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The LORE1 insertion mutant resource

delete2016-09-27
delete98
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OA
AI
A
Anna Małolepszy
T
Terry Mun
N
Niels Sandal
V
Vikas Gupta
M
Manu Dubin
D
Dorian Fabian Urbański
N
Niraj Shah
A
Asger Bachmann
E
Eigo Fukai
H
Hideki Hirakawa
S
Satoshi Tabata
M
Marcin Nadzieja
K
Katharina Markmann
J
Junyi Su
Y
Yosuke Umehara
T
Takashi Soyano
A
Akira Miyahara
S
Shusei Sato
M
Makoto Hayashi
J
Jens Stougaard
S
Stig Uggerhøj Andersen *
DOI:10.1111/tpj.13243delete
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Abstract

Abstract

En 中文
Long terminal repeat (LTR) retrotransposons are closely related to retroviruses, and their activities shape eukaryotic genomes. Here, we present a complete Lotus japonicus insertion mutant collection generated by identification of 640 653 new insertion events following de novo activation of the LTR element Lotus retrotransposon 1 (LORE1) (http://lotus.au.dk). Insertion preferences are critical for effective gene targeting, and we exploit our large dataset to analyse LTR element characteristics in this context. We infer the mechanism that generates the consensus palindromes typical of retroviral and LTR retrotransposon insertion sites, identify a short relaxed insertion site motif, and demonstrate selective integration into CHG-hypomethylated genes. These characteristics result in a steep increase in deleterious mutation rate following activation, and allow LORE1 active gene targeting to approach saturation within a population of 134 682 L. japonicus lines. We suggest that saturation mutagenesis using endogenous LTR retrotransposons with germinal activity can be used as a general and cost-efficient strategy for generation of non-transgenic mutant collections for unrestricted use in plant research.
Keywords:
Long terminal repeat retrotransposon
mutagenesis
palindrome
DNA methylation
Lotus japonicus
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Journal

Plant Journal cover
Plant Journal
IF:
5.7
Papers:
1.1W
Citations:
5.8W

Organization

V
vienna biocenter (vbc)
Scholars:
2.8K
Papers: 1.6K
Citations: 7
N
national institute of agrobiological sciences - japan
Scholars:
1.0K
Papers: 1.0K
Citations: 0
A
Aarhus University
Scholars:
4.3W
Papers: 4.2W
Citations: 4.8W
A
Austrian Academy of Sciences
Scholars:
4.9K
Papers: 3.9K
Citations: 8.2K
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