Identification and functional analysis of foxl2 and nodal in sea cucumber, Apostichopus japonicus [0.03%]
日本盘鲍Foxl2和Nodal基因的克隆及表达分析
Juan-Juan Sun,Zhi-Hui Sun,Jin-Liang Wei et al.
Juan-Juan Sun et al.
Sea cucumber (Apostichopus japonicus) is an important mariculture species in China. To date, the mechanisms of sex determination and differentiation in sea cucumber remain unclear. Identifying sex-specific molecular markers is an effective ...
Xiaogang An,Ye Wang,Bang Han et al.
Xiaogang An et al.
Background: Mammalian inner ear cells are produced during embryonic development. NIN1/RPN12 binding protein 1 homolog (Nob1), a ribosome assembly factor, is believed to be involved in transcriptional regulation and may pl...
Cornifelin expression during Xenopus laevis metamorphosis and in response to spinal cord injury [0.03%]
非洲爪蟾变态和脊髓损伤响应过程中的cornifelin表达
Sol Torruella-Gonzalez,Paula G Slater,Dasfne Lee-Liu et al.
Sol Torruella-Gonzalez et al.
Background: In a high-throughput RNA sequencing analysis, comparing the transcriptional response between Xenopus laevis regenerative and non-regenerative stages to spinal cord injury, cornifelin was found among the most h...
Mutually exclusive expression of sex-specific and non-sex-specific fruitless gene products in the Drosophila central nervous system [0.03%]
果蝇中枢神经系统中性别特异和非性别特异fruitless基因产物的互斥表达
Kosei Sato,Daisuke Yamamoto
Kosei Sato
The fruitless gene of Drosophila produces multiple protein isoforms, which are classified into two major classes, sex-specific Fru proteins (FruM) and non-sex specific proteins (FruCOM). Whereas FruM proteins are expressed in ∼2000 neurons...
Identification and validation of stage-specific reference genes for gene expression analysis in Callosobruchus maculatus (Coleoptera: Bruchidae) [0.03%]
响应基因在不同发育阶段的鉴定及校正(以斑须豆象为例)
Gagandeep Singh Brar,Gurmeet Kaur,Satnam Singh et al.
Gagandeep Singh Brar et al.
In light of a number of recent studies highlighting the increasing research interest in bruchids, it is crucial to validate suitable reference genes that could be used in quantitative gene expression studies. Callosobruchus maculatus is a s...
An enhancer trap zebrafish line for lateral line development and regulation of six2b expression [0.03%]
一个侧线发育增强子陷阱斑马鱼品系及其调节six2b表达的作用
Chunxin Fan,Yajing Ouyang,Xiaoyi Yuan et al.
Chunxin Fan et al.
Zebrafish lateral line system which is derived from neurogenic placodes has become a popular model for developmental biology since its formation involves cell migration, pattern formation, organogenesis, and hair cell regeneration. Transgen...
Transcriptome analysis of the early stage ifnlr1-mutant zebrafish indicates the immune response to auditory dysfunction [0.03%]
早期ifnlr1突变斑马鱼转录组分析表明免疫反应与听觉障碍有关
Wei-Qian Wang,Shi-Wei Qiu,Sha-Sha Huang et al.
Wei-Qian Wang et al.
Background: IFNLR1 has been recently identified to be related to autosomal dominant nonsyndromic sensorineural hearing loss (ADNSHL). It is reported to be expressed in the inner ear of mice and the lateral line of zebrafi...
CCCTC-binding factor is an upstream regulator of the pluripotency factor Oct4 and functions in active transcription of linc1253 and linc1356 genes in pluripotent cells [0.03%]
CCCTC结合因子是多能性因素Oct4的上游调控因子并能在多能细胞中活化linc1253和linc1356基因的转录
Feng Wang,Baiquan Ci,Yangzi Wang
Feng Wang
The embryonic stem cell- (ESC) specific transcription factor Oct4 is a well-known master regulator of pluripotency. The aim of this study was to identify upstream regulators of Oct4 and explore their functional link in regulating lincRNA ex...
Single-cell transcriptome analysis defines mesenchymal stromal cells in the mouse incisor dental pulp [0.03%]
单细胞转录组分析定义了小鼠牙本质的小梁干细胞
Dashzeveg Bayarsaihan,Badam Enkhmandakh,Anushree Vijaykumar et al.
Dashzeveg Bayarsaihan et al.
The dental pulp is known to be highly heterogenous, comprising distinct cell types including mesenchymal stromal cells (MSCs), which represent neural-crest-derived cells with the ability to differentiate into multiple cell lineages. However...
Candidate positive targets of LHX6 and LHX8 transcription factors in the developing upper jaw [0.03%]
发育中的上颌中LHX6和LHX8转录因子的候选阳性靶点
Jeffry Cesario,Sara Ha,Julie Kim et al.
Jeffry Cesario et al.
Craniofacial development is controlled by a large number of genes, which interact with one another to form a complex gene regulatory network (GRN). Key components of GRN are signaling molecules and transcription factors. Therefore, identify...