Gene Details:

Functional Descriptions:

  • High OsMDHAR expression also improved the fermentative capacity of the yeast during glucose-based batch fermentation at a standard cultivation temperature (30°C).
  • To examine whether heterologous expression of MDHAR from Oryza sativa (OsMDHAR) can prevent the deleterious effects of unfavorable growth conditions, we constructed a transgenic yeast strain harboring a recombinant plasmid carrying OsMDHAR (p426GPD::OsMDHAR).
  • These results suggest that heterologous OsMDHAR expression increases tolerance to reactive oxygen species-induced oxidative stress by improving cellular redox homeostasis and improves survival during fermentation, which enhances fermentative capacity.

Literature:

Gene Resources:

  • NCBI ID:
  • UniProt accessions:

Sequences:

cDNA Sequence
  • >LOC_Os09g39380.1
    ATGGCGTCGGAGAAGCACTTCAAGTACGTCATCCTCGGCGGCGGCGTCGCAGCGGGATATGCGGCACGGGAGTTCGCCAAGCAGGGTGTTAAGCCAGGGGAGCTCGCCATCATCTCCAAGGAGGCCGTACTTTTACTTACTGGAACCATACCTGTTCTTGTTGTGGCTCCTTATGAGCGCCCTGCTCTCAGCAAGGGATACCTCTTTCCTCAGAATGCTGCAAGACTCCCAGGATTTCATGTGTGTGTCGGCAGTGGAGGAGAGAGGCTTTTGCCCGAATGGTACTCAGAGAAAGGCATTGAGTTGATCCTGAGCACTGAAATTGTCAAAGCTGATCTTGCCTCCAAGACTTTGACTAGTGCAGTTGGAGCAACCTTTACATATGAGATTTTGATCATTGCAACTGGCTCCTCAGTCATCAAGCTATCAGATTTTGGTACTCAAGGAGCTGATTCCAACAACATTTTATATCTAAGGGAAGTAGATGATGCTGACAAGCTGGTTGCAGCTATCCAAGCAAAGAAGGGTGGAAAGGCAGTTATTGTAGGAGGAGGTTACATTGGTCTAGAACTTAGTGCTGCATTGAAGATCAATGATTTTGATGTCACGATGGTGTTTCCTGAACCTTGGTGCATGCCTCGTCTCTTCACTGCTGATATCGCGGCTTTCTATGAGAGTTACTACACTAACAAAGGAGTTAAGATCGTGAAGGGTACAGTAGCTGTTGGTTTTGATGCTGATGCTAATGGTGATGTCACAGCAGTTAACCTGAAGAATGGCAGTGTGCTTGAAGCTGATATTGTTGTTGTTGGTGTTGGGGGCAGACCGCTGACTACTCTCTTTAAAGGTCAAGTTGCTGAGGAGAAAGGTGGAATTAAGACCGATGCTTTCTTTGAAACAAGTGTTCCTGGAGTCTATGCTGTCGGTGATGTGGCCACCTTCCCCATGAAGATGTACAATGAGTTGAGGAGAGTGGAACATGTTGACCATGCTAGGAAGTCTGCAGAGCAGGCTGTAAAGGCAATCAAGGGAAAAGAGTCCGGCGAGTCCGTTGTGGAGTATGACTATCTGCCATACTTCTACTCCCGGTCATTCGACCTGGGATGGCAATTCTACGGCGACAACGTTGGCGACACCATCCTGTTCGGAGACAGTGACCCGACCTCTGCCAAGCCCAAGTTCGGGTCCTACTGGATCAAGGACGGCAAGGTGTTGGGTGCCTTCCTGGAGGGTGGGTCACCTGATGAGAACAAGGCCATTGCCAAGGTCGCGAAAACTCAGCCGCCCGTTGCCAACATAGAGGAGCTCAAGAAGGAAGGCCTCCAGTTCGCCAGCAAAATATGA
