Characterization of retrotransposon sequences expressed in inflorescences of apomictic and sexual Paspalum notatum plants.

Sexual Plant Reproduction Pub Date : 2011-09-01 Epub Date: 2011-03-11 DOI:10.1007/s00497-011-0165-0
Ana Claudia Ochogavía, José Guillermo Seijo, Ana María González, Maricel Podio, Erica Duarte Silveira, Ana Luiza Machado Lacerda, Vera Tavares de Campos Carneiro, Juan Pablo A Ortiz, Silvina Claudia Pessino
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引用次数: 32

Abstract

Apomixis, an asexual mode of reproduction through seeds, holds much promise for agricultural advances. However, the molecular mechanisms underlying this trait are still poorly understood. We previously isolated several transcripts representing novel sequences differentially expressed in reproductive tissues of sexual and apomictic plants. Here, we report the characterization of two of these unknown RNA transcripts (experimental codes N17 and N22). Since original fragments showed no significant homologies to sequences at databases, preliminary genomic PCR experiments were carried out to discard possible contaminations. RACE extension on flanking regions provided longer sequences for the candidates and additional related transcripts, which revealed similarity to LTR retrotransposons carrying short transduplicated segments of protein-coding genes. Interestingly, some transduplicated segments corresponded to genes previously associated with apomictic development. Gene copy number estimations revealed a moderate representation of the elements in the genome, with significantly increased numbers in a sexual genotype with respect to an apomictic one. Genetic mapping of N17 showed that a copy of this particular element was located onto Paspalum notatum linkage group F3c, at a central non-recombinant region resembling a centromere. Expression analysis showed an increased activity of N17 and N22 sense strands in ovules of the sexual genotypes. A retrotransposon-specific differential display analysis aimed at detecting related sequences allowed the identification of a complex family, with the majority of its members represented in the sexual genotype. Our results suggest that these elements could be participating in regulatory pathways related to apomixis and sexuality.

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无融合和有性生殖雀稗花序中反转录转座子序列的研究。
无融合生殖是一种通过种子进行无性繁殖的方式,它对农业的进步大有希望。然而,这种特性背后的分子机制仍然知之甚少。我们之前分离了几个转录本,代表了在有性生殖和无融合生殖植物的生殖组织中差异表达的新序列。在这里,我们报告了两个未知RNA转录物的特征(实验代码N17和N22)。由于原始片段与数据库中的序列没有明显的同源性,因此进行了初步的基因组PCR实验以排除可能的污染。RACE在侧翼区域的延伸为候选转录本和其他相关转录本提供了更长的序列,这揭示了LTR反转录转座子携带蛋白质编码基因的短跨链片段的相似性。有趣的是,一些交叉复制片段对应于先前与无细胞分裂发育相关的基因。基因拷贝数估计揭示了基因组中元素的适度代表性,性基因型的数量显著增加,而非融合基因型的数量则显著增加。N17的遗传图谱显示,该特殊元件的拷贝位于雀稗连锁群F3c上,位于中心非重组区域,类似于着丝粒。表达分析表明,性基因型胚珠中N17和N22义链活性增加。一项旨在检测相关序列的反转录转座子特异性差异显示分析允许鉴定一个复杂的家族,其大多数成员代表了性基因型。我们的研究结果表明,这些元素可能参与与无融合和性相关的调节途径。
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Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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