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花芽转录组分析揭示了多倍体减数分裂的不规则过程。

Transcriptome Analysis of Floral Buds Deciphered an Irregular Course of Meiosis in Polyploid .

作者信息

Braynen Janeen, Yang Yan, Wei Fang, Cao Gangqiang, Shi Gongyao, Tian Baoming, Zhang Xiaowei, Jia Hao, Wei Xiaochun, Wei Zhenzhen

机构信息

School of Life Sciences, Zhengzhou UniversityZhengzhou, China.

Institute of Horticultural Research, Henan Academy of Agricultural SciencesZhengzhou, China.

出版信息

Front Plant Sci. 2017 May 12;8:768. doi: 10.3389/fpls.2017.00768. eCollection 2017.

Abstract

Polyploidy is a fundamental process in plant evolution. Understanding the polyploidy-associated effects on plant reproduction is essential for polyploid breeding program. In the present study, our cytological analysis firstly demonstrated that an overall course of meiosis was apparently distorted in the synthetic polyploid in comparison with its diploid progenitor. To elucidate genetic basis of this irregular meiosis at a molecular level, the comparative RNA-seq analysis was further used to investigate differential genetic regulation of developing floral buds identified at meiosis between autotetraploid and diploid . In total, compared to its diploid counterparts, among all 40,927 expressed genes revealed, 4,601 differentially expressed genes (DEGs) were identified in the floral buds of autotetraploid , among which 288 DEGs annotated were involved in meiosis. Notably, identified as one previously known meiosis-specific gene involved in inter-homologous chromosome dependent repair of DNA double stranded breaks (DSBs), was significantly down-regulated in autotetraploid , which presumably contributed to abnormal progression during meiosis I. Although certain DEGs associated with RNA helicase, cell cycling, and somatic DNA repair were up-regulated after genome duplication, genes associated with meiotic DSB repair were significantly down-regulated. Furthermore, the expression of randomly selected DEGs by RNA-seq analysis was confirmed by quantitative real-time PCR analysis in both and . Our results firstly account for adverse effects of polyploidy on an entire course of meiosis at both cytological and transcriptomic levels, and allow for a comprehensive understanding of the uniformity and differences in the transcriptome of floral buds at meiosis between diploid and polyploid as well.

摘要

多倍体是植物进化中的一个基本过程。了解多倍体对植物繁殖的相关影响对于多倍体育种计划至关重要。在本研究中,我们的细胞学分析首先表明,与其二倍体祖先相比,合成多倍体中的减数分裂全过程明显扭曲。为了在分子水平上阐明这种不规则减数分裂的遗传基础,进一步使用比较RNA测序分析来研究同源四倍体和二倍体在减数分裂时发育中的花芽的差异基因调控。总共,与其二倍体对应物相比,在所有40927个已表达基因中,在同源四倍体的花芽中鉴定出4601个差异表达基因(DEG),其中288个注释的DEG参与减数分裂。值得注意的是,作为一个先前已知的参与DNA双链断裂(DSB)同源染色体依赖性修复的减数分裂特异性基因,在同源四倍体中显著下调,这可能导致减数分裂I期间的异常进程。尽管与RNA解旋酶、细胞周期和体细胞DNA修复相关的某些DEG在基因组复制后上调,但与减数分裂DSB修复相关的基因显著下调。此外,通过RNA测序分析随机选择的DEG的表达在同源四倍体和二倍体中均通过定量实时PCR分析得到证实。我们的结果首先在细胞学和转录组水平上解释了多倍体对减数分裂全过程的不利影响,并且也有助于全面了解二倍体和多倍体在减数分裂时花芽转录组的一致性和差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a140/5427127/b071e2357eea/fpls-08-00768-g0001.jpg

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