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首页> 外文期刊>Journal of Experimental Botany >Transcriptomic and anatomical complexity of primary, seminal, and crown roots highlight root type-specific functional diversity in maize (Zea mays L.)
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Transcriptomic and anatomical complexity of primary, seminal, and crown roots highlight root type-specific functional diversity in maize (Zea mays L.)

机译:初生,生精和冠状根的转录组学和解剖学复杂性突出了玉米(Zea mays L.)中根系类型特异性的功能多样性。

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摘要

Maize develops a complex root system composed of embryonic and post-embryonic roots. Spatio-temporal differences in the formation of these root types imply specific functions during maize development. A comparative transcriptomic study of embryonic primary and seminal, and post-embryonic crown roots of the maize inbred line B73 by RNA sequencing along with anatomical studies were conducted early in development. Seminal roots displayed unique anatomical features, whereas the organization of primary and crown roots was similar. For instance, seminal roots displayed fewer cortical cell files and their stele contained more meta-xylem vessels. Global expression profiling revealed diverse patterns of gene activity across all root types and highlighted the unique transcriptome of seminal roots. While functions in cell remodeling and cell wall formation were prominent in primary and crown roots, stress-related genes and transcriptional regulators were over-represented in seminal roots, suggesting functional specialization of the different root types. Dynamic expression of lignin biosynthesis genes and histochemical staining suggested diversification of cell wall lignification among the three root types. Our findings highlight a cost-efficient anatomical structure and a unique expression profile of seminal roots of the maize inbred line B73 different from primary and crown roots.
机译:玉米发展了由胚根和胚后根组成的复杂根系。这些根类型形成的时空差异暗示了玉米发育过程中的特定功能。在开发的早期阶段,通过RNA测序对玉米自交系B73的胚性初生精浆和胚后冠状根进行了比较转录组学研究以及解剖学研究。精根显示出独特的解剖特征,而初级和冠状根的组织相似。例如,生精根显示较少的皮质细胞档案,其碑骨包含较多的间木质部血管。全局表达谱揭示了所有根类型上基因活性的不同模式,并突出了精根的独特转录组。虽然细胞重塑和细胞壁形成的功能在主根和冠状根中都很突出,但与应力相关的基因和转录调节因子在精根中却过分代表,表明不同根类型的功能特化。木质素生物合成基因的动态表达和组织化学染色表明三种根类型之间的细胞壁木质化的多样化。我们的发现凸显了玉米自交系B73不同于原始和冠状根的精打细算的解剖结构和独特的表达谱。

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