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重测序和转录组分析揭示了新型四倍体水稻中丰富的 DNA 变异和与育性相关基因的差异表达。

Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice.

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural University, Guangzhou, China.

Guangdong Provincial Key Laboratory of Plant Molecular Breeding, South China Agricultural University, Guangzhou, China.

出版信息

PLoS One. 2019 Apr 5;14(4):e0214953. doi: 10.1371/journal.pone.0214953. eCollection 2019.

Abstract

Autotetraploid rice is a useful germplasm for polyploid rice breeding, however, low seed setting is the major barrier in commercial utilization of autotetraploid rice. Our research group has developed neo-tetraploid rice lines, which have the characteristics of high fertility and heterosis when crossed with autotetraploid rice. In the present study, re-sequencing and RNA-seq were employed to detect global DNA variations and differentially expressed genes (DEGs) during meiosis stage in three neo-tetraploid rice lines compared to their parents, respectively. Here, a total of 4109881 SNPs and 640592 InDels were detected in neo-tetraploid lines compared to the reference genome, and 1805 specific presence/absence variations (PAVs) were detected in three lines. Approximately 12% and 0.5% of the total SNPs and InDels identified in three lines were located in genic regions, respectively. A total of 28 genes, harboring at least one of the large-effect SNP and/or InDel which affect the integrity of the encoded protein, were identified in the three lines. Together, 324 specific mutation genes, including 52 meiosis-related genes and 8 epigenetics-related genes were detected in neo-tetraploid rice compared to their parents. Of these 324 genes, five meiosis-related and three epigenetics-related genes displayed differential expressions during meiosis stage. Notably, 498 specific transcripts, 48 differentially expressed transposons and 245 differentially expressed ncRNAs were also detected in neo-tetraploid rice. Our results suggested that genomic structural reprogramming, DNA variations and differential expressions of some important meiosis and epigenetics related genes might be associated with high fertility in neo-tetraploid rice.

摘要

同源四倍体水稻是一种有用的多倍体水稻种质资源,然而,结实率低是同源四倍体水稻商业利用的主要障碍。我们的研究小组已经开发出了新型四倍体水稻品系,这些品系与同源四倍体水稻杂交时具有高育性和杂种优势的特点。在本研究中,我们分别对三个新型四倍体水稻品系与亲本在减数分裂阶段的全基因组 DNA 变异和差异表达基因(DEGs)进行了重测序和 RNA-seq 分析。在这里,与参考基因组相比,新型四倍体品系中总共检测到了 4109881 个 SNP 和 640592 个 InDels,在三个品系中总共检测到了 1805 个特异性存在/缺失变异(PAVs)。在三个品系中,大约 12%和 0.5%的总 SNP 和 InDels 分别位于基因区域。在三个品系中,总共鉴定到 28 个基因,这些基因至少含有一个影响编码蛋白完整性的大效应 SNP 和/或 InDel。总共在新型四倍体水稻中鉴定到了 324 个特异性突变基因,包括 52 个与减数分裂相关的基因和 8 个与表观遗传学相关的基因。在这些 324 个基因中,有 5 个与减数分裂相关的基因和 3 个与表观遗传学相关的基因在减数分裂阶段表现出差异表达。值得注意的是,在新型四倍体水稻中还检测到了 498 个特异性转录本、48 个差异表达的转座子和 245 个差异表达的 ncRNAs。我们的研究结果表明,基因组结构重编程、DNA 变异以及一些重要的减数分裂和表观遗传学相关基因的差异表达可能与新型四倍体水稻的高育性有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6033/6450637/863e9facd987/pone.0214953.g001.jpg

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