| Literature DB >> 22702718 |
Philip R Young1, Justin G Lashbrooke, Erik Alexandersson, Dan Jacobson, Claudio Moser, Riccardo Velasco, Melané A Vivier.
Abstract
BACKGROUND: Carotenoids are a heterogeneous group of plant isoprenoids primarily involved in photosynthesis. In plants the cleavage of carotenoids leads to the formation of the phytohormones abscisic acid and strigolactone, and C13-norisoprenoids involved in the characteristic flavour and aroma compounds in flowers and fruits and are of specific importance in the varietal character of grapes and wine. This work extends the previous reports of carotenoid gene expression and photosynthetic pigment analysis by providing an up-to-date pathway analysis and an important framework for the analysis of carotenoid metabolic pathways in grapevine.Entities:
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Year: 2012 PMID: 22702718 PMCID: PMC3484060 DOI: 10.1186/1471-2164-13-243
Source DB: PubMed Journal: BMC Genomics ISSN: 1471-2164 Impact factor: 3.969
Figure 1Molecular phylogenetic tree of the carotenoid biosynthetic/catabolic genes from (At-) and the identified (Vv-) orthologues listed in Additional file : Table SM1. The tree was generated using PhyML with default parameters.
Sequence information and related accessions
| YES | 1317 | 3837 | TC43355 | Vvi.4169 | LG4 | LG4 | |
| YES | 1749 | 26291 | CN007512 | Vvi.17887 | ND9 | LG9 | |
| YES | 1752 | 12807 | TC4818 | Vvi.6755 | LG14 | LG14 | |
| YES | 1593 | 6670 | TC49056 | Vvi.11880 | LG11 | LG11 | |
| YES | 1692 | 5244 | EC943050 | None10 | LG8 | LG8 | |
| YES | 1515 | 1515 | TC50860 | Vvi.2624 | LG8 | LG8 | |
| YES | 1494 | 1494 | EC925449 | Vvi.18979 | LG6 | LG6 | |
| YES | 900 | 1660 | TC42069 | Vvi.2348 | LG2 | LG2 | |
| YES | 1977 | 7524 | TC46508 | Vvi.1307 | LG7 | LG7 | |
| YES | 1440 | 4971 | TC47195 | Vvi.1247 | LG4 | LG4 | |
| YES | 1833 | 1833 | TC48377 | Vvi.509 | LG19 | LG19 | |
1 cTP: Softberry ProtComp (http://www.softberry.com/berry.phtml) prediction for a chloroplast transit peptide.
2 The size in base pairs of the cDNA copy of the gene from the predicted ATG to the predicted STOP codon;
3 The size in base pairs of the genomic copy of the gene from the predicted ATG to the predicted STOP codon;
4 The DFCI TIGR (http://www.tigr.org) accession number(s) of tentative consensus sequence corresponding to the isolated gene;
5 The Unigene (http://www.ncbi.nlm.nih.gov/unigene) accession numbers(s) corresponding to the isolated gene;
6 The grapevine linkage group (LG) associated with the isolated gene;
7 The heterozygous ENTAV115 Pinot noir genome sequence from IASMA (http://genomics.research.iasma.it/iasma/);
8 The homozygous PN40024 Pinot noir genome sequence from Genoscope (http://www.cns.fr/spip/Vitis-vinifera-whole-genome.html);
9 ND: Not determined; could not be mapped to the ENTAV115 genomic sequence.
10 None: No associated Vitis Unigene(s) (http://www.ncbi.nlm.nih.gov/UniGene/UGOrg.cgi?TAXID=29760).
Percentage identity of the predicted protein sequences of the carotenoid metabolic genes (expressed relative to the orthologue)
