首页> 外文期刊>Comparative biochemistry and physiology, Part D. Genomics & proteomics >Lateralized expression of left-right axis formation genes is shared by adult brains of lefty and righty scale-eating cichlids
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Lateralized expression of left-right axis formation genes is shared by adult brains of lefty and righty scale-eating cichlids

机译:左右轴形成基因的左右表达是由左侧和右侧级别的含量的成年大脑共享的

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Variation in the laterality often exists within species and can be maintained by frequency-dependent selection. Although the molecular developmental mechanisms underlying the left-right axis formation have been investigated, the genomic mechanisms underlying variation in laterality remain largely unknown. The scale-eating cichlid Perissodus microlepis in Lake Tanganyika exhibit lateralized predation; lefty individuals with the mouth opening toward the right preferentially attack on the preys left trunk, while righty individuals with the opposite opening attacks on the right trunk. Here, we performed RNA-sequencing and subsequent confirmation with quantitative-PCR in the telencephalon, optic tectum, and hindbrain of the cichlid and identified five genes (pkd1b, ntn1b, ansn, pde6g, and rbp4l1) that were differentially expressed between the hemispheres regardless of the laterality. Surprisingly, pkd1b and ntn1b are involved in nodal and netrin signalling, respectively, which are important for left right asymmetry formation during early embryogenesis. This result indicates that nodal- and netrin-related signals may also play important roles in the maintenance of asymmetry in adult brain. By contrast, no genes showed reversal of lateral differences between lefty and righty individuals in any brain regions examined, suggesting that laterality in the scale-eating cichlid does not simply result from inversion of the left right asymmetry of gene expression.
机译:横向性的变化通常在物种中存在,并且可以通过依赖函数选择来维护。虽然已经研究了左右轴形成的底层的分子发育机制,但横向性变异的基因组机制仍然很大程度上是未知的。在坦噶尼喀湖展示南部探讨的预示着胆汁胰岛素微小;左侧的左侧嘴开口朝向右侧的射击射击留下后备箱,而具有相反的开口攻击右侧的右侧的人。在这里,我们在瞳孔,视光图和酰霉菌的定量-PCR中进行RNA测序和随后的确认,并鉴定了在半球之间差异表达的五种基因(PKD1B,NTN1B,ANSN,PDE6G和RBP4L1)。无论如何横向。令人惊讶的是,PKD1B和NTN1B分别参与节点和Netrin信号传导,这对于早期胚胎发生期间对于左右不对称形成很重要。该结果表明,Nodal和Netrin相关信号也可能在成人脑中的不对称性中起重要作用。相比之下,在检查的任何脑区域中没有基因显示出左侧和右侧个体之间的横向差异,表明饮食含量的横向不仅仅是由基因表达的左不对称的反演而导致的。

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