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Literature summary for 2.3.1.158 extracted from

  • Yuan, L.; Mao, X.; Zhao, K.; Ji, X.; Ji, C.; Xue, J.; Li, R.
    Characterisation of phospholipid diacylglycerol acyltransferases (PDATs) from Camelina sativa and their roles in stress responses (2017), Biol. Open, 6, 1024-1034 .
    View publication on PubMedView publication on EuropePMC

Cloned(Commentary)

Cloned (Comment) Organism
expression in tobacco leaves. The gene shows phospholipid diacylglycerol acyltransferase enzymatic activity and substantially increased triacylglycerol accumulation in the leaves Camelina sativa
expression in tobacco leaves. The gene shows phospholipid diacylglycerol acyltransferase enzymatic activity and substantially increased triacylglycerol accumulation in the leaves. CsPDAT1-A shows a higher preference for alpha-linolenic acid (18:3 omega-3) Camelina sativa

Molecular Weight [Da]

Molecular Weight [Da] Molecular Weight Maximum [Da] Comment Organism
65953
-
calculation from sequence, CsPDAT1-B Camelina sativa
73627
-
calculation from sequence, CsPDAT2-A Camelina sativa
73721
-
calculation from sequence, CsPDAT2-B Camelina sativa
74301
-
calculation from sequence, CsPDAT1-A Camelina sativa
74321
-
calculation from sequence, CsPDAT1-C Camelina sativa

Organism

Organism UniProt Comment Textmining
Camelina sativa XP_010419957.1
-
-
Camelina sativa XP_010453452.1
-
-
Camelina sativa XP_010492131.1
-
-
Camelina sativa XP_010503132.1
-
-
Camelina sativa XP_010514811.1
-
-

Source Tissue

Source Tissue Comment Organism Textmining
flower CsPDAT1-C preferentially accumulates in flower and leaf tissues Camelina sativa
-
flower low activity, CsPDAT1-A Camelina sativa
-
flower low activity, CsPDAT1-B Camelina sativa
-
flower low activity, CsPDAT2-A Camelina sativa
-
flower low activity, CsPDAT2-B Camelina sativa
-
leaf CsPDAT1-C preferentially accumulates in flower and leaf tissues Camelina sativa
-
leaf low activity, CsPDAT1-A Camelina sativa
-
leaf low activity, CsPDAT1-B Camelina sativa
-
leaf low activity, CsPDAT2-A Camelina sativa
-
leaf low activity, CsPDAT2-B Camelina sativa
-
additional information different members of Camelina sativa phospholipid diacylglycerol acyltransferase family contribute to triacylglycerol synthesis in different tissues Camelina sativa
-
root high expression of CsPDAT2-A is detected in stem and root tissues Camelina sativa
-
root high expression of CsPDAT2-B is detected in stem and root tissues Camelina sativa
-
root low activity, CsPDAT1-A Camelina sativa
-
root low activity, CsPDAT1-B Camelina sativa
-
root low activity, CsPDAT1-C Camelina sativa
-
seed CsPDAT1-A is mainly expressed in seeds Camelina sativa
-
seed intermediate activity, CsPDAT1-C Camelina sativa
-
seed low activity, CsPDAT1-B Camelina sativa
-
seed low activity, CsPDAT2-A Camelina sativa
-
seed low activity, CsPDAT2-B Camelina sativa
-
stem high expression of CsPDAT2-A is detected in stem and root tissues Camelina sativa
-
stem high expression of CsPDAT2-B is detected in stem and root tissues Camelina sativa
-
stem low activity, CsPDAT1-A Camelina sativa
-
stem low activity, CsPDAT1-B Camelina sativa
-
stem low activity, CsPDAT1-C Camelina sativa
-

Synonyms

Synonyms Comment Organism
CsPDAT1-A
-
Camelina sativa
CsPDAT1-B
-
Camelina sativa
CsPDAT1-C
-
Camelina sativa
CsPDAT2-A
-
Camelina sativa
CsPDAT2-B
-
Camelina sativa
PDAT
-
Camelina sativa

pI Value

Organism Comment pI Value Maximum pI Value
Camelina sativa calculated from sequence, CsPDAT1-B
-
6.05
Camelina sativa calculated from sequence, CsPDAT2-B
-
6.05
Camelina sativa calculated from sequence, CsPDAT1-A
-
6.33
Camelina sativa calculated from sequence, CsPDAT1-C
-
6.43
Camelina sativa calculated from sequence, CsPDAT2-A
-
8.56
Camelina sativa calculated from sequence, CsPDAT2-B
-
8.61

Expression

Organism Comment Expression
Camelina sativa drought treatment results in a reduction of CsPDAT2-B expression down
Camelina sativa cold stress induces upregulation of CsPDAT1-A expression by 3.5fold compared to the control up
Camelina sativa cold stress induces upregulation of CsPDAT1-C expression by 2.5fold compared to the control up
Camelina sativa drought treatment results in an enhancement of CsPDAT2-A mRNAs by twofold up
Camelina sativa osmotic stress upregulates the expression of CsPDAT1-C by 3.3fold up
Camelina sativa salt stress leads to an increase in CsPDAT2-B transcript by 5.1fold up

General Information

General Information Comment Organism
metabolism different members of Camelina sativa phospholipid diacylglycerol acyltransferase family are involved in different types of stress responses in camelina seedlings, providing evidence of their roles in oil biosynthesis and regulation in camelina vegetative tissue Camelina sativa
metabolism the enzyme catalyses the final acylation step in triacylglycerol biosynthesis by transferring a fatty acyl moiety from a phospholipid to diacylglycerol Camelina sativa