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Depletion of Key Meiotic Genes and Transcriptome-Wide Abiotic Stress Reprogramming Mark Early Preparatory Events Ahead of Apomeiotic Transition

机译:关键减数分裂基因的耗竭和整个转录组的非生物胁迫重编程标志着减数分裂过渡之前的早期准备活动。

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摘要

Molecular dissection of apomixis – an asexual reproductive mode – is anticipated to solve the enigma of loss of meiotic sex, and to help fixing elite agronomic traits. The Brassicaceae genus Boechera comprises of both sexual and apomictic species, permitting comparative analyses of meiotic circumvention (apomeiosis) and parthenogenesis. Whereas previous studies reported local transcriptome changes during these events, it remained unclear whether global changes associated with hybridization, polyploidy and environmental adaptation that arose during evolution of Boechera might serve as (epi)genetic regulators of early development prior apomictic initiation. To identify these signatures during vegetative stages, we compared seedling RNA-seq transcriptomes of an obligate triploid apomict and a diploid sexual, both isolated from a drought-prone habitat. Uncovered were several genes differentially expressed between sexual and apomictic seedlings, including homologs of meiotic genes ASYNAPTIC 1 (ASY1) and MULTIPOLAR SPINDLE 1 (MPS1) that were down-regulated in apomicts. An intriguing class of apomict-specific deregulated genes included several NAC transcription factors, homologs of which are known to be transcriptionally reprogrammed during abiotic stress in other plants. Deregulation of both meiotic and stress-response genes during seedling stages might possibly be important in preparation for meiotic circumvention, as similar transcriptional alteration was discernible in apomeiotic floral buds too. Furthermore, we noted that the apomict showed better tolerance to osmotic stress in vitro than the sexual, in conjunction with significant upregulation of a subset of NAC genes. In support of the current model that DNA methylation epigenetically regulates stress, ploidy, hybridization and apomixis, we noted that ASY1, MPS1 and NAC019 homologs were deregulated in Boechera seedlings upon DNA demethylation, and ASY1 in particular seems to be repressed by global DNA methylation exclusively in the apomicts. Variability in stress and transcriptional response in a diploid apomict, which is geographically distinct from the triploid apomict, pinpoints both common and independent features of apomixis evolution. Our study provides a molecular frame-work to investigate how the adaptive traits associated with the evolutionary history of apomicts co-adapted with meiotic gene deregulation at early developmental stage, in order to predate meiotic recombination, which otherwise is thought to be favorable in stress and low-fitness conditions.
机译:无性生殖的分子解剖-一种无性生殖方式-有望解决减数分裂性丧失的谜团,并有助于修复优良的农艺性状。十字花科(Bechsaceae)Boechera包括有性和无融合生殖的种,可以比较分析减数分裂回避(apomeiosis)和孤雌生殖。尽管先前的研究报道了这些事件期间局部转录组的变化,但尚不清楚与Boechera进化过程中发生的杂交,多倍性和环境适应有关的整体变化是否可以作为无融合生殖开始之前早期发育的(表观)遗传调控因子。为了鉴定在营养阶段的这些特征,我们比较了从干旱易生的栖息地分离的专性三倍体无融合生殖和二倍体有性的幼苗RNA-seq转录组。揭示了在有性和无融合生殖的幼苗之间差异表达的几个基因,包括减数分裂的减数分裂基因ASYNAPTIC 1(ASY1)和MULTIPOLAR SPINDLE 1(MPS1)的同源物。有趣的一类无融合生殖细胞特异性失调基因包括几个NAC转录因子,已知它们的同源物在其他植物的非生物胁迫期间会被转录重新编程。在减数分裂过程中,减数分裂和胁迫响应基因的失调可能对减数分裂的回避准备很重要,因为在无融合生殖的花芽中也可以看到类似的转录改变。此外,我们注意到在与NAC基因的一个子集显着上调相结合的情况下,无融合生殖细胞对体外渗透压的耐受性优于对性渗透的耐受。为了支持DNA甲基化表观遗传调控压力,倍性,杂交和无融合生殖的当前模型,我们注意到DNA脱甲基后Boechera幼苗中的ASY1,MPS1和NAC019同源物被解除调节,尤其是ASY1似乎仅被全球DNA甲基化所抑制在顶峰。在地理上与三倍体无融合生殖不同的二倍体无融合生殖的应激和转录反应的变异性指出了无融合生殖进化的共同和独立特征。我们的研究提供了一个分子框架,以研究与无融合生殖的进化史相关联的适应性状如何在发育早期与减数分裂基因的失调共同适应,从而早于减数分裂的重组,否则被认为有利于应激和低健身条件。

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