Project description:Microbiota and mycobiota of grape and soil samples collected over three consecutive harvest periods across the Nemea PDO zone vineyards Raw sequence reads
Project description:Leaf rate elongation is extremely sensitive to soil water status. Global gene expression of the leaf elongation zone was profiled at three different levels of soil moisture in two genotypes. Leaf elongation in IR64 is more sensitive to decreased soil moisture than in moroberekan.
Project description:Accumulating evidence suggests that the intestinal microbiota participates in the development of metabolic dysfunction-associated steatotic liver disease (MASLD) through metabolite-host interaction. However, the beneficial role of commensal mycobiota in MASLD progression remains poorly understood. Comparing the gut microbiome differences, we demonstrated that the deficiency of Caspase Recruitment Domain-containing protein 9 (CARD9), an adaptor protein for a microbiota recognition receptor, exacerbated HFD-induced MASLD in a gut fungi-dependent manner. CARD9 deficiency reduced the abundance of Saccharomyces cerevisiae (S. cerevisiae), which was a probiotic alleviating MASLD progression. S.cerevisiae promoted a significantly greater abundance of 5-hydroxyindoleacetic acid (5-HIAA) in intestine through TLR1, which then alleviated MASLD phenotypes via “gut-liver” axis. Particularly, 5-HIAA directly bond to aryl-hydrocarbon receptor (AhR) and stimulated its nuclear translocation, subsequently inducing fatty acid oxidation via carnitine palmitoyl transferase 1A (CPT1A) and acyl-CoA oxidase 1 (ACOX1) transactivation. MASLD patients exhibited decreased levels of S. cerevisiae and 5-HIAA, and S.cerevisiae effectively ameliorated hepatic steatosis and improved glucose homeostasis in patients with MASLD. In summary, our findings identified a novel pathway of fungi-S. cerevisiae stimulating intestinal 5-HIAA production and indicated that S. cerevisiae and 5-HIAA might alleviate MASLD progression, highlighting that mycobiota-dependent gut-liver axis was a promising target for the prevention of MASLD.
Project description:Leaf rate elongation is extremely sensitive to soil water status. Global gene expression of the leaf elongation zone was profiled at three different levels of soil moisture in two genotypes. Leaf elongation in IR64 is more sensitive to decreased soil moisture than in moroberekan. 2 genotypes: IR64, Moroberekan; 3 treatments: FTSW 1, FTSW 0.5, FTSW 0.2