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逻辑建模揭示了鸡性腺初级性别决定的发育限制。

Logical modelling uncovers developmental constraints for primary sex determination of chicken gonads.

机构信息

Dpto. Biología Celular y Molecular, Centro de Investigaciones Biológicas (C. S. I. C.), Ramiro de Maeztu 9, 28040 Madrid, Spain

Instituto Gulbenkian de Ciência - IGC, Rua da Quinta Grande, 6, 2780-156 Oeiras, Portugal.

出版信息

J R Soc Interface. 2018 May;15(142). doi: 10.1098/rsif.2018.0165.

Abstract

In the chicken, sex determination relies on a ZZ (male)/ZW (female) chromosomal system, but underlying mechanisms are still not fully understood. The Z-dosage and the dominant W-chromosome hypotheses have been proposed to underlie primary sex determination. We present a modelling approach, which assembles the current knowledge and permits exploration of the regulation of this process in chickens. Relying on published experimental data, we assembled a gene network, which led to a logical model that integrates both the Z-dosage and dominant W hypotheses. This model showed that the sexual fate of chicken gonads results from the resolution of the mutual inhibition between DMRT1 and FOXL2, where the initial amount of DMRT1 product determines the development of the gonads. In this respect, at the initiation step, a W-factor would function as a secondary device, by reducing the amount of DMRT1 in ZW gonads when the sexual fate of the gonad is settled, that is when the SOX9 functional level is established. Developmental constraints that are instrumental in this resolution were identified. These constraints establish qualitative restrictions regarding the relative transcription rates of the genes DMRT1, FOXL2 and HEMGN. Our model further clarified the role of OESTROGEN in maintaining FOXL2 function during ovary development.

摘要

在鸡中,性别决定依赖于 ZZ(雄性)/ZW(雌性)染色体系统,但潜在的机制仍不完全清楚。Z 剂量和显性 W 染色体假说被提出是主要性别决定的基础。我们提出了一种建模方法,该方法汇集了当前的知识,并允许探索鸡中这一过程的调控。根据已发表的实验数据,我们组装了一个基因网络,该网络构建了一个逻辑模型,该模型整合了 Z 剂量和显性 W 假说。该模型表明,鸡性腺的性命运是由 DMRT1 和 FOXL2 之间的相互抑制的解决决定的,其中 DMRT1 产物的初始量决定了性腺的发育。在这方面,在起始步骤中,W 因子将作为一个二级装置起作用,当性腺的性别命运确定时,即 SOX9 功能水平建立时,减少 ZW 性腺中 DMRT1 的数量。确定了在这种解决中起作用的发育约束。这些约束对基因 DMRT1、FOXL2 和 HEMGN 的相对转录率建立了定性限制。我们的模型进一步阐明了雌激素在维持卵巢发育过程中 FOXL2 功能中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d20c/6000168/0fdf8f02582e/rsif20180165-g1.jpg

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