in rice yield. The infection mechanism of M. oryzae has been an academic focus for a long time. It has been found that G protein, AMPK, cAMP-PKA, and MPS1-MAPK pathways play different roles in the infection process. Recently, the function of TOR signaling in regulating cell growth and autophagy by receiving nutritional signals generated by plant pathogenic fungi has been demonstrated, but its regulatory mechanism in response to the nutritional signals remains unclear. In this study, a yeast amino acid permease homologue MoGap1 was identified and a knockout mutant of MoGap1 was successfully obtained. Through a phenotypic analysis, a stress analysis, autophagy flux detection, and a TOR activity analysis, we found that the deletion of MoGap1 led to a sporulation reduction as well as increased sensitivity to cell wall stress and carbon source stress in M. oryzae. The ΔMogap1 mutant showed high sensitivity to the TOR inhibitor rapamycin. A Western blot analysis further confirmed that the TOR activity significantly decreased, which improved the level of autophagy. The results suggested that MoGap1, as an upstream regulator of TOR signaling, regulated autophagy and responded to adversities such as cell wall stress by regulating the TOR activity.

SUBMITTER: Huang C 

PROVIDER: S-EPMC9655246 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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The Amino Acid Permease MoGap1 Regulates TOR Activity and Autophagy in <i>Magnaporthe oryzae</i>.

Huang Changli C   Li Lin L   Wang Lei L   Bao Jiandong J   Zhang Xiaozhi X   Yan Jiongyi J   Wu Jiaqi J   Cao Na N   Wang Jiaoyu J   Zhao Lili L   Liu Xiaohong X   Yu Xiaoping X   Zhu Xueming X   Lin Fucheng F  

International journal of molecular sciences 20221107 21


Rice is an important food crop all over the world. It can be infected by the rice blast fungus <i>Magnaporthe oryzae</i>, which results in a significant reduction in rice yield. The infection mechanism of <i>M. oryzae</i> has been an academic focus for a long time. It has been found that G protein, AMPK, cAMP-PKA, and MPS1-MAPK pathways play different roles in the infection process. Recently, the function of TOR signaling in regulating cell growth and autophagy by receiving nutritional signals g  ...[more]

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