AI Article Synopsis

  • - Serine hydroxymethyltransferase (SHMT) plays a crucial role in one carbon metabolism and photorespiration, impacting plant growth, development, and stress resistance.
  • - The rice gene OsSHM1, linked to Arabidopsis SHM1, was identified, and the osshm1 mutant displayed severe chlorotic lesions and stunted growth at normal CO2 levels, but thrived under elevated CO2, indicating a typical photorespiratory response.
  • - OsSHM1 is expressed in various plant organs, mainly in leaves, and is located in the mitochondria, revealing its conserved molecular function across rice and Arabidopsis species.

Article Abstract

Serine hydroxymethyltransferase (SHMT) is important for one carbon metabolism and photorespiration in higher plants for its participation in plant growth and development, and resistance to biotic and abiotic stresses. A rice serine hydroxymethyltransferase gene, OsSHM1, an ortholog of Arabidopsis SHM1, was isolated using map-based cloning. The osshm1 mutant had chlorotic lesions and a considerably smaller, lethal phenotype under natural ambient CO2 concentrations, but could be restored to wild type with normal growth under elevated CO2 levels (0.5% CO2 ), showing a typical photorespiratory phenotype. The data from antioxidant enzymes activity measurement suggested that osshm1 was subjected to significant oxidative stress. Also, OsSHM1 was expressed in all organs tested (root, culm, leaf, and young panicle) but predominantly in leaves. OsSHM1 protein is localized to the mitochondria. Our study suggested that molecular function of the OsSHM1 gene is conserved in rice and Arabidopsis.

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Source
http://dx.doi.org/10.1111/jipb.12336DOI Listing

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