...
首页> 外文期刊>Frontiers in Plant Science >Genome-specific differential gene expressions in resynthesized Brassica allotetraploids from pair-wise crosses of three cultivated diploids revealed by RNA-seq
【24h】

Genome-specific differential gene expressions in resynthesized Brassica allotetraploids from pair-wise crosses of three cultivated diploids revealed by RNA-seq

机译:RNA-seq揭示的三个栽培二倍体成对杂交后的芸苔异源四倍体中基因组特异性差异基因表达

获取原文

摘要

Polyploidy is popular for the speciation of angiosperms but the initial stage of allopolyploidization resulting from interspecific hybridization and genome duplication is associated with different extents of changes in genome structure and gene expressions. Herein, the transcriptomes detected by RNA-seq in resynthesized Brassica allotetraploids ( Brassica juncea , AABB; B. napus , AACC; B. carinata , BBCC) from the pair-wise crosses of the same three diploids ( B. rapa , AA; B. nigra , BB; B. oleracea , CC) were compared to reveal the patterns of gene expressions from progenitor genomes and the effects of different types of genome combinations and cytoplasm, upon the genome merger and duplication. From transcriptomic analyses for leaves and silique walls, extensive expression alterations were revealed in these resynthesized allotetraploids relative to their diploid progenitors, as well as during the transition from vegetative to reproductive development, for differential and transgressive gene expressions were variable in numbers and functions. Genes involved in glucosinolates and DNA methylation were transgressively up-regulated among most samples, suggesting that gene expression regulation was immediately established after allopolyploidization. The expression of ribosomal protein genes was also tissue-specific and showed a similar expression hierarchy of rRNA genes. The balance between the co-up and co-down regulation was observed between reciprocal B. napus with different types of the cytoplasm. Our results suggested that gene expression changes occurred after initial genome merger and such profound alterations might enhance the growth vigor and adaptability of Brassica allotetraploids.
机译:多倍体在被子植物的物种形成中很流行,但是同种间杂交和基因组复制导致的同种多倍体化的初始阶段与基因组结构和基因表达变化的不同程度有关。在此,通过RNA-seq从相同的三个二倍体(B. rapa,AA; B比较了黑黑猩猩(BB),油菜(B. oleracea,CC),以揭示祖细胞基因组的基因表达模式以及基因组合并和复制对不同类型的基因组组合和细胞质的影响。通过对叶片和长角果壁的转录组分析,这些重新合成的异源四倍体相对于它们的二倍体祖细胞以及从营养发育到生殖发育的过渡过程中发现了广泛的表达变化,因为差异和侵略性基因表达在数量和功能上都是可变的。在大多数样品中,涉及芥子油苷和DNA甲基化的基因被过度地上调,这表明在异源多倍体化后立即建立了基因表达调控。核糖体蛋白基因的表达也是组织特异性的,并显示出rRNA基因的相似表达层次。在具有不同类型细胞质的倒数甘蓝型油菜之间观察到上调和下调之间的平衡。我们的结果表明,基因表达在最初的基因组合并后发生了变化,而这种深刻的改变可能会增强芸苔属四倍体的生长活力和适应性。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号