利用增强的单倍型寡聚标记技术对黄瓜同源染色体的差异可视化揭示减数分裂交叉

IF 10.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Qinzheng Zhao, Zhenhui Xiong, Chunyan Cheng, Yuhui Wang, Xianbo Feng, Xiaqing Yu, Qunfeng Lou, Jinfeng Chen
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引用次数: 0

摘要

同源染色体在减数分裂过程中的相互作用动态,如识别、配对、突触、重组和分离,对物种繁殖和种群内遗传多样性至关重要。减数分裂交叉是减数分裂的一个显著特征,它保证了同源染色体的忠实分离,丰富了群体内的遗传多样性。然而,在细胞学研究中,特别是在非模式或基因组小的植物中,视觉上区分同源染色体和COs仍然是一个棘手的挑战,这限制了对减数分裂动力学的了解。在本研究中,我们开发了一种强大而可靠的增强单倍型寡核苷酸绘制(EHOP)技术来对少量寡核苷酸进行成像,从而实现同源染色体的视觉区分。利用基于序列多态性和重组寡核苷酸构建的EHOP,对黄瓜F1杂交种和F2群体的亲本染色体和大部分重组染色体进行了视觉区分。EHOP结果显示,减数分裂CO事件优先发生在序列多态性较低的染色体臂的30-60%间隔内,并且在培养染色体和祖先染色体之间存在显著的重组偏倚。由于广泛的异染色质占用,目前还不可能精确地识别chr2和chr4中心部分存在的减数分裂COs。值得注意的是,在F2群体的细胞学着丝粒区域普遍检测到CO可及性,这在大基因组作物中很少观察到。EHOP在区分同源染色体方面表现出优异的性能,在研究同源染色体相互作用方面具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Meiotic crossovers revealed by differential visualization of homologous chromosomes using enhanced haplotype oligo-painting in cucumber
The interaction dynamics of homologous chromosomes during meiosis, such as recognition, pairing, synapsis, recombination, and segregation are vital for species fertility and genetic diversity within populations. Meiotic crossover (CO), a prominent feature of meiosis, ensures the faithful segregation of homologous chromosomes and enriches genetic diversity within a population. Nevertheless, visually distinguishing homologous chromosomes and COs remains an intractable challenge in cytological studies, particularly in non-model or plants with small genomes, limiting insights into meiotic dynamics. In the present study, we developed a robust and reliable enhanced haplotype oligo-painting (EHOP) technique to image small amounts of oligos, enabling visual discrimination of homologous chromosomes. Using EHOP developed based on sequence polymorphisms and reconstructed oligonucleotides, we visually distinguished parental and most recombinant chromosomes in cucumber F1 hybrids and F2 populations. Results from EHOP revealed that meiotic CO events preferentially occur in the 30–60% intervals of chromosome arms with lower sequence polymorphisms and significant recombination bias exists between cultivated and ancestral chromosomes. Due to the occupation of extensive heterochromatin occupancy, it is not yet possible to precisely identify the meiotic COs present in the central portion of chr2 and chr4. Notably, CO accessibility was universally detected in the cytological centromere region in F2 populations, a feature rarely observed in crops with large genomes. EHOP demonstrated exceptional performance in distinguishing homologous chromosomes and holds significant potential for broad application in studying homologous chromosome interactions.
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来源期刊
Plant Biotechnology Journal
Plant Biotechnology Journal 生物-生物工程与应用微生物
CiteScore
20.50
自引率
2.90%
发文量
201
审稿时长
1 months
期刊介绍: Plant Biotechnology Journal aspires to publish original research and insightful reviews of high impact, authored by prominent researchers in applied plant science. The journal places a special emphasis on molecular plant sciences and their practical applications through plant biotechnology. Our goal is to establish a platform for showcasing significant advances in the field, encompassing curiosity-driven studies with potential applications, strategic research in plant biotechnology, scientific analysis of crucial issues for the beneficial utilization of plant sciences, and assessments of the performance of plant biotechnology products in practical applications.
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