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MoSec61β, the beta subunit of Sec61, is involved in fungal development and pathogenicity, plant immunity, and ER-phagy in Magnaporthe oryzae.

Identifieur interne : 000109 ( Main/Exploration ); précédent : 000108; suivant : 000110

MoSec61β, the beta subunit of Sec61, is involved in fungal development and pathogenicity, plant immunity, and ER-phagy in Magnaporthe oryzae.

Auteurs : Yun-Yun Wei [République populaire de Chine] ; Shuang Liang [République populaire de Chine] ; Yun-Ran Zhang [République populaire de Chine] ; Jian-Ping Lu [République populaire de Chine] ; Fu-Cheng Lin [République populaire de Chine] ; Xiao-Hong Liu [République populaire de Chine]

Source :

RBID : pubmed:33200669

Abstract

The process of protein translocation into the endoplasmic reticulum (ER) is the initial and decisive step in the biosynthesis of all secretory proteins and many soluble organelle proteins. In this process, the Sec61 complex is the protein-conducting channel for transport. In this study, we identified and characterized the β subunit of the Sec61 complex in Magnaporthe oryzae (MoSec61β). Compared with the wild-type strain Guy11, the ΔMosec61β mutant exhibited highly branched mycelial morphology, reduced conidiation, high sensitivity to cell wall integrity stress, severely reduced virulence to rice and barley, and restricted biotrophic invasion. The turgor pressure of ΔMosec61β was notably reduced, which affected the function of appressoria. Moreover, ΔMosec61β was also sensitive to oxidative stress and exhibited a reduced ability to overcome plant immunity. Further examination demonstrated that MoSec61β affected the normal secretion of the apoplastic effectors Bas4 and Slp1. In addition, ΔMosec61β upregulated the level of ER-phagy. In conclusion, our results demonstrate the importance of the roles played by MoSec61β in the fungal development and pathogenesis of M. oryzae.

DOI: 10.1080/21505594.2020.1848983
PubMed: 33200669


Affiliations:


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<i>Magnaporthe oryzae</i>
(MoSec61β). Compared with the wild-type strain Guy11, the Δ
<i>Mosec61β</i>
mutant exhibited highly branched mycelial morphology, reduced conidiation, high sensitivity to cell wall integrity stress, severely reduced virulence to rice and barley, and restricted biotrophic invasion. The turgor pressure of Δ
<i>Mosec61β</i>
was notably reduced, which affected the function of appressoria. Moreover, Δ
<i>Mosec61β</i>
was also sensitive to oxidative stress and exhibited a reduced ability to overcome plant immunity. Further examination demonstrated that MoSec61β affected the normal secretion of the apoplastic effectors Bas4 and Slp1. In addition, Δ
<i>Mosec61β</i>
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<i>Magnaporthe oryzae</i>
(MoSec61β). Compared with the wild-type strain Guy11, the Δ
<i>Mosec61β</i>
mutant exhibited highly branched mycelial morphology, reduced conidiation, high sensitivity to cell wall integrity stress, severely reduced virulence to rice and barley, and restricted biotrophic invasion. The turgor pressure of Δ
<i>Mosec61β</i>
was notably reduced, which affected the function of appressoria. Moreover, Δ
<i>Mosec61β</i>
was also sensitive to oxidative stress and exhibited a reduced ability to overcome plant immunity. Further examination demonstrated that MoSec61β affected the normal secretion of the apoplastic effectors Bas4 and Slp1. In addition, Δ
<i>Mosec61β</i>
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<i>M. oryzae</i>
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