Cargando…
The Cer-cqu gene cluster determines three key players in a β-diketone synthase polyketide pathway synthesizing aliphatics in epicuticular waxes
Aliphatic compounds on plant surfaces, called epicuticular waxes, are the first line of defense against pathogens and pests, contribute to reducing water loss and determine other important phenotypes. Aliphatics can form crystals affecting light refraction, resulting in a color change and allowing i...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4861019/ https://www.ncbi.nlm.nih.gov/pubmed/26962211 http://dx.doi.org/10.1093/jxb/erw105 |
_version_ | 1782431164147957760 |
---|---|
author | Schneider, Lizette M Adamski, Nikolai M Christensen, Caspar Elo Stuart, David B Vautrin, Sonia Hansson, Mats Uauy, Cristobal von Wettstein-Knowles, Penny |
author_facet | Schneider, Lizette M Adamski, Nikolai M Christensen, Caspar Elo Stuart, David B Vautrin, Sonia Hansson, Mats Uauy, Cristobal von Wettstein-Knowles, Penny |
author_sort | Schneider, Lizette M |
collection | PubMed |
description | Aliphatic compounds on plant surfaces, called epicuticular waxes, are the first line of defense against pathogens and pests, contribute to reducing water loss and determine other important phenotypes. Aliphatics can form crystals affecting light refraction, resulting in a color change and allowing identification of mutants in their synthesis or transport. The present study discloses three such Eceriferum (cer) genes in barley – Cer-c, Cer-q and Cer-u – known to be tightly linked and functioning in a biochemical pathway forming dominating amounts of β-diketone and hydroxy-β-diketones plus some esterified alkan-2-ols. These aliphatics are present in many Triticeae as well as dicotyledons such as Eucalyptus and Dianthus. Recently developed genomic resources and mapping populations in barley defined these genes to a small region on chromosome arm 2HS. Exploiting Cer-c and -u potential functions pinpointed five candidates, of which three were missing in apparent cer-cqu triple mutants. Sequencing more than 50 independent mutants for each gene confirmed their identification. Cer-c is a chalcone synthase-like polyketide synthase, designated diketone synthase (DKS), Cer-q is a lipase/carboxyl transferase and Cer-u is a P450 enzyme. All were highly expressed in pertinent leaf sheath tissue of wild type. A physical map revealed the order Cer-c, Cer-u, Cer-q with the flanking genes 101kb apart, confirming they are a gene cluster, Cer-cqu. Homology-based modeling suggests that many of the mutant alleles affect overall protein structure or specific active site residues. The rich diversity of identified mutations will facilitate future studies of three key enzymes involved in synthesis of plant apoplast waxes. |
format | Online Article Text |
id | pubmed-4861019 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-48610192016-05-10 The Cer-cqu gene cluster determines three key players in a β-diketone synthase polyketide pathway synthesizing aliphatics in epicuticular waxes Schneider, Lizette M Adamski, Nikolai M Christensen, Caspar Elo Stuart, David B Vautrin, Sonia Hansson, Mats Uauy, Cristobal von Wettstein-Knowles, Penny J Exp Bot Research Paper Aliphatic compounds on plant surfaces, called epicuticular waxes, are the first line of defense against pathogens and pests, contribute to reducing water loss and determine other important phenotypes. Aliphatics can form crystals affecting light refraction, resulting in a color change and allowing identification of mutants in their synthesis or transport. The present study discloses three such Eceriferum (cer) genes in barley – Cer-c, Cer-q and Cer-u – known to be tightly linked and functioning in a biochemical pathway forming dominating amounts of β-diketone and hydroxy-β-diketones plus some esterified alkan-2-ols. These aliphatics are present in many Triticeae as well as dicotyledons such as Eucalyptus and Dianthus. Recently developed genomic resources and mapping populations in barley defined these genes to a small region on chromosome arm 2HS. Exploiting Cer-c and -u potential functions pinpointed five candidates, of which three were missing in apparent cer-cqu triple mutants. Sequencing more than 50 independent mutants for each gene confirmed their identification. Cer-c is a chalcone synthase-like polyketide synthase, designated diketone synthase (DKS), Cer-q is a lipase/carboxyl transferase and Cer-u is a P450 enzyme. All were highly expressed in pertinent leaf sheath tissue of wild type. A physical map revealed the order Cer-c, Cer-u, Cer-q with the flanking genes 101kb apart, confirming they are a gene cluster, Cer-cqu. Homology-based modeling suggests that many of the mutant alleles affect overall protein structure or specific active site residues. The rich diversity of identified mutations will facilitate future studies of three key enzymes involved in synthesis of plant apoplast waxes. Oxford University Press 2016-04 2016-03-09 /pmc/articles/PMC4861019/ /pubmed/26962211 http://dx.doi.org/10.1093/jxb/erw105 Text en © The Author 2016. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Paper Schneider, Lizette M Adamski, Nikolai M Christensen, Caspar Elo Stuart, David B Vautrin, Sonia Hansson, Mats Uauy, Cristobal von Wettstein-Knowles, Penny The Cer-cqu gene cluster determines three key players in a β-diketone synthase polyketide pathway synthesizing aliphatics in epicuticular waxes |
title | The Cer-cqu gene cluster determines three key players in a β-diketone synthase polyketide pathway synthesizing aliphatics in epicuticular waxes |
title_full | The Cer-cqu gene cluster determines three key players in a β-diketone synthase polyketide pathway synthesizing aliphatics in epicuticular waxes |
title_fullStr | The Cer-cqu gene cluster determines three key players in a β-diketone synthase polyketide pathway synthesizing aliphatics in epicuticular waxes |
title_full_unstemmed | The Cer-cqu gene cluster determines three key players in a β-diketone synthase polyketide pathway synthesizing aliphatics in epicuticular waxes |
title_short | The Cer-cqu gene cluster determines three key players in a β-diketone synthase polyketide pathway synthesizing aliphatics in epicuticular waxes |
title_sort | cer-cqu gene cluster determines three key players in a β-diketone synthase polyketide pathway synthesizing aliphatics in epicuticular waxes |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4861019/ https://www.ncbi.nlm.nih.gov/pubmed/26962211 http://dx.doi.org/10.1093/jxb/erw105 |
work_keys_str_mv | AT schneiderlizettem thecercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT adamskinikolaim thecercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT christensencasparelo thecercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT stuartdavidb thecercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT vautrinsonia thecercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT hanssonmats thecercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT uauycristobal thecercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT vonwettsteinknowlespenny thecercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT schneiderlizettem cercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT adamskinikolaim cercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT christensencasparelo cercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT stuartdavidb cercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT vautrinsonia cercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT hanssonmats cercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT uauycristobal cercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes AT vonwettsteinknowlespenny cercqugeneclusterdeterminesthreekeyplayersinabdiketonesynthasepolyketidepathwaysynthesizingaliphaticsinepicuticularwaxes |