Department of Biochemistry and Molecular Biology, College of Medicine, Medical University of South Carolina, Charleston, SC, 29425, USA.
Department of Biology, College of Arts and Sciences, University of North Carolina, Chapel Hill, NC, 27599, USA.
Sci Rep. 2023 Oct 23;13(1):18125. doi: 10.1038/s41598-023-45225-w.
Polyploid cells contain more than two copies of each chromosome. Polyploidy has important roles in development, evolution, and tissue regeneration/repair, and can arise as a programmed polyploidization event or be triggered by stress. Cancer cells are often polyploid. C. elegans nematodes are typically diploid, but stressors such as heat shock and starvation can trigger the production of tetraploid offspring. In this study, we utilized a recently published protocol to generate stable tetraploid strains of C. elegans and compared their physiological traits and sensitivity to two DNA-damaging chemotherapeutic drugs, cisplatin and doxorubicin. As prior studies have shown, tetraploid worms are approximately 30% longer, shorter-lived, and have a smaller brood size than diploids. We investigated the reproductive defect further, determining that tetraploid worms have a shorter overall germline length, a higher rate of germ cell apoptosis, more aneuploidy in oocytes and offspring, and larger oocytes and embryos. We also found that tetraploid worms are modestly protected from growth delay from the chemotherapeutics but are similarly or more sensitive to reproductive toxicity. Transcriptomic analysis revealed differentially expressed pathways that may contribute to sensitivity to stress. This study reveals phenotypic consequences of whole-animal tetraploidy that make C. elegans an excellent model for ploidy differences.
多倍体细胞含有每个染色体的两份以上的拷贝。多倍体在发育、进化和组织再生/修复中具有重要作用,它可以作为一个程序性多倍化事件产生,也可以被应激触发。癌细胞通常是多倍体。秀丽隐杆线虫通常是二倍体,但热休克和饥饿等应激因素可以触发四倍体后代的产生。在这项研究中,我们利用最近发表的一项方案,生成了稳定的秀丽隐杆线虫四倍体品系,并比较了它们的生理特征和对两种 DNA 损伤化疗药物顺铂和阿霉素的敏感性。正如之前的研究表明,四倍体线虫比二倍体线虫大约长 30%,寿命更短,产卵量更小。我们进一步研究了生殖缺陷,确定四倍体线虫的生殖细胞总体长度更短,凋亡率更高,卵母细胞和后代的非整倍体更多,卵母细胞和胚胎更大。我们还发现,四倍体线虫对化疗药物引起的生长延迟有一定的保护作用,但对生殖毒性的敏感性与二倍体相似或更高。转录组分析揭示了可能导致对压力敏感的差异表达途径。这项研究揭示了全动物多倍体的表型后果,使秀丽隐杆线虫成为研究倍性差异的优秀模型。