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Gero Steinberg

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Articles 79
Citations 3038
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Recent Articles
1.
Mirzadi Gohari A, Mehrabi R, Kilaru S, Schuster M, Steinberg G, de Wit P, et al.
Mol Plant Pathol . 2024 Oct; 25(10):e70009. PMID: 39363778
Understanding how pathogens defend themselves against host defence mechanisms, such as hydrogen peroxide (HO) production, is crucial for comprehending fungal infections. HO poses a significant threat to invading fungi due...
2.
Schuster M, Kilaru S, Steinberg G
Nat Commun . 2024 May; 15(1):4357. PMID: 38821954
Triazoles are widely used to control pathogenic fungi. They inhibit the ergosterol biosynthetic pathway, but the precise mechanisms leading to fungicidal activities in many fungal pathogens are poorly understood. Here,...
3.
Fones H, Bebber D, Chaloner T, Kay W, Steinberg G, Gurr S
Nat Food . 2023 May; 1(6):332-342. PMID: 37128085
Emerging fungal and oomycete pathogens infect staple calorie crops and economically important commodity crops, thereby posing a significant risk to global food security. Our current agricultural systems - with emphasis...
4.
Cannon S, Kay W, Kilaru S, Schuster M, Gurr S, Steinberg G
PLoS Pathog . 2022 Oct; 18(10):e1010860. PMID: 36264855
Global banana production is currently challenged by Panama disease, caused by Fusarium oxysporum f.sp. cubense Tropical Race 4 (FocTR4). There are no effective fungicide-based strategies to control this soil-borne pathogen....
5.
Kilaru S, Fantozzi E, Cannon S, Schuster M, Chaloner T, Guiu-Aragones C, et al.
Nat Commun . 2022 Sep; 13(1):5625. PMID: 36163135
Transitioning from spores to hyphae is pivotal to host invasion by the plant pathogenic fungus Zymoseptoria tritici. This dimorphic switch can be initiated by high temperature in vitro (~27 °C);...
6.
Lin C, Ashwin P, Steinberg G
Eur Phys J E Soft Matter . 2021 Mar; 44(2):10. PMID: 33683507
 Cellular distribution of organelles in living cells is achieved via a variety of transport mechanisms, including directed motion, mediated by molecular motors along microtubules (MTs), and diffusion which is predominantly...
7.
Fantozzi E, Kilaru S, Gurr S, Steinberg G
Fungal Genet Biol . 2020 Dec; 146:103504. PMID: 33326850
The fungus Zymoseptoria tritici causes Septoria tritici blotch of wheat. Pathogenicity begins with spore germination, followed by stomata invasion by hyphae, mesophyll colonization and fruiting body formation. It was previously...
8.
Fantozzi E, Kilaru S, Cannon S, Schuster M, Gurr S, Steinberg G
Fungal Genet Biol . 2020 Dec; 146:103487. PMID: 33309991
The fungus Zymoseptoria tritici causes Septoria tritici leaf blotch, which poses a serious threat to temperate-grown wheat. Recently, we described a raft of molecular tools to study the biology of...
9.
Steinberg G, Gurr S
Fungal Genet Biol . 2020 Oct; 144:103476. PMID: 33053432
Securing sufficient food for a growing world population is of paramount importance for social stability and the well-being of mankind. Recently, it has become evident that fungal pathogens pose the...
10.
Kilaru S, Schuster M, Murray R, Steinberg G
Fungal Genet Biol . 2020 Sep; 142:103448. PMID: 32866613
Trichoderma reesei is the foremost fungal producer of enzymes for industrial processes. Here, we use fluorescent live cell imaging of germinating conidia to improve Agrobacterium tumefaciens-mediated transformation (ATMT) efficiency. We...