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Mutations in DMRT3 affect locomotion in horses and spinal circuit function in mice

机译:在DmRT3突变影响在马和小鼠的脊髓回路功能运动

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摘要

Locomotion in mammals relies on a central pattern-generating circuitry of spinal interneurons established during development that coordinates limb movement. These networks produce left–right alternation of limbs as well as coordinated activation of flexor and extensor muscles. Here we show that a premature stop codon in the DMRT3 gene has a major effect on the pattern of locomotion in horses. The mutation is permissive for the ability to perform alternate gaits and has a favourable effect on harness racing performance. Examination of wild-type and Dmrt3-null mice demonstrates that Dmrt3 is expressed in the dI6 subdivision of spinal cord neurons, takes part in neuronal specification within this subdivision, and is critical for the normal development of a coordinated locomotor network controlling limb movements. Our discovery positions Dmrt3 in a pivotal role for configuring the spinal circuits controlling stride in vertebrates. The DMRT3 mutation has had a major effect on the diversification of the domestic horse, as the altered gait characteristics of a number of breeds apparently require this mutation.
机译:哺乳动物的运动依赖于在发育过程中建立的,协调肢体运动 的脊髓中间神经元的中央模式生成电路。这些网络产生四肢左右交替以及屈肌和伸肌的协调激活 。在这里,我们显示DMRT3基因中的提前终止密码子对马的运动模式具有重要影响。该突变允许进行交替步态,并且对线束赛车性能产生有利影响。对野生型和Dmrt3-null小鼠的检查表明,Dmrt3在脊髓神经元的dI6细分中表达,参与该细分中的神经元规格,并且对于控制肢体运动的协调运动网络的正常发育至关重要。我们的发现将Dmrt3定位为在脊椎动物中控制步幅的脊柱回路的关键作用。 DMRT3突变对家养马的多样化产生了重大影响,因为许多品种的步态特征改变显然都需要该突变。

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