Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy.
Since their initial discovery, transposons have been widely used as mutagens for forward and reverse genetic screens in a range of organisms. The problems of high copy number and sequence divergence among related transposons have often limited the efficiency at which tagged genes can be identified....
Main Authors: | , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2014-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC3909067?pdf=render |
id |
doaj-eb384675594240e6b12dd929c8ba6897 |
---|---|
record_format |
Article |
spelling |
doaj-eb384675594240e6b12dd929c8ba68972020-11-24T21:34:05ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8705310.1371/journal.pone.0087053Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy.Thomas P HowardAndrew P HaywardAnthony TordillosChristopher FragosoMaria A MorenoJoe TohmeAlbert P KauschJohn P MottingerStephen L DellaportaSince their initial discovery, transposons have been widely used as mutagens for forward and reverse genetic screens in a range of organisms. The problems of high copy number and sequence divergence among related transposons have often limited the efficiency at which tagged genes can be identified. A method was developed to identity the locations of Mutator (Mu) transposons in the Zea mays genome using a simple enrichment method combined with genome resequencing to identify transposon junction fragments. The sequencing library was prepared from genomic DNA by digesting with a restriction enzyme that cuts within a perfectly conserved motif of the Mu terminal inverted repeats (TIR). Paired-end reads containing Mu TIR sequences were computationally identified and chromosomal sequences flanking the transposon were mapped to the maize reference genome. This method has been used to identify Mu insertions in a number of alleles and to isolate the previously unidentified lazy plant1 (la1) gene. The la1 gene is required for the negatively gravitropic response of shoots and mutant plants lack the ability to sense gravity. Using bioinformatic and fluorescence microscopy approaches, we show that the la1 gene encodes a cell membrane and nuclear localized protein. Our Mu-Taq method is readily adaptable to identify the genomic locations of any insertion of a known sequence in any organism using any sequencing platform.http://europepmc.org/articles/PMC3909067?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Thomas P Howard Andrew P Hayward Anthony Tordillos Christopher Fragoso Maria A Moreno Joe Tohme Albert P Kausch John P Mottinger Stephen L Dellaporta |
spellingShingle |
Thomas P Howard Andrew P Hayward Anthony Tordillos Christopher Fragoso Maria A Moreno Joe Tohme Albert P Kausch John P Mottinger Stephen L Dellaporta Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy. PLoS ONE |
author_facet |
Thomas P Howard Andrew P Hayward Anthony Tordillos Christopher Fragoso Maria A Moreno Joe Tohme Albert P Kausch John P Mottinger Stephen L Dellaporta |
author_sort |
Thomas P Howard |
title |
Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy. |
title_short |
Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy. |
title_full |
Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy. |
title_fullStr |
Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy. |
title_full_unstemmed |
Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy. |
title_sort |
identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2014-01-01 |
description |
Since their initial discovery, transposons have been widely used as mutagens for forward and reverse genetic screens in a range of organisms. The problems of high copy number and sequence divergence among related transposons have often limited the efficiency at which tagged genes can be identified. A method was developed to identity the locations of Mutator (Mu) transposons in the Zea mays genome using a simple enrichment method combined with genome resequencing to identify transposon junction fragments. The sequencing library was prepared from genomic DNA by digesting with a restriction enzyme that cuts within a perfectly conserved motif of the Mu terminal inverted repeats (TIR). Paired-end reads containing Mu TIR sequences were computationally identified and chromosomal sequences flanking the transposon were mapped to the maize reference genome. This method has been used to identify Mu insertions in a number of alleles and to isolate the previously unidentified lazy plant1 (la1) gene. The la1 gene is required for the negatively gravitropic response of shoots and mutant plants lack the ability to sense gravity. Using bioinformatic and fluorescence microscopy approaches, we show that the la1 gene encodes a cell membrane and nuclear localized protein. Our Mu-Taq method is readily adaptable to identify the genomic locations of any insertion of a known sequence in any organism using any sequencing platform. |
url |
http://europepmc.org/articles/PMC3909067?pdf=render |
work_keys_str_mv |
AT thomasphoward identificationofthemaizegravitropismgenelazyplant1byatransposontagginggenomeresequencingstrategy AT andrewphayward identificationofthemaizegravitropismgenelazyplant1byatransposontagginggenomeresequencingstrategy AT anthonytordillos identificationofthemaizegravitropismgenelazyplant1byatransposontagginggenomeresequencingstrategy AT christopherfragoso identificationofthemaizegravitropismgenelazyplant1byatransposontagginggenomeresequencingstrategy AT mariaamoreno identificationofthemaizegravitropismgenelazyplant1byatransposontagginggenomeresequencingstrategy AT joetohme identificationofthemaizegravitropismgenelazyplant1byatransposontagginggenomeresequencingstrategy AT albertpkausch identificationofthemaizegravitropismgenelazyplant1byatransposontagginggenomeresequencingstrategy AT johnpmottinger identificationofthemaizegravitropismgenelazyplant1byatransposontagginggenomeresequencingstrategy AT stephenldellaporta identificationofthemaizegravitropismgenelazyplant1byatransposontagginggenomeresequencingstrategy |
_version_ |
1725950486559850496 |