Characterization of the Soybean GmIREG Family Genes and the Function of GmIREG3 in Conferring Tolerance to Aluminum Stress.

Int J Mol Sci

The State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural University, Guangzhou 510642, China.

Published: January 2020

AI Article Synopsis

  • - The study focuses on the IREG gene family in soybeans, which is crucial for regulating iron levels and managing metal stress, particularly aluminum.
  • - Researchers identified six IREG genes and highlighted one, GmIREG3, which increased aluminum resistance in transgenic plants, while not affecting tolerance to cobalt or nickel.
  • - The findings suggest GmIREG3 is a protein located in the tonoplast (the tonoplast is a membrane surrounding the vacuole), paving the way for future research on the roles of these genes in handling metal stress in plants.

Article Abstract

The IREG (IRON REGULATED/ferroportin) family of genes plays vital roles in regulating the homeostasis of iron and conferring metal stress. This study aims to identify soybean IREG family genes and characterize the function of in conferring tolerance to aluminum stress. Bioinformatics and expression analyses were conducted to identify six soybean IREG family genes. One , whose expression was significantly enhanced by aluminum stress, , was studied in more detail to determine its possible role in conferring tolerance to such stress. In total, six potential IREG-encoding genes with the domain of Ferroportin1 (PF06963) were characterized in the soybean genome. Analysis of the root tissue expression patterns, subcellular localizations, and root relative elongation and aluminum content of transgenic overexpressing demonstrated that GmIREG3 is a tonoplast localization protein that increases transgenic aluminum resistance but does not alter tolerance to Co and Ni. The systematic analysis of the GmIREG gene family reported herein provides valuable information for further studies on the biological roles of GmIREGs in conferring tolerance to metal stress. contributes to aluminum resistance and plays a role similar to that of . The functions of other GmIREG genes need to be further clarified in terms of whether they confer tolerance to metal stress or other biological functions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7013977PMC
http://dx.doi.org/10.3390/ijms21020497DOI Listing

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