日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Putative muscle stem cells promote Xenopus tail regeneration by modifying macrophage function via c1qtnf3

推测的肌肉干细胞通过c1qtnf3调节巨噬细胞功能,促进爪蟾尾部再生。

Kato, Sumika; Kubo, Takeo; Fukazawa, Taro

Analysis of molecular and cellular bases of honey bee mushroom body development

蜜蜂蘑菇体发育的分子和细胞基础分析

Kamata, Shuichi; Kubo, Takeo; Kohno, Hiroki

Unique spatially and temporary-regulated/sex-specific expression of a long ncRNA, Nb-1, suggesting its pleiotropic functions associated with honey bee lifecycle

长链非编码RNA Nb-1独特的空间和时间调控/性别特异性表达表明其具有与蜜蜂生命周期相关的多效性功能。

Tadano, Hiroto; Kohno, Hiroki; Takeuchi, Hideaki; Kubo, Takeo

Evolutionary dynamics of mushroom body Kenyon cell types in hymenopteran brains from multifunctional type to functionally specialized types

膜翅目昆虫脑中蘑菇体肯扬细胞类型的演化动态:从多功能类型到功能特化类型

Kuwabara, Takayoshi; Kohno, Hiroki; Hatakeyama, Masatsugu; Kubo, Takeo

Cellular responses in the FGF10-mediated improvement of hindlimb regenerative capacity in Xenopus laevis revealed by single-cell transcriptomics

单细胞转录组学揭示FGF10介导的非洲爪蟾后肢再生能力改善中的细胞反应

Yanagi, Nodoka; Kato, Sumika; Fukazawa, Taro; Kubo, Takeo

Neural activity mapping of bumble bee (Bombus ignitus) brains during foraging flight using immediate early genes

利用早期基因绘制熊蜂(Bombus ignitus)觅食飞行期间大脑的神经活动图谱

Iino, Shiori; Shiota, Yurika; Nishimura, Masakazu; Asada, Shinichi; Ono, Masato; Kubo, Takeo

Genetics in the Honey Bee: Achievements and Prospects toward the Functional Analysis of Molecular and Neural Mechanisms Underlying Social Behaviors

蜜蜂遗传学:社会行为分子和神经机制功能分析的成就与展望

Kohno, Hiroki; Kubo, Takeo

mKast is dispensable for normal development and sexual maturation of the male European honeybee.

mKast 对于雄性欧洲蜜蜂的正常发育和性成熟并非必需

Kohno Hiroki, Kubo Takeo

Kenyon Cell Subtypes/Populations in the Honeybee Mushroom Bodies: Possible Function Based on Their Gene Expression Profiles, Differentiation, Possible Evolution, and Application of Genome Editing

蜜蜂蘑菇体中肯扬细胞亚型/群体:基于基因表达谱的可能功能、分化、可能的进化以及基因组编辑的应用

Suenami, Shota; Oya, Satoyo; Kohno, Hiroki; Kubo, Takeo

Shotgun proteomics deciphered age/division of labor-related functional specification of three honeybee (Apis mellifera L.) exocrine glands

利用鸟枪法蛋白质组学解析了三种蜜蜂(Apis mellifera L.)外分泌腺与年龄/劳动分工相关的功能特征

Fujita, Toshiyuki; Kozuka-Hata, Hiroko; Hori, Yutaro; Takeuchi, Jun; Kubo, Takeo; Oyama, Masaaki