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Comparative Transcriptome Atlases Reveal Altered Gene Expression Modules between Two Cleomaceae C3 and C4 Plant Species

机译:比较转录组图集揭示了两个醉蝶科C3和C4植物物种之间改变的基因表达模块。

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摘要

C4 photosynthesis outperforms the ancestral C3 state in a wide range of natural and agro-ecosystems by affording higher water-use and nitrogen-use efficiencies. It therefore represents a prime target for engineering novel, high-yielding crops by introducing the trait into C3 backgrounds. However, the genetic architecture of C4 photosynthesis remains largely unknown. To define the divergence in gene expression modules between C3 and C4 photosynthesis during leaf ontogeny, we generated comprehensive transcriptome atlases of two Cleomaceae species, Gynandropsis gynandra (C4) and Tarenaya hassleriana (C3), by RNA sequencing. Overall, the gene expression profiles appear remarkably similar between the C3 and C4 species. We found that known C4 genes were recruited to photosynthesis from different expression domains in C3, including typical housekeeping gene expression patterns in various tissues as well as individual heterotrophic tissues. Furthermore, we identified a structure-related module recruited from the C3 root. Comparison of gene expression patterns with anatomy during leaf ontogeny provided insight into genetic features of Kranz anatomy. Altered expression of developmental factors and cell cycle genes is associated with a higher degree of endoreduplication in enlarged C4 bundle sheath cells. A delay in mesophyll differentiation apparent both in the leaf anatomy and the transcriptome allows for extended vein formation in the C4 leaf.
机译:在广泛的自然和农业生态系统中,C4的光合作用优于祖先的C3态,可提供更高的用水和氮利用效率。因此,通过将该特性引入C3背景中,它成为工程化新颖,高产作物的主要目标。但是,C4光合作用的遗传结构仍是未知之数。为了定义叶片发育过程中C3和C4光合作用之间基因表达模块的差异,我们通过RNA测序生成了两个醉蝶科物种Gynandropsis gynandra(C4)和Tarenaya hassleriana(C3)的综合转录组图谱。总体而言,C3和C4物种之间的基因表达谱非常相似。我们发现,已知的C4基因从C3中的不同表达域被募集到光合作用,包括在各种组织以及单个异养组织中的典型管家基因表达模式。此外,我们确定了从C3根招募的与结构相关的模块。在叶片发育过程中基因表达模式与解剖结构的比​​较提供了对Kranz解剖结构的遗传特征的了解。发育因子和细胞周期基因表达的改变与增大的C4束鞘细胞内核复制的程度有关。叶解剖和转录组中均明显存在叶肉分化的延迟,从而延长了C4叶中的静脉形成。

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