Carluccio Anna Vittoria, David Laure C, Claußen Joelle, Sulley Marco, Adeoti Seun Raheemat, Abdulsalam Toyin, Gerth Stefan, Zeeman Samuel C, Gisel Andreas, Stavolone Livia
International Institute of Tropical Agriculture, Ibadan, Nigeria.
Institute for Sustainable Plant Protection, CNR, Bari, Italy.
Plant Cell Environ. 2022 Jun;45(6):1779-1795. doi: 10.1111/pce.14300. Epub 2022 Mar 30.
Despite the importance of storage root (SR) organs for cassava and the other root crops yield, their developmental origin is poorly understood. Here we use multiple approaches to shed light on the initial stages of root development demonstrating that SR and fibrous roots (FR) follow different rhizogenic processes. Transcriptome analysis carried out on roots collected before, during and after root bulking highlighted early and specific activation of a number of functions essential for root swelling and identified root-specific genes able to effectively discriminate emerging FR and SR. Starch and sugars start to accumulate at a higher rate in SR before they swell but only after parenchyma tissue has been produced. Finally, using non-destructive computed tomography measurements, we show that SR (but not FR) contain, since their emergence from the stem, an inner channel structure in continuity with the stem secondary xylem, indicating that SR derive from a distinct rhizogenic process compared with FR.
尽管贮藏根(SR)器官对木薯和其他块根作物的产量很重要,但其发育起源却鲜为人知。在这里,我们使用多种方法来阐明根发育的初始阶段,证明贮藏根和须根(FR)遵循不同的发根过程。对根膨大前、膨大期间和膨大后收集的根进行转录组分析,突出了一些对根膨大至关重要的功能的早期和特异性激活,并鉴定出能够有效区分新出现的须根和贮藏根的根特异性基因。淀粉和糖在贮藏根膨大之前开始以更高的速率积累,但仅在薄壁组织产生之后。最后,使用无损计算机断层扫描测量,我们表明贮藏根(而非须根)从茎中长出时就包含一个与茎次生木质部相连的内部通道结构,这表明与须根相比,贮藏根源自一个不同的发根过程。