生物
蜗牛
左旋和右旋
遗传学
车身平面图
基因
进化生物学
细胞生物学
生态学
古生物学
构造学
作者
Masanori Abe,Reiko Kuroda
出处
期刊:Development
[The Company of Biologists]
日期:2019-05-01
卷期号:146 (9)
被引量:79
摘要
ABSTRACT The establishment of left-right body asymmetry is a key biological process that is tightly regulated genetically. In the first application of CRISPR/Cas9 to a mollusc, we show decisively that the actin-related diaphanous gene Lsdia1 is the single maternal gene that determines the shell coiling direction of the freshwater snail Lymnaea stagnalis. Biallelic frameshift mutations of the gene produced sinistrally coiled offspring generation after generation, in the otherwise totally dextral genetic background. This is the gene sought for over a century. We also show that the gene sets the chirality at the one-cell stage, the earliest observed symmetry-breaking event linked directly to body handedness in the animal kingdom. The early intracellular chirality is superseded by the inter-cellular chirality during the 3rd cleavage, leading to asymmetric nodal and Pitx expression, and then to organismal body handedness. Thus, our findings have important implications for chiromorphogenesis in invertebrates as well as vertebrates, including humans, and for the evolution of snail chirality. This article has an associated ‘The people behind the papers’ interview.
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