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通过从野生稻(菰,拉丁学名:Zizania latifolia Griseb.)导入基因,激活水稻中活跃的微型反向转座子mPing和Pong。

Mobilization of the active MITE transposons mPing and Pong in rice by introgression from wild rice (Zizania latifolia Griseb.).

作者信息

Shan Xiaohui, Liu Zhenlan, Dong Zhenying, Wang Yongming, Chen Yu, Lin Xiuyun, Long Likun, Han Fangpu, Dong Yingshan, Liu Bao

机构信息

Laboratory of Molecular Epigenetics, Institute of Genetics and Cytology, Northeast Normal University, Changchun, China.

出版信息

Mol Biol Evol. 2005 Apr;22(4):976-90. doi: 10.1093/molbev/msi082. Epub 2005 Jan 12.

Abstract

Hybridization between different species plays an important role in plant genome evolution, as well as is a widely used approach for crop improvement. McClintock has predicted that plant wide hybridization constitutes a "genomic shock" whereby cryptic transposable elements may be activated. However, direct experimental evidence showing a causal relationship between plant wide hybridization and transposon mobilization has not yet been reported. The miniature-Ping (mPing) is a recently isolated active miniature inverted-repeat transposable element transposon from rice, which is mobilized by tissue culture and gamma-ray irradiation. We show herein that mPing, together with its putative transposase-encoding partner, Pong, is mobilized in three homologous recombinant inbred lines (RILs), derived from hybridization between rice (cultivar Matsumae) and wild rice (Zizania latifolia Griseb.), harboring introgressed genomic DNA from wild rice. In contrast, both elements remain immobile in two lines sharing the same parentage to the RILs but possessing no introgressed DNA. Thus, we have presented direct evidence that is consistent with McClintock's insight by demonstrating a causal link between wide hybridization and transposon mobilization in rice. In addition, we report an atypical behavior of mPing/Pong mobilization in these lines, i.e., the exclusive absence of footprints after excision.

摘要

不同物种间的杂交在植物基因组进化中起着重要作用,同时也是一种广泛用于作物改良的方法。麦克林托克曾预测,植物全基因组杂交会引发一种“基因组冲击”,在此过程中,隐匿的转座元件可能会被激活。然而,尚未有直接的实验证据表明植物全基因组杂交与转座子激活之间存在因果关系。微型Ping(mPing)是最近从水稻中分离出的一种活跃的微型反向重复转座元件转座子,它可通过组织培养和伽马射线照射被激活。我们在此表明,mPing及其假定的编码转座酶的伴侣Pong,在三个同源重组自交系(RIL)中被激活,这些自交系源自水稻(品种松前)与野生稻(菰)的杂交,携带来自野生稻的渐渗基因组DNA。相比之下,在与这些RIL具有相同亲本但没有渐渗DNA的两个品系中,这两种元件均保持静止状态。因此,我们通过证明水稻中广泛杂交与转座子激活之间的因果联系,提供了与麦克林托克观点相符的直接证据。此外,我们报道了这些品系中mPing/Pong激活的一种非典型行为,即切除后足迹完全缺失。

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