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Literature summary for 3.2.1.154 extracted from

  • Zhang, J.; Chen, W.; Dell, B.; Vergauwen, R.; Zhang, X.; Mayer, J.E.; Van den Ende, W.
    Wheat genotypic variation in dynamic fluxes of WSC components in different stem segments under drought during grain filling (2015), Front. Plant Sci., 6, 624 .
    View publication on PubMedView publication on EuropePMC

Organism

Organism UniProt Comment Textmining
Triticum aestivum Q2UXF7 doubled haploid lines DH 307 and DH 338 selected from a population of 225 lines derived from a var. Westonia/Kauz cross
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Source Tissue

Source Tissue Comment Organism Textmining
caryopsis
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Triticum aestivum
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kernel
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Triticum aestivum
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additional information absence of strong 6-FEH activity increases (on a fresh weight basis), especially in the lower parts, during the most critical period of the onset of fructan degradation and fructose accumulation under drought. The combined 1-FEH and 6-FEH activities are particularly important during the later stages in drought treated DH 338 Triticum aestivum
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stem
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Triticum aestivum
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Synonyms

Synonyms Comment Organism
6-FEH
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Triticum aestivum
FEH
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Triticum aestivum
fructan exohydrolase
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Triticum aestivum

Expression

Organism Comment Expression
Triticum aestivum for variety DH 338, under the drought treatment 1-FEH and 6-FEH activity increases are much less pronounced but increase strongly in the well-watered plants additional information

General Information

General Information Comment Organism
physiological function absence of strong 6-FEH activity increases (on a fresh weight basis), especially in the lower parts, during the most critical period of the onset of fructan degradation and fructose accumulation under drought. The combined 1-FEH and 6-FEH activities are particularly important during the later stages in drought treated DH 338. FEH dynamics under drought may play a more essential role in var. DH 307 than in var. DH 338 Triticum aestivum