Xanthophyll acyl esters in pepper (Capsicum annuum): Delineating the role of two xanthophyll acyltransferases CaPYP1 and CaPYP1-like via gene silencing and genetic complementation.
Fu, J.; Rathinasabapathi, B.
Show abstract
Pepper fruit accumulated xanthophyll acyl esters during ripening. To characterize the genes involved, cDNAs for two putative xanthophyll acyltransferases named CaPYP1 and CaPYP1-like were cloned. The deduced amino acid sequences of CaPYP1 and CaPYP1-like had conserved hydrolase and acyltransferase domains. Phylogenetic analyses showed that both putative acyl transferases were conserved in Viridiplantae, suggesting important functions for both. CaPYP1 and CaPYP1-like GFP-fusion proteins were localized in the plastid when expressed in leaf tissue. Gene expression analyses indicated that both genes for CaPYP1 and CaPYP1-like were most expressed in ripening fruit (52 to 64 days after anthesis) and senescent leaf, CaPYP1 having relatively greater expression than CaPYP1-like. In virus-induced gene silencing experiments in pepper, xanthophyll esterification was greatly diminished when CaPYP1 was silenced with a simultaneous change in the ripening fruits color from dark red to bright red. In complementation tests, overexpression of CaPYP1 in a tomato mutant impaired for petal coloration and xanthophyll esterification, resulted in restoration of the petal color and the synthesis of both mono, diacyl and tri esters of xanthophylls. CaPYP1-like overexpression in the same genetic background resulted in the synthesis of relatively smaller amounts of xanthophyll monoesters. In an in vitro test, zeaxanthin was more sensitive to light than zeaxanthin dipalmitate but both were protected when triacylglycerol was mixed with it, suggesting that acyl moieties could improve xanthophyll stability. Together our results indicate that xanthophyll esterification during pepper fruit ripening is important for fruit color, xanthophyll accumulation and stability and is orchestrated by both CaPYP1 and CaPYP1-like with CaPYP1 playing a major role. HighlightRipening pepper fruit accumulates xanthophyll fatty acyl esters associated with nutritional quality and fruit color. The fruit expresses CaPYP1 and CaPYP1-like, two putative acyltransferases in their chromoplasts. In a tomato mutant impaired for xanthophyll esterification, transgenic expression of CaPYP1 promoted more xanthophyll esterification in ripe fruit than expressing CaPYP1-like.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Activation of alternative oxidase ensures carbon supply for ethylene and carotenoid biosynthesis during tomato fruit ripening 95%
- Genome-Wide Discovery and Characterization of Terpene Synthases Contributing to Strawberry Aroma Metabolism 94%
- miR858a-encoded peptide, miPEP858a, interacts with miR858a promoter and requires C-terminus for the associated functions 93%
Similar papers in this journal
- Phytoene synthase 2 in tomato fruits remains functional and contributes to abscisic acid formation 95%
- Yellow-Fruited Phenotype is Caused by an Insertion Event at 5' UTR of YFT1 Allele in yft1 Mutant Tomato 94%
- Structure-function relationship of Gossypium hirsutum NAC transcription factor, GhNAC4 with regard to ABA and abiotic stress responses 93%
Similar papers in this journal
- CRISPR/Cas9 gene editing uncovers the role of CTR1 and ROS1 in melon fruit ripening and epigenetic regulation 94%
- βVPE is involved in tapetal degradation and pollen development by activating proprotease maturation in Arabidopsis thaliana 93%
- Steroidal glycoalkaloids contribute to anthracnose resistance in Solanum lycopersicum 93%
Similar papers in this journal
- Optimization of Agrobacterium-mediated transformation of commercial heirloom tomato cultivars to develop novel traits via CRISPR/Cas9 Genome Editing 93%
- Nectar- and stigma-specific expression of a chitinase could partially protect against fire blight in certain apples 92%
- Novel insights into expansion and functional diversification of MIR169 family in tomato 92%
Similar papers in this journal
- ABIOTIC STRESS GENE 1 mediates aroma volatiles accumulation by activating MdLOX1a in apple 93%
- An LTR retrotransposon in the promoter of a PsMYB10.2 gene associated with the regulation of fruit flesh color in Japanese plum 93%
- Editing the CsDMR6 Gene in Citrus Results in Resistance to the Bacterial Disease Citrus Canker 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.