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Characterization of a PLDζ2 Homology Gene from Developing Castor Bean Endosperm 

 
论文编号:
作者: Tian B
刊物名称: Lipids
所属学科:
论文题目英文: Characterization of a PLDζ2 Homology Gene from Developing Castor Bean Endosperm
年: Mar 2020
卷: online
期:
页:
联系作者: Tian B
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影响因子: 2.144
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摘要:
Castor oil contains approximately 90% ricinoleic acid (RA) which is stored mainly in the form of triricinoleic acid containing triacylglycerols (TAG). Ricinoleate is synthesized from oleate (18:1n9) esterified to the sn2 position of phosphatidylcholine (PtdCho) catalyzed by oleoyl12hydroxylase. PtdChoderived diacylglycerol (DAG) is an important substrate pool for TAG synthesis, and the interconversion between PtdCho and DAG has been shown to play a critical role in channeling hydroxy fatty acids (HFA) to TAG. Although phospholipase D (PLD) has been reported to catalyze the hydrolysis of PtdCho to produce phosphatidic acid which can then be converted to DAG, its potential functions in the channeling of RA from PtdCho to DAG and the assembly of RA on TAG is largely unknown. In the present study, 11 PLD genes were identified from the Castor Bean Genome Database. Gene expression analysis indicated that RcPLD9 is expressed at relatively high levels in developing seeds compared to other plant tissues. Sequence and phylogenetic analyses revealed that RcPLD9 is a homolog of Arabidopsis PLDζ2. Overexpression of RcPLD9 in the Arabidopsis CL7 line producing C18HFA resulted in RA content reductions in the polar lipid fraction (mainly PtdCho) and monoHFATAG, but increased RA content in diHFATAG. Since part of RA in diHFATAG is derived from HFADAG, the results indicated that RcPLD9 facilitates the channeling of RA from PtdCho to DAG for its assembly on TAG in developing seeds.
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