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首页> 外文期刊>BMC Plant Biology >Transpositional reactivation of the Dart transposon family in rice lines derived from introgressive hybridization with Zizania latifolia
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Transpositional reactivation of the Dart transposon family in rice lines derived from introgressive hybridization with Zizania latifolia

机译:与Zizania latifolia渐渗杂交衍生的水稻品系中Dart转座子家族的转座活化

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Background It is widely recognized that interspecific hybridization may induce "genome shock", and lead to genetic and epigenetic instabilities in the resultant hybrids and/or backcrossed introgressants. A prominent component involved in the genome shock is reactivation of cryptic transposable elements (TEs) in the hybrid genome, which is often associated with alteration in the elements' epigenetic modifications like cytosine DNA methylation. We have previously reported that introgressants derived from hybridization between Oryza sativa (rice) and Zizania latifolia manifested substantial methylation re-patterning and rampant mobilization of two TEs, a copia retrotransposon Tos17 and a MITE mPing . It was not known however whether other types of TEs had also been transpositionally reactivated in these introgressants, their relevance to alteration in cytosine methylation, and their impact on expression of adjacent cellular genes. Results We document in this study that the Dart TE family was transpositionally reactivated followed by stabilization in all three studied introgressants (RZ1, RZ2 and RZ35) derived from introgressive hybridization between rice (cv. Matsumae) and Z. latifolia , while the TEs remained quiescent in the recipient rice genome. Transposon-display (TD) and sequencing verified the element's mobility and mapped the excisions and re-insertions to the rice chromosomes. Methylation-sensitive Southern blotting showed that the Dart TEs were heavily methylated along their entire length, and moderate alteration in cytosine methylation patterns occurred in the introgressants relative to their rice parental line. Real-time qRT-PCR quantification on the relative transcript abundance of six single-copy genes flanking the newly excised or inserted Dart -related TE copies indicated that whereas marked difference in the expression of all four genes in both tissues (leaf and root) were detected between the introgressants and their rice parental line under both normal and various stress conditions, the difference showed little association with the presence or absence of the newly mobilized Dart- related TEs. Conclusion Introgressive hybridization has induced transpositional reactivation of the otherwise immobile Dart -related TEs in the parental rice line (cv. Matsumae), which was accompanied with a moderate alteration in the element's cytosine methylation. Significant difference in expression of the Dart -adjacent genes occurred between the introgressants and their rice parental line under both normal and various abiotic stress conditions, but the alteration in gene expression was not coupled with the TEs.
机译:背景技术众所周知,种间杂交可引起“基因组休克”,并导致所得杂种和/或回交的渐渗种的遗传和表观遗传不稳定。与基因组休克有关的一个显着成分是杂合基因组中隐蔽转座因子(TE)的重新激活,这通常与元素的表观遗传修饰(如胞嘧啶DNA甲基化)的改变有关。我们以前曾报道过,从水稻(稻)和Z子(Zizania latifolia)之间杂交产生的基因渗入物表现出大量的甲基化重排型和两个TEs的快速动员,这两个是TE变种Tos17和MITE mPing。然而,还不清楚在这些渗入物中是否也已经其他类型的TEs进行了转座活化,它们与胞嘧啶甲基化改变的相关性以及它们对相邻细胞基因表达的影响。结果我们在这项研究中记录了Dart TE家族的转座活化,随后在所有研究的三种水稻(cv。Matsumae)和阔叶冬青之间的渗入杂交的渗入物(RZ1,RZ2和RZ35)中均得到稳定,而TEs保持静止。在受体水稻基因组中转座子展示(TD)和测序验证了该元件的迁移性,并将切除的片段和重新插入的片段映射到了水稻染色体上。甲基化敏感的Southern印迹表明,Dart TEs在其整个长度上都被高度甲基化,相对于其水稻亲本系,渐渗种发生胞嘧啶甲基化模式的适度变化。实时qRT-PCR定量分析了新切除或插入的与Dart相关的TE拷贝侧翼的六个单拷贝基因的相对转录本丰度,表明两种组织(叶和根)中所有四个基因的表达均存在显着差异在正常和各种胁迫条件下,在渗入剂与其水稻亲本之间检测到该差异,差异与新动员的与Dart相关的TE的存在与否几乎没有关联。结论渐渗杂交已诱导亲本水稻品系(cv。Matsumae)中原本不可移动的Dart相关TE的转座活化,同时伴随着该元素胞嘧啶甲基化的适度变化。在正常和各种非生物胁迫条件下,渗入者与其水稻亲本之间Dart-邻近基因的表达存在显着差异,但基因表达的改变与TEs不相关。

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