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首页> 外文期刊>The Plant Cell >TED, an autonomous and rare maize transposon of the Mutator superfamily with a high gametophytic excision frequency.
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TED, an autonomous and rare maize transposon of the Mutator superfamily with a high gametophytic excision frequency.

机译:TED,突变体超家族的自主且稀有玉米转座子,配子体切除频率高。

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摘要

Mutator (Mu) elements, one of the most diverse superfamilies of DNA transposons, are found in all eukaryotic kingdoms, but are particularly numerous in plants. Most of the present knowledge on the transposition behavior of this superfamily comes from studies of the maize (Zea mays) Mu elements, whose transposition is mediated by the autonomous Mutator-Don Robertson (MuDR) element. Here, we describe the maize element TED (for Transposon Ellen Dempsey), an autonomous cousin that differs significantly from MuDR. Element excision and reinsertion appear to require both proteins encoded by MuDR, but only the single protein encoded by TED. Germinal excisions, rare with MuDR, are common with TED, but arise in one of the mitotic divisions of the gametophyte, rather than at meiosis. Instead, transposition-deficient elements arise at meiosis, suggesting that the double-strand breaks produced by element excision are repaired differently in mitosis and meiosis. Unlike MuDR, TED is a very low-copy transposon whose number and activity do not undergo dramatic changes upon inbreeding or outcrossing. Like MuDR, TED transposes mostly to unlinked sites and can form circular transposition products. Sequences closer to TED than to MuDR were detected only in the grasses, suggesting a rather recent evolutionary split from a common ancestor.
机译:突变体(Mu)元素是DNA转座子中最多样化的超家族之一,在所有的真核生物界都可以找到,但在植物中特别多。关于该超家族的转座行为的当前大多数知识来自对玉米(Zea mays)Mu元素的研究,其转座由自主的Mutator-Don Robertson(MuDR)元素介导。在这里,我们描述了玉米元素TED(针对转座子Ellen Dempsey),这是一个与MuDR明显不同的自主表亲。元素切除和重新插入似乎需要MuDR编码的两种蛋白质,但只需要TED编码的单一蛋白质。毛发切除术在MuDR中很少见,在TED中很常见,但发生在配子体的有丝分裂区之一,而不是减数分裂。取而代之的是,减数分裂中会出现转座缺陷元件,这表明由元件切除产生的双链断裂在有丝分裂和减数分裂中的修复方式不同。与MuDR不同,TED是复制率很低的转座子,在近交或杂交时,其数量和活性不会发生显着变化。像MuDR一样,TED大部分会转位到未连接的位点,并可以形成环状转座产物。仅在草丛中检测到比TED更靠近MuDR的序列,这表明最近有一个共同祖先进化分裂。

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