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Shuji Yokoi

Explore the profile of Shuji Yokoi including associated specialties, affiliations and a list of published articles. Areas
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Articles 32
Citations 2253
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Recent Articles
1.
Shiragaki K, Seko S, Yokoi S, Tezuka T
PLoS One . 2022 Jul; 17(7):e0271091. PMID: 35802562
Reproductive isolation, including hybrid weakness, plays an important role in the formation of species. Hybrid weakness in Capsicum, the cessation of plant growth, is caused by two complementary dominant genes,...
2.
He H, Sadahisa K, Yokoi S, Tezuka T
Front Plant Sci . 2022 Jun; 13:899206. PMID: 35665169
Enhanced ovary abscission after pollination and hybrid seed lethality result in post-zygotic reproductive isolation in plant interspecific crosses. However, the connection between these barriers remains unclear. Here, we report that...
3.
Tezuka T, Kitamura N, Imagawa S, Hasegawa A, Shiragaki K, He H, et al.
Plants (Basel) . 2021 Oct; 10(10). PMID: 34685871
Hybrid lethality, a postzygotic mechanism of reproductive isolation, is a phenomenon that causes the death of F hybrid seedlings. Hybrid lethality is generally caused by the epistatic interaction of two...
4.
Shiragaki K, Furukawa H, Yokoi S, Tezuka T
J Plant Res . 2021 Sep; 134(6):1199-1211. PMID: 34468920
In plants, F hybrids showing hybrid weakness exhibit weaker growth than their parents. The phenotypes of hybrid weakness are often suppressed at certain temperatures. However, it is unclear whether hybrid...
5.
Kawaguchi K, Ohya Y, Maekawa M, Iizuka T, Hasegawa A, Shiragaki K, et al.
Sci Rep . 2021 Aug; 11(1):17093. PMID: 34429461
Hybrid lethality, meaning the death of F hybrid seedlings, has been observed in many plant species, including Nicotiana. Previously, we have revealed that hybrids of the selected Nicotiana occidentalis accession...
6.
Shiragaki K, Yokoi S, Tezuka T
Breed Sci . 2020 Sep; 70(4):430-437. PMID: 32968345
Hybrid weakness in is characterized by the termination of leaf differentiation after the development of several leaves. F plants in some crosses between and show weakness; this phenomenon has not...
7.
He H, Yokoi S, Tezuka T
Plant Direct . 2020 Aug; 4(8):e00257. PMID: 32821875
Significance Statement: We demonstrate that a stepwise increase in maternal ploidy results in a stepwise increase in seed abortion severity, leading to ovary abscission in plants. We propose a model...
8.
Hashimoto S, Tezuka T, Yokoi S
Planta . 2019 Jul; 250(5):1557-1566. PMID: 31359138
Morphological and genetic markers indicate that in sorghum, the juvenile-to-adult phase transition occurs during the fourth and fifth leaf stages. This timing differs from those reported for other plants. The...
9.
Zaki H, Yokoi S
Plant Biotechnol (Tokyo) . 2019 Jul; 33(5):361-372. PMID: 31274997
Salinity stress is a major abiotic stress for plants worldwide. This study was carried out to determine the variation in salt tolerance for 12 different genotypes belonging to three different...
10.
He H, Iizuka T, Maekawa M, Sadahisa K, Morikawa T, Yanase M, et al.
J Plant Res . 2019 May; 132(4):461-471. PMID: 31115709
Reproductive isolation, including prezygotic and postzygotic barriers, is a mechanism that separates species. Many species in the Nicotiana section Suaveolentes exhibit reproductive isolation in crosses with Nicotiana tabacum. In this...