The primary root procambium contributes to lateral root formation through its impact on xylem connection

中柱周期 生物 木质部 细胞生物学 植物 解剖 拟南芥 遗传学 基因 突变体
作者
Noel Blanco‐Touriñán,Héctor H. Torres-Martínez,Frauke Augstein,Chloé Champeyroux,Claudia von der Mark,Annelie Carlsbecker,Joseph Dubrovsky,Antía Rodríguez-Villalón
出处
期刊:Current Biology [Elsevier]
卷期号:33 (9): 1716-1727.e3 被引量:2
标识
DOI:10.1016/j.cub.2023.03.061
摘要

The postembryonic formation of lateral roots (LRs) starts in internal root tissue, the pericycle. An important question of LR development is how the connection of the primary root vasculature with that of the emerging LR is established and whether the pericycle and/or other cell types direct this process. Here, using clonal analysis and time-lapse experiments, we show that both the procambium and pericycle of the primary root (PR) affect the LR vascular connectivity in a coordinated manner. We show that during LR formation, procambial derivates switch their identity and become precursors of xylem cells. These cells, together with the pericycle-origin xylem, participate in the formation of what we call a "xylem bridge" (XB), which establishes the xylem connection between the PR and the nascent LR. If the parental protoxylem cell fails to differentiate, XB is still sometimes formed but via a connection with metaxylem cells, highlighting that this process has some plasticity. Using mutant analyses, we show that the early specification of XB cells is determined by CLASS III HOMEODOMAIN-LEUCINE ZIPPER (HD-ZIP III) transcription factors (TFs). Subsequent XB cell differentiation is marked by the deposition of secondary cell walls (SCWs) in spiral and reticulate/scalariform patterns, which is dependent on the VASCULAR-RELATED NAC-DOMAIN (VND) TFs. XB elements were also observed in Solanum lycopersicum, suggesting that this mechanism may be more widely conserved in plants. Together, our results suggest that plants maintain vascular procambium activity, which safeguards the functionality of newly established lateral organs by assuring the continuity of the xylem strands throughout the root system.
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