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Kawaguchi, F.

Publications and source records attributed to Kawaguchi, F..

2 recordsLinked to original sources

Plant-specific tau class glutathione transferases safeguard against lipid oxidation stress through dual detoxification of lipid peroxides and reactive carbonyl species

O_LIOxidation of membrane lipids results in the formation of lipid peroxides (LOOHs) and reactive carbonyl species (RCS), that induce lipid oxidation stress in plants. The plant-specific tau class of glutathione transferases (GSTUs) possess both LOOH peroxidase and RCS-conjugating activities, but their overall contribution to stress tolerance remains unclear. C_LIO_LIWe systematically examined 16 GSTU isozymes of Arabidopsis thaliana and found that all catalysed glutathione-dependent reduction of LOOHs. GSTU17, showing the highest activity, recognized five different isomers of linoleic acid-derived hydroperoxides within comparable catalytic efficiencies. C_LIO_LIT-DNA mutants lacking GSTU3, GSTU17, GSTU18, GSTU19 or GSTU25--isoforms with strong conjugation activities toward acrolein, 4-hydroxynonenal or crotonal--displayed enhanced sensitivity to photooxidative stress, indicating that detoxification of RCS is crucial for oxidative protection. C_LIO_LITranscriptome analyses revealed that exposure to RCS (crotonal, 2-pentenal or 2-hexenal) strongly induced 12 GSTU genes, while other GST classes showed little response. Collectively, these results demonstrate that GSTUs function as a major enzymatic system mitigating lipid oxidation stress in A. thaliana through the combined detoxification of lipid peroxides and their reactive carbonyl products. C_LI

plant biology↗

Genome-wide analysis reveals mutual gene flow between goats from Island Southeast Asia and from Southern Africa

This study aimed to reveal a comprehensive genetic diversity and genetic structure of Island Southeast Asian (ISEA) goats, and infer the details of gene introgressions and propagation routes in ISEA goats using genome-wide SNPs. Correlation analysis of the distance from the domestication center and the genetic diversity of each Asian population showed a significant negative correlation (r = - 0.796, p = 2.66E-05), while the Philippines showed a relatively high genetic diversity (He = 0.363) against the distance, suggesting the multiple propagation routes and admixture history in Philippine goats. Reduced Representation Admixture Analysis at K=6 showed that six clusters (Europe, Northwest Africa, Southern Africa, Eastern Africa, Asia and Southeast Asia) were formed based primarily on geographical location, and ISEA goats included African and Europe components. However, this introgression is much lower in Indochinese goats. In addition, the Southern African and European populations included Southeast Asia component. Treemix and f4 statistics analyses showed the genetic influence and gene flow between ISEA and the Southern Africa. The results of this study have revealed obvious mutual gene flow between ISEA and the Southern African regions through the European maritime activities across the Indian Ocean since the Middle Ages.

ecology↗