Friedrich-Alexander-University Erlangen-Nuremberg, Department of Biology, Division of Biochemistry, Staudtstrasse 5, Erlangen, Germany.
International Institute for Tropical Agriculture, Ibadan, Oyo State, Nigeria.
J Exp Bot. 2021 May 4;72(10):3688-3703. doi: 10.1093/jxb/erab106.
Cassava storage roots are among the most important root crops worldwide, and represent one of the most consumed staple foods in sub-Saharan Africa. The vegetatively propagated tropical shrub can form many starchy tuberous roots from its stem. These storage roots are formed through the activation of secondary root growth processes. However, the underlying genetic regulation of storage root development is largely unknown. Here we report distinct structural and transcriptional changes occurring during the early phases of storage root development. A pronounced increase in auxin-related transcripts and the transcriptional activation of secondary growth factors, as well as a decrease in gibberellin-related transcripts were observed during the early stages of secondary root growth. This was accompanied by increased cell wall biosynthesis, most notably increased during the initial xylem expansion within the root vasculature. Starch storage metabolism was activated only after the formation of the vascular cambium. The formation of non-lignified xylem parenchyma cells and the activation of starch storage metabolism coincided with increased expression of the KNOX/BEL genes KNAT1, PENNYWISE, and POUND-FOOLISH, indicating their importance for proper xylem parenchyma function.
木薯块根是世界上最重要的薯类作物之一,也是撒哈拉以南非洲地区最常食用的主食之一。这种营养丰富的热带灌木可以从其茎上形成许多富含淀粉的块根。这些贮藏根是通过激活次生根生长过程形成的。然而,贮藏根发育的潜在遗传调控机制在很大程度上尚不清楚。在这里,我们报告了在贮藏根发育早期阶段发生的明显的结构和转录变化。在次生根生长的早期阶段,观察到与生长素相关的转录本显著增加,以及次生生长因子的转录激活,同时与赤霉素相关的转录本减少。这伴随着细胞壁生物合成的增加,尤其是在根维管束中最初的木质部扩张期间。淀粉储存代谢仅在维管形成层形成后才被激活。无木质部薄壁组织细胞的形成和淀粉储存代谢的激活与 KNOX/BEL 基因 KNAT1、PENNYWISE 和 POUND-FOOLISH 的表达增加相吻合,表明它们对木质部薄壁组织功能的重要性。