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玉米的Mu转座元件:发育过程中转座及拷贝数调控的证据

The Mu transposable elements of maize: evidence for transposition and copy number regulation during development.

作者信息

Alleman M, Freeling M

出版信息

Genetics. 1986 Jan;112(1):107-19. doi: 10.1093/genetics/112.1.107.

Abstract

The Mu transposon of maize exists in a highly mutagenic strain called Robertson's Mutator. Plants of this strain contain 10-50 copies of the Mu element, whereas most maize strains and other plants have none. When Mutator plants are crossed to plants of the inbred line 1S2P, which does not have copies of Mu, the progeny plants have approximately the same number of Mu sequences as did their Mutator parent. Approximately one-half of these copies have segregated from their parent and one-half have arisen by transposition and are integrated into new positions in the genome. This maintenance of copy number can be accounted for by an extremely high rate of transposition of the Mu elements (10-15 transpositions per gamete per generation). When Mutator plants are self-pollinated, the progeny double their Mu copy number in the first generation, but maintain a constant number of Mu sequences with subsequent self-pollinations. Transposition of Mu and the events that lead to copy number maintenance occur very late in the development of the germ cells but before fertilization. A larger version of the Mu element transposes but is not necessary for transposition of the Mu sequences. The progeny of crosses with a Mutator plant occasionally lack Mutator activity; these strains retain copies of the Mu element, but these elements no longer transpose.

摘要

玉米的Mu转座子存在于一种名为罗伯逊突变体的高致突变性菌株中。该菌株的植株含有10 - 50个Mu元件拷贝,而大多数玉米菌株和其他植物则没有。当突变体植株与不含有Mu拷贝的自交系1S2P植株杂交时,子代植株的Mu序列数量与其突变体亲本大致相同。这些拷贝中约一半是从亲本分离而来,另一半是通过转座产生并整合到基因组的新位置。Mu元件极高的转座率(每代每个配子发生10 - 15次转座)可以解释拷贝数的这种维持。当突变体植株自花授粉时,子代在第一代使Mu拷贝数加倍,但在随后的自花授粉中保持Mu序列数量恒定。Mu的转座以及导致拷贝数维持的事件发生在生殖细胞发育的晚期,但在受精之前。较大版本的Mu元件会发生转座,但对于Mu序列的转座不是必需的。与突变体植株杂交的子代偶尔会缺乏突变体活性;这些菌株保留了Mu元件的拷贝,但这些元件不再发生转座。

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