The maize glossy13 gene, cloned via BSR-Seq and Seq-walking encodes a putative ABC transporter required for the normal accumulation of epicuticular waxes.

Aerial plant surfaces are covered by epicuticular waxes that among other purposes serve to control water loss. Maize glossy mutants originally identified by their "glossy" phenotypes exhibit alterations in the accumulation of epicuticular waxes. By combining data from a BSR-Seq experiment...

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Autores principales: Li Li, Delin Li, Sanzhen Liu, Xiaoli Ma, Charles R Dietrich, Heng-Cheng Hu, Gaisheng Zhang, Zhiyong Liu, Jun Zheng, Guoying Wang, Patrick S Schnable
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Publicado: Public Library of Science (PLoS) 2013
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spelling oai:doaj.org-article:0920b2771cb04805865eac535b12cf272021-11-18T08:43:07ZThe maize glossy13 gene, cloned via BSR-Seq and Seq-walking encodes a putative ABC transporter required for the normal accumulation of epicuticular waxes.1932-620310.1371/journal.pone.0082333https://doaj.org/article/0920b2771cb04805865eac535b12cf272013-01-01T00:00:00Zhttps://www.ncbi.nlm.nih.gov/pmc/articles/pmid/24324772/?tool=EBIhttps://doaj.org/toc/1932-6203Aerial plant surfaces are covered by epicuticular waxes that among other purposes serve to control water loss. Maize glossy mutants originally identified by their "glossy" phenotypes exhibit alterations in the accumulation of epicuticular waxes. By combining data from a BSR-Seq experiment and the newly developed Seq-Walking technology, GRMZM2G118243 was identified as a strong candidate for being the glossy13 gene. The finding that multiple EMS-induced alleles contain premature stop codons in GRMZM2G118243, and the one knockout allele of gl13, validates the hypothesis that gene GRMZM2G118243 is gl13. Consistent with this, GRMZM2G118243 is an ortholog of AtABCG32 (Arabidopsis thaliana), HvABCG31 (barley) and OsABCG31 (rice), which encode ABCG subfamily transporters involved in the trans-membrane transport of various secondary metabolites. We therefore hypothesize that gl13 is involved in the transport of epicuticular waxes onto the surfaces of seedling leaves.Li LiDelin LiSanzhen LiuXiaoli MaCharles R DietrichHeng-Cheng HuGaisheng ZhangZhiyong LiuJun ZhengGuoying WangPatrick S SchnablePublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 8, Iss 12, p e82333 (2013)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Li Li
Delin Li
Sanzhen Liu
Xiaoli Ma
Charles R Dietrich
Heng-Cheng Hu
Gaisheng Zhang
Zhiyong Liu
Jun Zheng
Guoying Wang
Patrick S Schnable
The maize glossy13 gene, cloned via BSR-Seq and Seq-walking encodes a putative ABC transporter required for the normal accumulation of epicuticular waxes.
description Aerial plant surfaces are covered by epicuticular waxes that among other purposes serve to control water loss. Maize glossy mutants originally identified by their "glossy" phenotypes exhibit alterations in the accumulation of epicuticular waxes. By combining data from a BSR-Seq experiment and the newly developed Seq-Walking technology, GRMZM2G118243 was identified as a strong candidate for being the glossy13 gene. The finding that multiple EMS-induced alleles contain premature stop codons in GRMZM2G118243, and the one knockout allele of gl13, validates the hypothesis that gene GRMZM2G118243 is gl13. Consistent with this, GRMZM2G118243 is an ortholog of AtABCG32 (Arabidopsis thaliana), HvABCG31 (barley) and OsABCG31 (rice), which encode ABCG subfamily transporters involved in the trans-membrane transport of various secondary metabolites. We therefore hypothesize that gl13 is involved in the transport of epicuticular waxes onto the surfaces of seedling leaves.
format article
author Li Li
Delin Li
Sanzhen Liu
Xiaoli Ma
Charles R Dietrich
Heng-Cheng Hu
Gaisheng Zhang
Zhiyong Liu
Jun Zheng
Guoying Wang
Patrick S Schnable
author_facet Li Li
Delin Li
Sanzhen Liu
Xiaoli Ma
Charles R Dietrich
Heng-Cheng Hu
Gaisheng Zhang
Zhiyong Liu
Jun Zheng
Guoying Wang
Patrick S Schnable
author_sort Li Li
title The maize glossy13 gene, cloned via BSR-Seq and Seq-walking encodes a putative ABC transporter required for the normal accumulation of epicuticular waxes.
title_short The maize glossy13 gene, cloned via BSR-Seq and Seq-walking encodes a putative ABC transporter required for the normal accumulation of epicuticular waxes.
title_full The maize glossy13 gene, cloned via BSR-Seq and Seq-walking encodes a putative ABC transporter required for the normal accumulation of epicuticular waxes.
title_fullStr The maize glossy13 gene, cloned via BSR-Seq and Seq-walking encodes a putative ABC transporter required for the normal accumulation of epicuticular waxes.
title_full_unstemmed The maize glossy13 gene, cloned via BSR-Seq and Seq-walking encodes a putative ABC transporter required for the normal accumulation of epicuticular waxes.
title_sort maize glossy13 gene, cloned via bsr-seq and seq-walking encodes a putative abc transporter required for the normal accumulation of epicuticular waxes.
publisher Public Library of Science (PLoS)
publishDate 2013
url https://doaj.org/article/0920b2771cb04805865eac535b12cf27
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