Kugler Jamie E, Passamaneck Yale J, Feldman Taya G, Beh Jeni, Regnier Todd W, Di Gregorio Anna
Department of Cell and Developmental Biology, Weill Medical College of Cornell University, New York, New York 10065, USA.
Genesis. 2008 Nov;46(11):697-710. doi: 10.1002/dvg.20403.
To reconstruct a minimum complement of notochord genes evolutionarily conserved across chordates, we scanned the Ciona intestinalis genome using the sequences of 182 genes reported to be expressed in the notochord of different vertebrates and identified 139 candidate notochord genes. For 66 of these Ciona genes expression data were already available, hence we analyzed the expression of the remaining 73 genes and found notochord expression for 20. The predicted products of the newly identified notochord genes range from the transcription factors Ci-XBPa and Ci-miER1 to extracellular matrix proteins. We examined the expression of the newly identified notochord genes in embryos ectopically expressing Ciona Brachyury (Ci-Bra) and in embryos expressing a repressor form of this transcription factor in the notochord, and we found that while a subset of the genes examined are clearly responsive to Ci-Bra, other genes are not affected by alterations in its levels. We provide a first description of notochord genes that are not evidently influenced by the ectopic expression of Ci-Bra and we propose alternative regulatory mechanisms that might control their transcription.
为了重建脊索动物进化上保守的脊索基因的最小互补序列,我们使用据报道在不同脊椎动物的脊索中表达的182个基因的序列扫描了玻璃海鞘基因组,并鉴定出139个候选脊索基因。对于其中66个玻璃海鞘基因,表达数据已经可用,因此我们分析了其余73个基因的表达,发现其中20个基因有脊索表达。新鉴定的脊索基因的预测产物范围从转录因子Ci-XBPa和Ci-miER1到细胞外基质蛋白。我们检查了新鉴定的脊索基因在异位表达玻璃海鞘短尾相关蛋白(Ci-Bra)的胚胎以及在脊索中表达该转录因子抑制形式的胚胎中的表达,我们发现虽然所检查的一部分基因对Ci-Bra有明显反应,但其他基因不受其水平变化的影响。我们首次描述了不受Ci-Bra异位表达明显影响的脊索基因,并提出了可能控制其转录的替代调节机制。