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Pinus radiata seedlings, the most widely planted pine species in the world, were exposed to temperatures within a range mimicking future scenarios based on current models of heat increase. The short-term heat response in P. radiata was studied in detail by exploring the metabolo...

2023-08-14 | MTBLS4567 | MetaboLights

High-temperature stress critically challenges cold-water aquaculture; however, the size-dependent molecular mechanisms underlying thermal adaptation in triploid rainbow trout (Oncorhynchus mykiss) remain poorly understood. Here, we integrated transcriptomic and metabolomic profiling of liver tiss...

2026-05-17 | MTBLS14507 | MetaboLights

Untargeted metabolomic profiling of Lavandula angustifolia under progressive heat stress conditionsate.

2025-08-03 | MTBLS12670 | MetaboLights

This project aims to elucidate the molecular mechanism underlying the stable golden-yellow phenotype and enhanced protein accumulation in an Auxenochlorella pyrenoidosa mutant (CX41) generated by ARTP mutagenesis. Through comparative analysis between the wild-type (FACHB-9) and mutant s...

2025-12-26 | MTBLS13574 | MetaboLights

Temperature, water and light are 3 abiotic stress factors that have major influences on plant growth, development and reproduction. Plants can be primed by a prior mild stress to enhance their resistance to future stress. We used an untargeted metabolomics approach to examine Arabidopsis thal...

2022-05-30 | MTBLS3672 | MetaboLights
High temperature stress leads to complex changes to plant functionality, which affects, i.a., the cell wall structure and the cell wall protein composition. In this study, the qualitative and quantitative changes in the cell wall proteome of Brachypodium distachyon leaves in response to high (40 °C)...
ORGANISM(S): Brachypodium Distachyon (ncbitaxon:15368) 
2021-04-28 | MSV000087323 | MassIVE
Peanut (Arachis hypogaea L.) is considered as a moderately salt-sensitive species and thus soil salinity can be a limiting factor for peanut cultivation. To gain insights into peanut plant physiology in response to salt stress and alleviation, we comprehensively characterized leaf relative electroly...
2019-03-19 | MTBLS583 | MetaboLights
The legume genus Lotus includes glycophytic forage crops and other species adapted to extreme environments, such as saline soils. Understanding salt tolerance mechanisms will contribute to the discovery of new traits which may enhance the breeding efforts towards improved performance of legumes in m...
2015-09-14 | MTBLS14 | MetaboLights
The legume genus Lotus includes glycophytic forage crops and other species adapted to extreme environments, such as saline soils. Understanding salt tolerance mechanisms will contribute to the discovery of new traits which may enhance the breeding efforts towards improved performance of legumes in m...
2015-09-14 | MTBLS15 | MetaboLights
The legume genus Lotus includes glycophytic forage crops and other species adapted to extreme environments, such as saline soils. Understanding salt tolerance mechanisms will contribute to the discovery of new traits which may enhance the breeding efforts towards improved performance of legumes in m...
2015-09-14 | MTBLS16 | MetaboLights
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