Title : The simultaneous abolition of three starch hydrolases blocks transient starch breakdown in Arabidopsis.

Pub. Date : 2012 Dec 7

PMID : 23019330






5 Functional Relationships(s)
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Protein Name
Organism
1 We show that the chloroplastic alpha-amylase 3 (AMY3) also participates in starch degradation and provide evidence that all three enzymes can act directly at the starch granule surface. Starch alpha-amylase-like 3 Arabidopsis thaliana
2 We show that the chloroplastic alpha-amylase 3 (AMY3) also participates in starch degradation and provide evidence that all three enzymes can act directly at the starch granule surface. Starch alpha-amylase-like 3 Arabidopsis thaliana
3 We show that the chloroplastic alpha-amylase 3 (AMY3) also participates in starch degradation and provide evidence that all three enzymes can act directly at the starch granule surface. Starch alpha-amylase-like 3 Arabidopsis thaliana
4 We show that the chloroplastic alpha-amylase 3 (AMY3) also participates in starch degradation and provide evidence that all three enzymes can act directly at the starch granule surface. Starch alpha-amylase-like 3 Arabidopsis thaliana
5 However, removal of AMY3 or LDA in addition to ISA3 enhances the starch excess phenotype. Starch alpha-amylase-like 3 Arabidopsis thaliana