Rapid evaluation of effective linear energy transfer in heavy-ion mutagenesis of Arabidopsis thaliana
-
- Kazama Yusuke
- RIKEN Innovation Center
-
- Ma Liqiu
- RIKEN Nishina Center Laboratory of Genetics, Department of Regulatory Biology, Faculty of Sciences, Saitama University
-
- Hirano Tomonari
- RIKEN Innovation Center
-
- Ohbu Sumie
- RIKEN Nishina Center
-
- Shirakawa Yuki
- RIKEN Nishina Center
-
- Hatakeyama Shin
- Laboratory of Genetics, Department of Regulatory Biology, Faculty of Sciences, Saitama University
-
- Tanaka Shuuitsu
- Laboratory of Genetics, Department of Regulatory Biology, Faculty of Sciences, Saitama University
-
- Abe Tomoko
- RIKEN Innovation Center RIKEN Nishina Center
書誌事項
- タイトル別名
-
- Rapid evaluation of effective linear energy transfer in heavy-ion mutagenesis of <i>Arabidopsis thaliana</i>
- Rapid evaluation of effective linear energy transfer in heavy-ion mutagenesis in Arabidopsis thaliana
この論文をさがす
説明
Heavy-ion beams are an effective mutagen for use in plant breeding and analyses of gene function. Heavy-ion beams have high linear energy transfer (LET) and thus they effectively induce DNA double-strand breaks. To rapidly evaluate effective LETs for inducing mutations, we investigated mutation frequencies in the M1 generation using the Arabidopsis heterozygous mutant of the ALBINO PALE GREEN 3 gene. Leaves of heterozygous plants in which intact alleles were mutated showed white sectors. We irradiated heterozygous plants with heavy-ion beams with LETs ranging from 22.5 to 61.5 keV µm-1 and doses ranging from 0 to 450 Gy. The results showed that the effect of LETs could be classified into three types: first, the LET of 22.5 keV µm-1 did not effectively induce mutations, regardless of the dose; second, LETs of 30.0 or 42.5 keV µm-1 were not effective at low doses (100–200 Gy) but were effective at 300 Gy; third, LETs of 50.0 or 61.5 keV µm-1 produced comparatively high mutation frequencies at all doses. Irradiation with 42.5–61.5 keV µm-1 reduced seed productivity at the dose providing the highest mutation frequencies (300 Gy). We concluded that an LET of 30.0 keV µm-1 was optimal for obtaining Arabidopsis thaliana mutants in the M2 generation.
収録刊行物
-
- Plant Biotechnology
-
Plant Biotechnology 29 (5), 441-445, 2012
日本植物バイオテクノロジー学会
- Tweet
キーワード
詳細情報 詳細情報について
-
- CRID
- 1390001204329138688
-
- NII論文ID
- 130002500889
- 40019545204
-
- NII書誌ID
- AA11250821
-
- COI
- 1:CAS:528:DC%2BC3sXps1CgsL8%3D
-
- ISSN
- 13476114
- 13424580
-
- NDL書誌ID
- 024195439
-
- 本文言語コード
- en
-
- データソース種別
-
- JaLC
- NDL
- Crossref
- CiNii Articles
- KAKEN
-
- 抄録ライセンスフラグ
- 使用不可