ICAR-National Institute for Plant Biotechnology, Pusa Campus, New Delhi, 110012, India.
Division of Vegetable Science, ICAR-Indian Agricultural Research Institute, Pusa Campus, New Delhi, 110012, India.
Protoplasma. 2023 Jul;260(4):1149-1162. doi: 10.1007/s00709-023-01837-7. Epub 2023 Jan 27.
Histone proteins play a critical role in the primary organization of nucleosomes, which is the fundamental unit of chromatin. Among the five types of the histones, histone H3 has multiple variants, and the number differs among the species. Amongst histone H3 variants, centromeric histone H3 (CENH3) is crucial for centromere identification and proper chromosomal segregation during cell division. In the present study, we have identified 17 putative histone H3 genes of Brassica oleracea. Furthermore, we have done a detailed characterization of the CENH3 gene of B. oleracea. We showed that a single CENH3 gene exhibits allelic diversity with at least two alleles and alternative splicing pattern. Also, we have identified a CENH3 gene-specific co-dominant cleaved amplified polymorphic sequence marker SNP34(A/C) to distinguish CENH3 alleles and follow their expression in leaf and flower tissues. The gene structure analysis of the CENH3 gene revealed the conserved 5'-CAGCAG-3' sequence at the intron 3-exon 4 junction in B. oleracea, which serves as an alternative splicing site with one-codon (alanine) addition/deletion. However, this one-codon alternative splicing feature is not conserved in the CENH3 genes of wild allied Brassica species. Our finding suggests that transcriptional complexity and alternative splicing might play a key role in the transcriptional regulation and function of the CENH3 gene in B. oleracea. Altogether, data generated from the present study can serve as a primary information resource and can be used to engineer CENH3 gene towards developing haploid inducer lines in B. oleracea.
组蛋白在核小体的初级组织中起着关键作用,核小体是染色质的基本单位。在五种组蛋白中,组蛋白 H3 有多个变体,其数量因物种而异。在组蛋白 H3 变体中,着丝粒组蛋白 H3(CENH3)对于着丝粒的识别和细胞分裂过程中染色体的正确分离至关重要。在本研究中,我们鉴定了甘蓝型油菜的 17 个假定组蛋白 H3 基因。此外,我们对 B.oleracea 的 CENH3 基因进行了详细的特征描述。我们表明,单个 CENH3 基因表现出等位基因多样性,至少有两个等位基因和选择性剪接模式。此外,我们还鉴定了一个 CENH3 基因特异性共显性切割扩增多态性序列标记 SNP34(A/C),以区分 CENH3 等位基因并在叶片和花组织中跟踪其表达。CENH3 基因的基因结构分析表明,在 B.oleracea 的内含子 3-外显子 4 交界处存在保守的 5'-CAGCAG-3'序列,作为一个替代剪接位点,有一个密码子(丙氨酸)的添加/缺失。然而,这种单密码子替代剪接特征在野生亲缘 Brassica 物种的 CENH3 基因中并不保守。我们的发现表明,转录复杂性和选择性剪接可能在 B.oleracea 中 CENH3 基因的转录调控和功能中发挥关键作用。总之,本研究产生的数据可以作为主要的信息资源,并可用于工程 CENH3 基因,以在 B.oleracea 中开发单倍体诱导系。