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保守的嵌合转录本 UPGRADE2 与未减数花粉的形成有关,并且仅存在于无融合生殖的 Boechera 物种中。

The conserved chimeric transcript UPGRADE2 is associated with unreduced pollen formation and is exclusively found in apomictic Boechera species.

机构信息

Leibniz Institute of Plant Genetics and Crop Plant Research, D-06466 Gatersleben, Germany.

出版信息

Plant Physiol. 2013 Dec;163(4):1640-59. doi: 10.1104/pp.113.222448. Epub 2013 Oct 15.

Abstract

In apomictic Boechera spp., meiotic diplospory leads to the circumvention of meiosis and the suppression of recombination to produce unreduced male and female gametes (i.e. apomeiosis). Here, we have established an early flower developmental staging system and have performed microarray-based comparative gene expression analyses of the pollen mother cell stage in seven diploid sexual and seven diploid apomictic genotypes to identify candidate factors for unreduced pollen formation. We identified a transcript unique to apomictic Boechera spp. called UPGRADE2 (BspUPG2), which is highly up-regulated in their pollen mother cells. BspUPG2 is highly conserved among apomictic Boechera spp. genotypes but has no homolog in sexual Boechera spp. or in any other taxa. BspUPG2 undergoes posttranscriptional processing but lacks a prominent open reading frame. Together with the potential of stably forming microRNA-like secondary structures, we hypothesize that BspUPG2 functions as a long regulatory noncoding messenger RNA-like RNA. BspUPG2 has apparently arisen through a three-step process initiated by ancestral gene duplication of the original BspUPG1 locus, followed by sequential insertions of segmentally duplicated gene fragments, with final exonization of its sequence structure. Its genesis reflects the hybridization history that characterizes the genus Boechera.

摘要

在无融合生殖的 Boechera 物种中,减数分裂的二倍体孢子发生导致减数分裂的规避和重组的抑制,从而产生未减数的雄性和雌性配子(即无减数分裂)。在这里,我们建立了一个早期花发育分期系统,并对七个二倍体有性和七个二倍体无融合生殖基因型的花粉母细胞阶段进行了基于微阵列的比较基因表达分析,以鉴定未减数花粉形成的候选因素。我们鉴定了一个在无融合生殖 Boechera 物种中特有的转录本,称为 UPGRADE2(BspUPG2),它在花粉母细胞中高度上调。BspUPG2 在无融合生殖 Boechera 物种的基因型中高度保守,但在有性 Boechera 物种或任何其他分类群中都没有同源物。BspUPG2 经历转录后加工,但缺乏明显的开放阅读框。结合稳定形成 miRNA 样二级结构的潜力,我们假设 BspUPG2 作为长调控非编码信使 RNA 样 RNA 发挥作用。BspUPG2 显然是通过原始 BspUPG1 基因座的祖先基因复制引发的三步过程产生的,随后是片段重复基因片段的连续插入,最后是其序列结构的外显子化。它的起源反映了 Boechera 属的杂交历史。

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本文引用的文献

2
Reproductive development in apomictic populations of Arabis holboellii (Brassicaceae).
Sex Plant Reprod. 2001 Dec;14(4):195-200. doi: 10.1007/s00497-001-0118-0. Epub 2001 Nov 16.
3
The significance of genic balance to endosperm development in interspecific crosses.
Theor Appl Genet. 1980 Jan;57(1):5-9. doi: 10.1007/BF00276002.
6
Volume-based pollen size analysis: an advanced method to assess somatic and gametophytic ploidy in flowering plants.
Plant Reprod. 2013 Jun;26(2):65-81. doi: 10.1007/s00497-012-0209-0. Epub 2013 Jan 11.
7
BcMF11, a novel non-coding RNA gene from Brassica campestris, is required for pollen development and male fertility.
Plant Cell Rep. 2013 Jan;32(1):21-30. doi: 10.1007/s00299-012-1337-6. Epub 2012 Oct 12.
8
Does hybridization drive the transition to asexuality in diploid Boechera?
Evolution. 2012 Apr;66(4):985-95. doi: 10.1111/j.1558-5646.2011.01507.x. Epub 2011 Dec 8.
9
Differential effects of polyploidy and diploidy on fitness of apomictic Boechera.
Sex Plant Reprod. 2012 Jun;25(2):97-109. doi: 10.1007/s00497-012-0181-8. Epub 2012 Feb 25.
10
Analysis of conserved microRNAs in floral tissues of sexual and apomictic Boechera species.
BMC Genomics. 2011 Oct 11;12:500. doi: 10.1186/1471-2164-12-500.

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