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Literature summary extracted from

  • Masuda, H.; Kobayashi, T.; Ishimaru, Y.; Takahashi, M.; Aung, M.S.; Nakanishi, H.; Mori, S.; Nishizawa, N.K.
    Iron-biofortification in rice by the introduction of three barley genes participated in mugineic acid biosynthesis with soybean ferritin gene (2013), Front. Plant Sci., 4, 132.
    View publication on PubMedView publication on EuropePMC

Application

EC Number Application Comment Organism
2.6.1.80 agriculture production of biofortified rice via introduction of the soybean ferritin gene (Soyfer H2) driven by two endosperm-specific promoters, along with the barley nicotianamine synthase gene NAS1, two nicotianamine aminotransferase genes Naat-A and Naat-B, and a mugineic acid synthase gene IDS3 to enhance mugineic acid production in rice plants. Lines expressing both ferritin and mugineic acid biosynthetic genes show signs of iron-deficiency tolerance in calcareous soil. The iron concentration in polished T3 seeds is increased by 4- and 2.5times, respectively Hordeum vulgare

Protein Variants

EC Number Protein Variants Comment Organism
1.14.11.24 additional information introduction of Glycine max ferritin gene driven by two endosperm-specific promoters, along with Hordeum vulgare nicotianamine synthase gene HvNAS, two nicotianamine aminotransferase genes HvNAAT-A and -B, and mugineic acid synthase gene IDS3 to enhance mugineic acid production in Oryza sativa sp. japonica cv. Tsukinohikari plant seeds. Lines expressing both ferritin and mugineic acid biosynthetic genes show signs of iron-deficiency tolerance in calcareous soil, phenotypes, overview Hordeum vulgare

Organism

EC Number Organism UniProt Comment Textmining
1.14.11.24 Hordeum vulgare
-
gene IDS3
-
2.6.1.80 Hordeum vulgare Q9ST02
-
-
2.6.1.80 Hordeum vulgare Q9ST03
-
-

Synonyms

EC Number Synonyms Comment Organism
1.14.11.24 IDS3
-
Hordeum vulgare
1.14.11.24 mugineicacid synthase
-
Hordeum vulgare
2.6.1.80 naat-A
-
Hordeum vulgare
2.6.1.80 naat-B
-
Hordeum vulgare

General Information

EC Number General Information Comment Organism
1.14.11.24 additional information concomitant introduction of the Glycine max ferritin gene and Hordeum vulgare mugineic acid biosynthetic genes effectively increases the seed iron level without causing iron sensitivity under iron-limited conditions in Oryza sativa, overview Hordeum vulgare