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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

Background:

Lignocellulose represents a primary input of organic carbon (C) into soils, yet the identity of specific microorganisms and genes which drive lignocellulose turnover in soils remain poorly understood. To address this knowledge gap, we used a 10-year grassland plant-exclusion exp...

2025-07-16 | MTBLS12728 | MetaboLights
In this work, for the first time, we performed a pilot investigation of long-term reproducibility of CZE-MS for TDP of a complex sample (i.e., a yeast cell lysate) to achieve a better understanding of advantages, issues and potential solutions of CZE-MS for large-scale TDP.
ORGANISM(S): Candida albicans (Yeast) Saccharomyces cerevisiae 
2024-03-20 | PXD046651 | Pride
Using standardized, semipurified diets is a crucial factor for reproducibility of experimental nutritional studies. For the purpose of comparability and integration of research, two European consortia, Mitofood and BIOCLAIMS, proposed an AIN-93-based standard reference diet, the standardized BIOCLAI...
ORGANISM(S): Mus musculus 
Reproducibility of molecular phenotypes after long-term differentiation to Human iPSC-Derived Neurons: a multi-site omics study [bulk]
Reproducibility of molecular phenotypes after long-term differentiation to Human iPSC-Derived Neurons: a multi-site omics study [single-cell]
Reproducibility in molecular and cellular studies is fundamental to scientific discovery. To establish the reproducibility of a well-defined long term neuronal differentiation protocol, we repeated the cellular and molecular comparison of the same two iPSC lines across five distinct laboratories. De...
ORGANISM(S): Homo sapiens 
2018-08-20 | GSE118733 | GEO
Reproducibility in molecular and cellular studies is fundamental to scientific discovery. To establish the reproducibility of a well-defined long term neuronal differentiation protocol, we repeated the cellular and molecular comparison of the same two iPSC lines across five distinct laboratories. De...
ORGANISM(S): Homo sapiens 
2018-08-20 | GSE118734 | GEO
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