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The interactions of crops with root-colonizing endophytic microorganisms are highly relevant to agriculture, because endophytes can modify plant resistance to pests and increase crop yields. We investigated the interactions between the host plant Zea mays and the endophytic fungus Trichode...
2021-07-08 | MTBLS1964 | MetaboLights

Phytophthora nicotianae is an oomycete pathogen of global significance threatening many important crops. It is mainly controlled by chemosynthetic fungicides, which endangers ecosystem and human health; thus, there is an urgent need to explore alternatives for these fungicides. In this s...

2022-08-01 | MTBLS5405 | MetaboLights

Elymus breviaristatus is an important alpine forage, there is limited information regarding its potential use as silage and how fertilizer treatments affect the ensiling process in this forage crop. Here, we investigated how organic fertilizer (M), nitrogen-phosphorus-potassium fertilizer (NPK),...

2026-03-20 | MTBLS14092 | MetaboLights
Endophytic fungi can mediate salicylic acid (SA)- and methyl jasmonate (MeJA)-related signaling in medicinal plants, thereby influencing metabolite synthesis, stress resistance, and growth development. Experimental groups comprised control, Trichoderma longibrachiatum inoculation (FG), FG+SA (FS), F...
2026-04-16 | MTBLS14293 | MetaboLights
Endophytic fungi can mediate salicylic acid (SA)- and methyl jasmonate (MeJA)-related signaling in medicinal plants, thereby influencing metabolite synthesis, stress resistance, and growth development. Experimental groups comprised control, Trichoderma longibrachiatum inoculation (FG), FG+SA (FS), F...
2026-04-22 | MTBLS14304 | MetaboLights

Endophytic fungi and phytohormone signaling can jointly influence growth–defense trade-offs in medicinal plants by reprogramming metabolism in a stage-dependent manner. To elucidate how the endophytic fungus Trichoderma longibrachiatum FG and exogenous salicylic acid (SA) and methyl jasmonat...

2026-03-24 | MTBLS14124 | MetaboLights
Plant-beneficial fungi from the genus Trichoderma (Hypocreales, Ascomycota) can control oomyceteous plant-pathogenic Pythium myriotylum (Peronosporales, Oomycota) and thus serve as bioeffectors for the eco-friendly products of crop protection. However, the underlying mechanisms of microbe-microbe in...
ORGANISM(S): Trichoderma asperellum CBS 433.97 Trichoderma virens Gv29-8 Hypocrea jecorina (strain QM6a) (Trichoderma reesei) Trichoderma atroviride IMI 206040 Trichoderma parepimyces Trichoderma guizhouense 
2024-07-19 | PXD051895 | Pride
A self-designed Trichoderma high density oligonuclotide (HDO) microarray (Roche-NimbleGen, Inc., Madison, WI, USA) was constructed in a similar way than a previous Trichoderma HDO microarray (Samolski et al., 2009). The microarray was composed of 392,779 60-mer probes designed against 14,081 EST-d...
ORGANISM(S): Hypocrea virens 
The ascomycete Trichoderma reesei is an industrial producer of cellulolytic and hemicellulolytic enzymes and also serves as a model for investigations on these enzymes and their genes. Most of them are obligatorily dependent on the Zn(II)Cys(VI) transcriptional activator XYR1. XYR1 is constitutively...
ORGANISM(S): Trichoderma reesei 
Trichoderma reesei is the main industrial producer of cellulases and hemicellulases used to depolymerize biomass in many biotechnical applications. Many production strains in use have been generated by classical mutagenesis. In this study we characterized genomic alterations in hyperproducing mutant...
ORGANISM(S): Hypocrea jecorina 
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