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Motonori Tomita

Explore the profile of Motonori Tomita including associated specialties, affiliations and a list of published articles. Areas
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Articles 21
Citations 57
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Recent Articles
1.
Tomita M, Tokuyama R
Life (Basel) . 2022 Aug; 12(8). PMID: 36013416
We developed semidwarf and late-maturing isogenics of Koshihikari to stabilize high yield and avoid high temperature maturation. Whole-genome analysis (WGS) was conducted to examine the transitional changes in the entire...
2.
Tomita M, Tokuyama R, Matsumoto S, Ishii K
Int J Genomics . 2022 Jan; 2022:4565977. PMID: 35036423
We identified the key genes controlling the late maturation of the Japonica cultivar Isehikari, which was found at Ise Jingu Shrine and matures 6 days later than Koshihikari. We conducted...
3.
Tomita M, Obara Y
Gene . 2022 Jan; 815:146166. PMID: 34995737
Genetic analysis on the year-round flowering gene e1, which was derived from Kanto No. 79, an induced mutant by Koshihikari gamma-ray irradiated, was conducted through the backcross process to combine...
4.
Tomita M, Yamashita M, Omichi A
Genet Mol Biol . 2021 Apr; 44(1):e20200207. PMID: 33901268
The vacuolar-type sodium/proton antiporter is considered to play an important role in withstanding salt stress by transporting sodium ions into vacuoles. In this study, the gene structures of three kinds...
5.
Tomita M, Kanzaki T, Tanaka E
J Appl Genet . 2021 Mar; 62(3):365-372. PMID: 33694103
The chromosomal locations of a new class of Revolver transposon-like elements were analyzed by using FISH method on the metaphase chromosome in somatic cell division of the rye cultivar Petkus....
6.
Tomita M, Tanisaka T
Biology (Basel) . 2019 Dec; 8(4). PMID: 31861219
The gametic lethal gene in combination with the semidwarfing gene causes complementary lethality in rice. Here, we attempted to ascertain the existence of and clarify male gamete abortion caused by...
7.
Tomita M, Yazawa S, Uenishi Y
Int J Mol Sci . 2019 Nov; 20(21). PMID: 31683680
Genetic analysis of "InochinoIchi," an exceptionally large grain rice variety, was conducted through five continuous backcrosses with Koshihikari as a recurrent parent using the large grain F plant in Koshihikari...
8.
Tomita M, Tanaka J
Genes (Basel) . 2019 Nov; 10(11). PMID: 31683634
The genotype of and were investigated in 33 rice varieties chosen from representative semidwarf and dwarf rice varieties. These were crossed with three tester lines, the line (genotype ), the...
9.
Tomita M, Ishimoto K
Plants (Basel) . 2019 Nov; 8(11). PMID: 31671610
Gene effects on the yield performance were compared among promising semidwarf genes, namely, novel gene , representative gene with different two source IR8 and Jukkoku, and double dwarf combinations of...
10.
Tomita M, Ishii K
Biomed Res Int . 2018 Jun; 2018:4241725. PMID: 29850513
The influence of the semidwarfing gene derived from the rice cultivar Jukkoku (Jukkoku) and IR8 (IR8), which contributed to the Green Revolution, from Hokuriku 100, as well as the combination...