132889 Results

Show all   Save search   Copy query
Sort   by:  
 Page size 
Mediator is a multiprotein transcriptional co-regulator complex composed of four modules; Head, Middle, Tail, and Kinase. It conveys signals from promoter-bound transcriptional regulators to RNA polymerase II and thus plays an essential role in eukaryotic gene regulation. We describe subunit localiz...
2018-01-30 | MTBLS450 | MetaboLights
Brassicaceae plants have a dual-cell type of chemical defense against herbivory. Here we show a novel single-cell defense involving endoplasmic reticulum (ER)-derived organelles (ER bodies) and the vacuoles. We identify various glucosinolates as endogenous substrates of the ER-body β-glucosidases BG...
2020-02-04 | MTBLS1383 | MetaboLights
This experiment aimed to analyze the leaf metabolite profiles of Oxytropis plants.
2026-09-10 | MTBLS15472 | MetaboLights
This experiment aimed to analyze the root metabolite profiles of Oxytropis plants.
2026-09-09 | MTBLS15468 | MetaboLights
Although it is known that plants can recruit beneficial rhizobacteria under various stresses, the mechanisms underlying their synergistic interaction in regulating plant resistance remain poorly understood. This study demonstrates that plants establish metabolic crosstalk with Pseudomonas for enhanc...
2026-09-12 | MTBLS15630 | MetaboLights

Cyclic peptides are reported to have antibacterial, antifungal and other bioactivities. Orbitides are a class of cyclic peptide that are small, head-to-tail cyclized, composed of proteinogenic amino acids, and lack disulfide bonds; they are also known in several genera of the plant family Rutacea...

2020-10-14 | MTBLS1963 | MetaboLights

This study utilized metabolomics to analyze the metabolites of four host plants (Camptotheca acuminata, Populus deltoides, Prunus serrulate, and Taxodium distichum) and one non-host plant (Camphora officinarum) of fall webworm Hyphantria cunea.

2025-08-12 | MTBLS12846 | MetaboLights
Although it is known that plants can recruit beneficial rhizobacteria under various stresses, the mechanisms underlying their synergistic interaction in regulating plant resistance remain poorly understood. This study demonstrates that plants establish metabolic crosstalk with Pseudomonas for enhanc...
2026-09-12 | MTBLS15629 | MetaboLights
Although it is known that plants can recruit beneficial rhizobacteria under various stresses, the mechanisms underlying their synergistic interaction in regulating plant resistance remain poorly understood. This study demonstrates that plants establish metabolic crosstalk with Pseudomonas for enhanc...
2026-09-12 | MTBLS15622 | MetaboLights
Sort   by:  
 Page size