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研究有性和无融合生殖雀稗小花中时序/反义 RNA 的表达。

A study of the heterochronic sense/antisense RNA representation in florets of sexual and apomictic Paspalum notatum.

机构信息

Instituto de Investigaciones en Ciencias Agrarias de Rosario (IICAR-CONICET-UNR), Facultad de Ciencias Agrarias, Universidad Nacional de Rosario, Campo Experimental Villarino, (S2125ZAA) Zavalla, Santa Fe, Argentina.

出版信息

BMC Genomics. 2021 Mar 16;22(1):185. doi: 10.1186/s12864-021-07450-3.

Abstract

BACKGROUND

Apomixis, an asexual mode of plant reproduction, is a genetically heritable trait evolutionarily related to sexuality, which enables the fixation of heterozygous genetic combinations through the development of maternal seeds. Recently, reference floral transcriptomes were generated from sexual and apomictic biotypes of Paspalum notatum, one of the most well-known plant models for the study of apomixis. However, the transcriptome dynamics, the occurrence of apomixis vs. sexual expression heterochronicity across consecutive developmental steps and the orientation of transcription (sense/antisense) remain unexplored.

RESULTS

We produced 24 Illumina TruSeq®/ Hiseq 1500 sense/antisense floral transcriptome libraries covering four developmental stages (premeiosis, meiosis, postmeiosis, and anthesis) in biological triplicates, from an obligate apomictic and a full sexual genotype. De novo assemblies with Trinity yielded 103,699 and 100,114 transcripts for the apomictic and sexual samples respectively. A global comparative analysis involving reads from all developmental stages revealed 19,352 differentially expressed sense transcripts, of which 13,205 (68%) and 6147 (32%) were up- and down-regulated in apomictic samples with respect to the sexual ones. Interestingly, 100 differentially expressed antisense transcripts were detected, 55 (55%) of them up- and 45 (45%) down-regulated in apomictic libraries. A stage-by-stage comparative analysis showed a higher number of differentially expressed candidates due to heterochronicity discrimination: the highest number of differential sense transcripts was detected at premeiosis (23,651), followed by meiosis (22,830), postmeiosis (19,100), and anthesis (17,962), while the highest number of differential antisense transcripts were detected at anthesis (495), followed by postmeiosis (164), meiosis (120) and premeiosis (115). Members of the AP2, ARF, MYB and WRKY transcription factor families, as well as the auxin, jasmonate and cytokinin plant hormone families appeared broadly deregulated. Moreover, the chronological expression profile of several well-characterized apomixis controllers was examined in detail.

CONCLUSIONS

This work provides a quantitative sense/antisense gene expression catalogue covering several subsequent reproductive developmental stages from premeiosis to anthesis for apomictic and sexual P. notatum, with potential to reveal heterochronic expression between reproductive types and discover sense/antisense mediated regulation. We detected a contrasting transcriptional and hormonal control in apomixis and sexuality as well as specific sense/antisense modulation occurring at the onset of parthenogenesis.

摘要

背景

无融合生殖是一种植物的无性繁殖方式,是一种与有性生殖相关的遗传可育特征,它通过母本种子的发育使杂合基因组合得以固定。最近,从帕帕斯努图姆(Paspalum notatum)的有性和无融合生殖生物型中生成了参考花卉转录组,帕帕斯努图姆是无融合生殖研究中最著名的植物模型之一。然而,转录组动态、连续发育阶段中无融合生殖与有性表达的异时性发生以及转录方向(正义/反义)仍未得到探索。

结果

我们从一个强制性无融合生殖和一个完全有性基因型中产生了 24 个 Illumina TruSeq®/Hiseq 1500 正义/反义花转录组文库,涵盖了四个发育阶段(减数分裂前期、减数分裂期、减数分裂后期和开花期),每个阶段均进行了三次生物学重复。使用 Trinity 进行从头组装分别产生了 103699 个和 100114 个无融合生殖和有性样本的转录本。对所有发育阶段的读取进行的全局比较分析显示了 19352 个差异表达的正义转录本,其中在无融合生殖样本中,有 13205 个(68%)和 6147 个(32%)转录本上调和下调。有趣的是,检测到 100 个差异表达的反义转录本,其中 55 个(55%)上调和 45 个(45%)下调。阶段间的比较分析显示,由于异时性的鉴别,差异表达候选基因的数量更多:在减数分裂前期(23651 个)检测到的差异表达候选基因数量最多,其次是减数分裂期(22830 个)、减数分裂后期(19100 个)和开花期(17962 个),而在开花期检测到的差异表达反义转录本数量最多(495 个),其次是减数分裂后期(164 个)、减数分裂期(120 个)和减数分裂前期(115 个)。AP2、ARF、MYB 和 WRKY 转录因子家族以及生长素、茉莉酸和细胞分裂素植物激素家族的成员广泛出现失调。此外,还详细研究了几个特征明确的无融合生殖控制器的定时表达谱。

结论

本研究为无融合生殖和有性 P. notatum 的减数分裂前期到开花期的几个后续生殖发育阶段提供了一个定量的正义/反义基因表达目录,有潜力揭示生殖类型之间的异时性表达,并发现正义/反义介导的调控。我们检测到无融合生殖和有性生殖之间存在转录和激素控制的差异,以及在孤雌生殖开始时发生的特定正义/反义调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1aeb/7962388/9b4b0e4d8208/12864_2021_7450_Fig1_HTML.jpg

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