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父源等位基因在水稻合子中的表达及其在合子发育起始中的作用。

Expression of Genes from Paternal Alleles in Rice Zygotes and Involvement of OsASGR-BBML1 in Initiation of Zygotic Development.

机构信息

Department of Biological Sciences, Tokyo Metropolitan University, Tokyo, Japan.

Department of Life Sciences, Meiji University, Kanagawa, Japan.

出版信息

Plant Cell Physiol. 2019 Apr 1;60(4):725-737. doi: 10.1093/pcp/pcz030.

Abstract

Upon fertilization in angiosperms, one sperm cell fuses with the egg cell to produce a zygote, and, via karyogamy, the parental genetic information is combined to form the diploid zygotic genome. Recently, analyses with parentally imbalanced rice zygotes indicated that parental genomes are utilized synergistically in zygotes with different functions, and that genes transcribed from the paternal or maternal allele might play important roles in zygotic development. Herein, we first conducted single nucleotide polymorphism-based mRNA-sequencing using intersubspecific rice zygotes. Twenty-three genes, with paternal allele-specific expression in zygotes, were identified, and, surprisingly, their allele dependencies in the globular-like embryo tended to be biallelic. This suggests that the paternal-dependent expression of these genes is temporary, occurring during the early stages of zygote development. Of the 23 genes, we focused on Oryza sativa Apospory-specific Genome Region (ASGR)-BABY-BOOM LIKE (BBML) 1 (OsASGR-BBML1), presumed to encode an AP2-transcription factor, due to its reported role in zygotic development. Interestingly, ectopic expression of OsASGR-BBML1 in egg cells induced nuclear and cell divisions, indicating that exogenously expressed OsASGR-BBML1 converts the proliferation status of the egg cell from quiescent to active. In addition, the suppression of the function of OsASGR-BBML1 and its homologs in zygotes resulted in the developmental arrest, suggesting that OsASGR-BBML1 possesses an important role in initiating zygotic development. Monoallelic or preferential gene expression from the paternal genome in the zygote might be a safety mechanism allowing egg cells to suppress the gene expression cascade toward early embryogenesis that is normally triggered by fusion with a sperm cell.

摘要

在被子植物中,一个精子细胞与卵细胞融合产生受精卵,通过核融合,双亲的遗传信息被组合形成二倍体合子基因组。最近,对双亲不平衡的水稻合子的分析表明,双亲的基因组在具有不同功能的合子中协同利用,来自父本或母本等位基因转录的基因可能在合子发育中发挥重要作用。在此,我们首次使用种间水稻合子进行了基于单核苷酸多态性的 mRNA 测序。鉴定出 23 个在合子中具有父本等位基因特异性表达的基因,令人惊讶的是,它们在球状胚中的等位基因依赖性倾向于双等位基因。这表明这些基因的父本依赖表达是暂时的,发生在合子发育的早期阶段。在这 23 个基因中,我们重点关注了 Oryza sativa Apospory-specific Genome Region (ASGR)-BABY-BOOM LIKE (BBML) 1 (OsASGR-BBML1),由于其在合子发育中的作用,推测其编码一个 AP2-转录因子。有趣的是,OsASGR-BBML1 在卵母细胞中的异位表达诱导了核和细胞分裂,表明外源性表达的 OsASGR-BBML1 将卵母细胞的增殖状态从静止转变为活跃。此外,在合子中抑制 OsASGR-BBML1 及其同源物的功能导致发育停滞,表明 OsASGR-BBML1 在启动合子发育中具有重要作用。合子中来自父本基因组的单等位基因或优先基因表达可能是一种安全机制,允许卵母细胞抑制通常由与精子融合触发的早期胚胎发生的基因表达级联。

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