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Satoko Sekida

Explore the profile of Satoko Sekida including associated specialties, affiliations and a list of published articles. Areas
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Articles 15
Citations 53
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Recent Articles
1.
Kawamura K, Sekida S, Nishitsuji K, Satoh N
Dev Growth Differ . 2025 Feb; PMID: 39982014
In previous studies, we have established approximately 15 cultured cell-lines derived from planula larvae of Acropora tenuis. Based on their morphology and behavior, these cells were classified into three types,...
2.
Kimura-Nagano Y, Kishimoto K, Sekida S, Kawamura K
Dev Dyn . 2024 Oct; PMID: 39436036
Background: The branchial epithelium is one of the main tissues in which histone H3K4 trimethylation (H3K4me3) occurs in the budding tunicate, Polyandrocarpa misakiensis. It contains proliferating and undifferentiated cell aggregates...
3.
Pepino M, Manalili S, Sekida S, Mezaki T, Okumura T, Kubota S
PeerJ . 2024 Apr; 12:e17182. PMID: 38646482
Background: , a prized resource in Japan, plays a vital role in traditional arts and fishing industries. Because of diminished stock due to overexploitation, ongoing efforts are focused on restoration...
4.
Kawamura K, Shoguchi E, Nishitsuji K, Sekida S, Narisoko H, Zhao H, et al.
Zoolog Sci . 2023 Dec; 40(6):444-454. PMID: 38064371
Coral-dinoflagellate symbiosis is a unique biological phenomenon, in which animal cells engulf single-celled photosynthetic algae and maintain them in their cytoplasm mutualistically. Studies are needed to reveal the complex mechanisms...
5.
Mine I, Sekida S
Protoplasma . 2018 Apr; 255(5):1575-1579. PMID: 29675564
The cell walls of the giant-celled green alga Valonia exhibit the "crossed-fibril" arrangement of cellulose microfibrils (CMFs). The existence of fibrous matrix components coiling around the CMFs was recently reported...
6.
Ota S, Morita A, Ohnuki S, Hirata A, Sekida S, Okuda K, et al.
Sci Rep . 2018 Apr; 8(1):5617. PMID: 29618734
The unicellular green alga Haematococcus pluvialis accumulates large amounts of the red ketocarotenoid astaxanthin to protect against environmental stresses. Haematococcus cells that accumulate astaxanthin in the central part (green-red cyst...
7.
Mine I, Kinoshita U, Kawashima S, Sekida S
Protoplasma . 2018 Jan; 255(4):1253-1256. PMID: 29357043
The cells in the foliose thallus of trebouxiophycean alga Prasiola japonica apparently develop into 2 × 2 cell groups composed of two two-celled groups, each of which is a pair...
8.
Kawamura K, Yoshida T, Sekida S
Dev Biol . 2018 Jan; 433(2):384-393. PMID: 29291982
Asexual bud development in the budding tunicate Polyandrocarpa misakiensis involves transdifferentiation of multipotent epithelial cells, which is triggered by retinoic acid (RA), and thrives under starvation after bud isolation from...
9.
Sekida S, Iwasaki N, Okuda K
Zoolog Sci . 2016 Jun; 33(3):320-36. PMID: 27268987
Colonies of the Japanese red coral Corallium japonicum Kishinouye, 1903 collected off Cape Ashizuri, Japan were gonochoric and produced gonads in siphonozooids annually, mainly during the spring season. Polyp anatomy,...
10.
Taguchi T, Kubota S, Mezaki T, Tagami E, Sekida S, Nakachi S, et al.
Comp Cytogenet . 2016 May; 10(1):61-75. PMID: 27186338
Karyotype analysis was performed on the scleractinian coral Coelastrea aspera Verrill, 1866, commonly found along temperate coasts in Japan (30-35°N) and in coastal waters in the Indian and Pacific oceans....