CDS Sequence
  • >LOC_Os09g39380.1
    ATGGCGTCGGAGAAGCACTTCAAGTACGTCATCCTCGGCGGCGGCGTCGCAGCGGGATATGCGGCACGGGAGTTCGCCAAGCAGGGTGTTAAGCCAGGGGAGCTCGCCATCATCTCCAAGGAGGCCGTACTTTTACTTACTGGAACCATACCTGTTCTTGTTGTGGCTCCTTATGAGCGCCCTGCTCTCAGCAAGGGATACCTCTTTCCTCAGAATGCTGCAAGACTCCCAGGATTTCATGTGTGTGTCGGCAGTGGAGGAGAGAGGCTTTTGCCCGAATGGTACTCAGAGAAAGGCATTGAGTTGATCCTGAGCACTGAAATTGTCAAAGCTGATCTTGCCTCCAAGACTTTGACTAGTGCAGTTGGAGCAACCTTTACATATGAGATTTTGATCATTGCAACTGGCTCCTCAGTCATCAAGCTATCAGATTTTGGTACTCAAGGAGCTGATTCCAACAACATTTTATATCTAAGGGAAGTAGATGATGCTGACAAGCTGGTTGCAGCTATCCAAGCAAAGAAGGGTGGAAAGGCAGTTATTGTAGGAGGAGGTTACATTGGTCTAGAACTTAGTGCTGCATTGAAGATCAATGATTTTGATGTCACGATGGTGTTTCCTGAACCTTGGTGCATGCCTCGTCTCTTCACTGCTGATATCGCGGCTTTCTATGAGAGTTACTACACTAACAAAGGAGTTAAGATCGTGAAGGGTACAGTAGCTGTTGGTTTTGATGCTGATGCTAATGGTGATGTCACAGCAGTTAACCTGAAGAATGGCAGTGTGCTTGAAGCTGATATTGTTGTTGTTGGTGTTGGGGGCAGACCGCTGACTACTCTCTTTAAAGGTCAAGTTGCTGAGGAGAAAGGTGGAATTAAGACCGATGCTTTCTTTGAAACAAGTGTTCCTGGAGTCTATGCTGTCGGTGATGTGGCCACCTTCCCCATGAAGATGTACAATGAGTTGAGGAGAGTGGAACATGTTGACCATGCTAGGAAGTCTGCAGAGCAGGCTGTAAAGGCAATCAAGGGAAAAGAGTCCGGCGAGTCCGTTGTGGAGTATGACTATCTGCCATACTTCTACTCCCGGTCATTCGACCTGGGATGGCAATTCTACGGCGACAACGTTGGCGACACCATCCTGTTCGGAGACAGTGACCCGACCTCTGCCAAGCCCAAGTTCGGGTCCTACTGGATCAAGGACGGCAAGGTGTTGGGTGCCTTCCTGGAGGGTGGGTCACCTGATGAGAACAAGGCCATTGCCAAGGTCGCGAAAACTCAGCCGCCCGTTGCCAACATAGAGGAGCTCAAGAAGGAAGGCCTCCAGTTCGCCAGCAAAATATGA
Protein Sequence
  • >LOC_Os09g39380.1
    MASEKHFKYVILGGGVAAGYAAREFAKQGVKPGELAIISKEAVLLLTGTIPVLVVAPYERPALSKGYLFPQNAARLPGFHVCVGSGGERLLPEWYSEKGIELILSTEIVKADLASKTLTSAVGATFTYEILIIATGSSVIKLSDFGTQGADSNNILYLREVDDADKLVAAIQAKKGGKAVIVGGGYIGLELSAALKINDFDVTMVFPEPWCMPRLFTADIAAFYESYYTNKGVKIVKGTVAVGFDADANGDVTAVNLKNGSVLEADIVVVGVGGRPLTTLFKGQVAEEKGGIKTDAFFETSVPGVYAVGDVATFPMKMYNELRRVEHVDHARKSAEQAVKAIKGKESGESVVEYDYLPYFYSRSFDLGWQFYGDNVGDTILFGDSDPTSAKPKFGSYWIKDGKVLGAFLEGGSPDENKAIAKVAKTQPPVANIEELKKEGLQFASKI*