| VV02G00220 100% | AT4G25700 66.24% | PT00G07815 66.67% | OS03G03370 68.04% | |
| | | | | |
| VV08G13950 100% | AT3G53130 76.68% | PT00G01240 80.33% | OS10G39930 69.91% | |
| | | | | |
| VV08G15130 100% | AT3G10230 79.49% | PT16G03200 89.09% | OS02G09750 69.67% | |
| | | | | |
| VV00G44920 100% | No orthologue | PT09G01040 76.91% | No orthologue | |
| | | | | |
| VV11G01840 100% | AT5G57030 76.13% | PT06G09650 84.16% | OS01G39960 68.68% | |
| | | | | |
| VV19G09570 100% | AT3G14440 71.64% | PT11G07980 79.39% | OS03G44380 64.43% | |
| | | | | |
| VV09G00040 100% | AT4G14210 81.66% | PT14G09510 84.74% | OS03G08570 77.15% | |
| | | | | |
| VV00G37410 100% | AT5G17230 71.14% | PT00G07390 87.32% | OS06G51290 68.78% | |
| | | | | |
| VV00G14320 100% | AT1G08550 66.02% | PT13G04830 86.75% | OS04G31040 | |
| | | | | |
| VV14G05860 100% | AT3G04870 82.72% | PT00G12105 89.62% | OS07G10490 80.10% | |
| | | | | |
| VV07G11310 100% | AT5G67030 71.41% | PT05G05140 72.73% | OS04G37619 69.30% | |
1 Accession from Plaza 1.0 (April 2009): http://bioinformatics.psb.ugent.be/plaza_v1/.
2 Percentage identity calculated by pairwise alignments of protein sequences using Jalview.
The carotenoid metabolic genes: Gene families and the conservation of exon number
| | |||||||
|---|---|---|---|---|---|---|---|
| | |||||||
| | | | | | |||
| PSY | HOMO01375 | ORTHO001026 | VV00G37410 | AT5G17230 | PT00G07390 | OS06G51290 | 6 |
| | | | 6 (5) | 6 (5) | 6 (5) | 6 (5) | |
| PDS | HOM001528 | ORTHO003376 | VV09G00040 | AT4G14210 | PT14G09510 | OS03G08570 | 14 |
| | | | 14 (13) | 14 (13) | 14 (13) | 14 (13) | |
| ZDS | HOM001528 | ORTHO003216 | VV14G05860 | AT3G04870 | PT00G12105 | OS07G10490 | 14 ± 0.8 |
| | | | 14 (13) | 15 (14) | 14 (13) | 14 (13) | |
| CISO | HOM003569 | - | VV08G02490 | AT1G06820 | PT16G05590 | OS11G36440 | 13 |
| | | | 13 (12) | 13 (12) | 13 (12) | 13 (12) | |
| LECY | HOM001393 | ORTHO004775 | VV11G01840 | AT5G57030 | PT06G09650 | OS01G39960 | 9.5 ± 2.4 |
| | | | 11 (10) | 11 (10) | 6 (5) | 10 (9) | |
| ECH | HOM000057 | - | VV08G13950 | AT3G53130 | PT00G01240 | OS10G39930 | 9.3 ± 0.5 |
| | | | 9 (8) | 9 (8) | 9 (8) | 10 (9) | |
| LBCY | HOM001393 | ORTHO005684 | VV08G15130 | AT3G10230 | PT16G03200 | OS02G09750 | 1 |
| | | | 1 (0) | 1 (0) | 1 (0) | 1 (0) | |
| BCH | HOM002126 | - | VV02G00220 | AT4G25700 | PT00G07815 | OS03G03370 | 6.8 ± 0.5 |
| | | | 7 (6) | 7 (6) | 7 (6) | 6 (5) | |
| ZEP | HOM004000 | - | VV07G11310 | AT5G67030 | PT05G05140 | OS04G37619 | 16 |
| | | | 16 (15) | 16 (15) | 16 (15) | 16 (15) | |
| VDE | HOM005780 | - | VV00G14320 | AT1G08550 | PT13G04830 | OS04G31040 | 4.3 ± 1.5 |
| | | | 5 (4) | 5 (4) | 2 (1) | 5 (4) | |
| NSY | HOM001393 | ORTHO015350 | VV00G44920 | NA | PT09G01040 | NA | 1 |
| | | | 1 (0) | | 1 (0) | | |
| NCED | HOM000257 | ORTHO000562 | VV19G09570 | AT3G14440 | PT11G07980 | OS03G44380 | 1 |
| | | | 1 (0) | 1 (0) | 1 (0) | 1 (0) | |
| CCD | HOM000257 | ORTHO003354 | VV13G12530 | AT3G63520 | PT01G17700 | OS12G44310 | 14 |
| 14 (13) | 14 (13) | 14 (13) | 14 (13) | ||||
1Vitis vinifera sequence data from Genoscope v1: http://grup.bio.unipd.it/index.php/Grape_Genome.
2Arabidopsis thaliana sequence data from TAIR8: http://www.arabidopsis.org/.
3Populus trichocarpa sequence data from JGI 1.1: http://genome.jgi-psf.org/Poptr1_1/Poptr1_1.home.html.
4Oryza sativa sequence information from TIGR5: http://rice.plantbiology.msu.edu/.
5 Accession number from Plaza 1.0 (April 2009): (PLAZA v1: http://bioinformatics.psb.ugent.be/plaza_v1/).
6 The gene family that the homologues are group into (PLAZA v1: http://bioinformatics.psb.ugent.be/plaza_v1/).
7 The sub-family that the orthologues group into (PLAZA v1: http://bioinformatics.psb.ugent.be/plaza_v1/).
Functional complementation of grapevine carotenoid biosynthetic genes in
| pAC-LYC + pGEM (control) | 100.00 | ND1 | ND | ND | ND | ND | 100.00 |
| pAC-LYC + VvLBCY2 | 22.4 | ND | 72.1 | ND | ND | 5.5 | 100.00 |
| pAC-LYC + VvLECY1 | 57.90 | 42.10 | ND | ND | ND | ND | 100.00 |
| pAC-BETA + pGEM (control) | ND | ND | 100.00 | ND | ND | ND | 100.00 |
| pAC-BETA + VvBCH1 | ND | ND | 5.5 | 26.9 | 67.6 | ND | 100.00 |
| pAC-85b + pGEM (control) | ND | ND | ND | ND | ND | ND | ND |
| pAC-85b + VvPSY1 | ND | ND | 100.00 | ND | ND | ND | 100.00 |
1 “ND”, not detected.
Carotenoid accumulating E. coli cells were transformed with the respective cloned cDNA copies of the grapevine genes. The individual carotenoids analysed are expressed as percentages of the total pigments formed (standard error ≤ 5% (n ≥ 3).
Figure 2Pathway analysis of the carotenoid biosynthetic and catabolic pathways. A Mapman heat map representation of the relative changes in gene and metabolites levels at the three stages of berry development (E-L stage 31, -34 and −38). The values for the transcripts (squares) and carotenoids (circles) have been log2-scaled and mean centred. The amplitude of the carotenoid values are scaled up 100x for visualisation. Refer to Additional file 3: Table SM2 (expression values) and Additional file 5: Table SM3 (carotenoid concentrations) for the absolute values.
Figure 3Hierarchical cluster analysis of the expression and metabolites of the carotenoid biosynthetic and catabolic pathway.