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Screening of Genes Related to Early and Late Flowering in Tree Peony Based on Bulked Segregant RNA Sequencing and Verification by Quantitative Real-Time PCR

机译:散装分离子RNA测序技术筛选与定量分析牡丹早期开花相关基因及实时荧光定量PCR

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摘要

Tree peony (Paeonia suffruticosa Andrews) is a perennial woody shrub bearing large and colorful flowers. However, the flowering period is short and relatively uniform, which to an important extent hinders the cultivation and exploitation of ornamental peonies. In this study, the segregation of an F1 population derived from P. ostti ‘Feng Dan’ (an early-flowering cultivar) × P. suffruticosa ‘Xin Riyuejin’ (a late-flowering cultivar) was used to screen and analyze candidate genes associated with flowering period of the two parents. Extreme early- and late-flowering genotypes of the F1 population at full-bloom stage were sampled to establish an early-flowering mixed pool (T03), a late-flowering mixed pool (T04), a late-flowering male pool (T01), and an early-flowering female pool (T02), using the Sequencing By Synthesis (SBS) technology on the Illumina HiSeq TM2500 platform. A total of 56.51 Gb of clean reads data, comprising at least 87.62% of Quality30 (Q30), was generated, which was then combined into 173,960 transcripts (N50 = 1781) and 78,645 (N50 = 1282) unigenes, with a mean length of 1106.76 and 732.27 base pairs (bp), respectively. Altogether, 58,084 genes were annotated by comparison with public databases, based on an E-value parameter of less than 10−5 and 10−10 for BLAST and HMMER, respectively. In total, 291 unigene sequences were finally screened out by BSR-seq (bulked segregant RNA-seq) association analysis. To validate these unigenes, we finally confirmed seven unigenes that were related to early and late flowering, which were then verified by quantitative real-time PCR (qRT-PCR). This is the first reported study to screen genes associated with early and late flowering of tree peony by the BSA (bulked sample analysis) method of transcriptome sequencing, and to construct a high-quality transcriptome database. A set of candidate functional genes related to flowering time was successfully obtained, providing an important genetic resource for further studies of flowering in peony and the mechanism of regulation of flowering time in tree peony.
机译:牡丹(Paeonia suffruticosa Andrews)是一种多年生木本灌木,带有大而鲜艳的花朵。然而,开花期短且相对均匀,这在很大程度上限制了观赏牡丹的栽培和开发。在这项研究中,使用分离自P. ostti'Feng Dan'(早开花品种)×s。suffruticosa'Xin Riyuejin'(晚开花品种)的F1种群进行筛选和分析相关的候选基因两个父母的开花期。对全花期F1种群的极端早花和晚花基因型进行采样,以建立早花混合池(T03),晚花混合池(T04),晚花雄性池(T01)。 ,以及在Illumina HiSeq TM2500平台上使用合成测序(SBS)技术的早开花雌性池(T02)。生成了总共56.51 Gb的干净读取数据,其中至少包括Quality30(Q30)的87.62%,然后将其合并为173,960个转录本(N50 = 1781)和78,645(N50 = 1282)个单基因,平均长度为1106.76和732.27个碱基对(bp)。通过与公共数据库比较,总共有58,084个基因被注释,基于BLAST和HMMER的E值参数分别小于10 -5 和10 -10 。最终,通过BSR-seq(批量分离子RNA-seq)关联分析最终筛选出291个单基因序列。为了验证这些单基因,我们最终确认了与早期和晚期开花相关的七个单基因,然后通过定量实时PCR(qRT-PCR)进行了验证。这是第一个通过转录组测序的BSA(批量样本分析)方法筛选与牡丹早花和晚花相关的基因的研究,并建立了一个高质量的转录组数据库。成功获得了一组与开花时间有关的候选功能基因,为进一步研究牡丹开花和调节牡丹开花时间的机理提供了重要的遗传资源。

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