-
1
MaAts, an Alkylsulfatase, Contributes to Fungal Tolerances against UV-B Irradiation and Heat-Shock in <i>Metarhizium acridum</i>
Published 2022-03-01Subjects: Get full text
Article -
2
Development of SCAR Markers for Genetic Authentication of <i>Metarhizium acridum</i>
Published 2024-04-01Subjects: “…<i>Metarhizium acridum</i>…”
Get full text
Article -
3
Enhancing the Biocontrol Potential of the Entomopathogenic Fungus in Multiple Respects via the Overexpression of a Transcription Factor Gene <i>MaSom1</i>
Published 2022-01-01Subjects: “…<i>Metarhizium acridum</i>…”
Get full text
Article -
4
MaAreB, a GATA Transcription Factor, Is Involved in Nitrogen Source Utilization, Stress Tolerances and Virulence in <i>Metarhizium acridum</i>
Published 2021-06-01Subjects: “…<i>Metarhizium acridum</i>…”
Get full text
Article -
5
-
6
MaPac2, a Transcriptional Regulator, Is Involved in Conidiation, Stress Tolerances and Pathogenicity in <i>Metarhizium acridum</i>
Published 2025-01-01Subjects: Get full text
Article -
7
-
8
MaNmrA, a Negative Transcription Regulator in Nitrogen Catabolite Repression Pathway, Contributes to Nutrient Utilization, Stress Resistance, and Virulence in Entomopathogenic Fung...
Published 2021-11-01Subjects: “…<i>Metarhizium acridum</i>…”
Get full text
Article -
9
MaAzaR Influences Virulence of <i>Metarhizium acridum</i> against <i>Locusta migratoria manilensis</i> by Affecting Cuticle Penetration
Published 2024-08-01Subjects: Get full text
Article -
10
-
11
The C2H2 Zinc Finger Protein MaNCP1 Contributes to Conidiation through Governing the Nitrate Assimilation Pathway in the Entomopathogenic Fungus <i>Metarhizium acridum</i>
Published 2022-09-01Subjects: “…<i>Metarhizium acridum</i>…”
Get full text
Article