首页> 外文期刊>BMC Plant Biology >Revealing biomass heterosis in the allodiploid x Brassicoraphanus , a hybrid between Brassica rapa and Raphanus sativus , through integrated transcriptome and metabolites analysis
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Revealing biomass heterosis in the allodiploid x Brassicoraphanus , a hybrid between Brassica rapa and Raphanus sativus , through integrated transcriptome and metabolites analysis

机译:通过集成的转录组和代谢物分析,揭示AlloDiploid X Brassicoraphanus的生物量杂种优势,芸苔属Rapa和Raphanus sativus之间的杂交物

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Heterosis is biologically important but the molecular basis of the phenomenon is poorly understood. We characterized intergeneric hybrids between B. rapa cv. Chiifu and R. sativus cv. WK10039 as an extreme example of heterosis. Taking advantage of clear heterosis phenotypes and the genetic distance between parents, we performed transcriptome and metabolite analysis to decipher the molecular basis of heterosis. The heterosis was expressed as fresh weight in the field and as inflorescence stem length in the glass house. Flowering time, distributed as a normal segregating population, ranged from the early flowering of one parent to the late flowering of the other, in contrast to the homogeneous flowering time in a typical F1 population, indicating unstable allelic interactions. The transcriptome and metabolome both indicated that sugar metabolism was altered, suggesting that the change in metabolism was linked to the heterosis. Because alleles were not shared between the hybridized genomes, classic models only partly explain this heterosis, indicating that other mechanisms are involved. The differential expression of genes for primary and secondary metabolism, along with the altered metabolite profiles, suggests that heterosis could involve a change in balance between primary and secondary metabolism.
机译:杂种体在生物学上重要,但现象的分子基础知识很差。我们在B. RAPA CV之间表征了邻杂交杂种。 Chiifu和R. sativus cv。 WK10039作为杂种优势的极端例子。利用透明的杂种优势表型和父母之间的遗传距离,我们进行了转录组和代谢物分析以破译杂种优势的分子基础。杂种优势在该领域中表达为鲜重的重量,并且在玻璃房屋中作为花序茎长。开花时间,作为正常隔离种群分布,从一个父母的早期开花到另一个父母的延迟开花,与典型的F1种群中的均匀开花时间相反,表明不稳定的等待性相互作用。转录组和代谢物均表明糖代谢被改变,表明代谢的变化与杂种优势相关联。因为在杂交的基因组之间未分享等位基因,所以经典模型仅部分解释这种杂种优势,表明涉及其他机制。基因对初级和次生代谢的差异表达以及改变的代谢物谱表明,杂种优势可能涉及初级和次生新陈代谢之间平衡的变化。

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