2.6.1.80: nicotianamine aminotransferase
This is an abbreviated version!
For detailed information about nicotianamine aminotransferase, go to the full flat file.
Word Map on EC 2.6.1.80
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2.6.1.80
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phytosiderophores
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barley
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shoot
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graminaceous
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osnas1
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agriculture
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osirt1
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fe-deficient
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mugineic
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fe-sufficient
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deoxymugineic
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deficiency-induced
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rhizosphere
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osysl15
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feiii
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osnramp1
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calcareous
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atfro2
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iron-deficient
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pericycle
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petis
- 2.6.1.80
-
phytosiderophores
- barley
- shoot
-
graminaceous
- osnas1
- agriculture
-
osirt1
-
fe-deficient
-
mugineic
-
fe-sufficient
-
deoxymugineic
-
deficiency-induced
-
rhizosphere
-
osysl15
-
feiii
-
osnramp1
-
calcareous
-
atfro2
-
iron-deficient
-
pericycle
-
petis
Reaction
Synonyms
NAAT, NAAT I, NAAT II, naat-A, naat-B, NAAT-III, NAAT1, NAAT1-A, NAAT1-B, NAAT1-D, NAAT2-A, NAAT2-B, NAAT2-D, nicotianamine aminotransferase 1, nicotianamine aminotransferase 2, nicotianamine transaminase, OsNAAT1, OsNAAT2, OsNAAT3, OsNAAT4, OsNAAT5, TaNAAT
ECTree
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Application
Application on EC 2.6.1.80 - nicotianamine aminotransferase
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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
agriculture
the TaNAAT1, TaNAAT2 and TaDMAS1 genes provides a valuable genetic resource for improving bread wheat growth on Fe deficient soils and enhancing grain Fe nutrition