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Pod-2与Pod-1共同定义了秀丽隐杆线虫早期胚胎极性所需的一类新基因。

Pod-2, along with pod-1, defines a new class of genes required for polarity in the early Caenorhabditis elegans embryo.

作者信息

Tagawa A, Rappleye C A, Aroian R V

机构信息

Division of Biology, Section of Cell and Developmental Biology, University of California, San Diego, La Jolla, California 92093, USA.

出版信息

Dev Biol. 2001 May 15;233(2):412-24. doi: 10.1006/dbio.2001.0234.

Abstract

The asymmetric division of the one-cell Caenorhabditis elegans zygote gives rise to two cells of different size and fate, thereby establishing the animal's anterior--posterior (a-p) axis. Through genetics, a number of genes required for this polarity have been characterized, but many components remain unidentified. Recently, our laboratory discovered a mutation in the pod-1 gene (for polarity and osmotic defective) that uniquely perturbed polarity and osmotic protection. Here, we describe a new C. elegans polarity gene identified during screens for conditional embryonic lethals. Embryos in which this gene has been mutated show a loss of physical and developmental asymmetries in the one-cell embryo, including the mislocalization of PAR and POD-1 proteins required for early polarity. Furthermore, mutant embryos are osmotically sensitive, allowing us to designate this gene pod-2. Thus, pod-2, along with pod-1, defines a new class of C. elegans polarity genes. Genetic analyses indicate that pod-2 functions in the same pathway as pod-1. Temperature-shift studies indicate that pod-2 is required during oogenesis, indicating that aspects of embryonic polarization may precede fertilization. pod-2 mutant embryos also exhibit a unique germline inheritance defect in which germline identity localizes to the wrong spot in the one-cell embryo and is therefore inherited by the wrong cell at the four-cell stage. Our data suggest that pod-2 may be required to properly position an a-p polarity cue.

摘要

单细胞秀丽隐杆线虫受精卵的不对称分裂产生了两个大小和命运不同的细胞,从而确立了动物的前后(a-p)轴。通过遗传学方法,已经鉴定出许多建立这种极性所需的基因,但仍有许多成分尚未明确。最近,我们实验室发现了pod-1基因(极性和渗透压缺陷基因)中的一个突变,该突变独特地扰乱了极性和渗透压保护功能。在此,我们描述了在条件性胚胎致死筛选过程中鉴定出的一个新的秀丽隐杆线虫极性基因。该基因发生突变的胚胎在单细胞胚胎中表现出物理和发育不对称性的丧失,包括早期极性所需的PAR和POD-1蛋白的错误定位。此外,突变胚胎对渗透压敏感,因此我们将该基因命名为pod-2。因此,pod-2与pod-1一起,定义了一类新的秀丽隐杆线虫极性基因。遗传分析表明,pod-2与pod-1在同一途径中发挥作用。温度转换研究表明,卵子发生过程中需要pod-2,这表明胚胎极化的某些方面可能在受精之前就已发生。pod-2突变胚胎还表现出一种独特的种系遗传缺陷,即种系特征定位在单细胞胚胎的错误位置,因此在四细胞阶段被错误的细胞继承。我们的数据表明,可能需要pod-2来正确定位a-p极性线索。

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