Rahimi Arezoo, Karami Omid, Lestari Angga Dwituti, de Werk Tobias, Amakorová Petra, Shi Dongbo, Novák Ondřej, Greb Thomas, Offringa Remko
Plant Developmental Genetics, Institute of Biology Leiden, Leiden University, Sylviusweg 72, 2333 BE Leiden, the Netherlands.
Plant Developmental Genetics, Institute of Biology Leiden, Leiden University, Sylviusweg 72, 2333 BE Leiden, the Netherlands.
Curr Biol. 2022 Apr 25;32(8):1764-1775.e3. doi: 10.1016/j.cub.2022.02.060. Epub 2022 Mar 15.
Plant secondary growth, which is the basis of wood formation, includes the production of secondary xylem, which is derived from meristematic cambium cells embedded in vascular tissue. Here, we identified an important role for the Arabidopsis thaliana (Arabidopsis) AT-HOOK MOTIF CONTAINING NUCLEAR LOCALIZED 15 (AHL15) transcriptional regulator in controlling vascular cambium activity. The limited secondary xylem development in inflorescence stems of herbaceous Arabidopsis plants was significantly reduced in ahl15 loss-of-function mutants, whereas constitutive or vascular meristem-specific AHL15 overexpression produced woody inflorescence stems. AHL15 was required for enhanced secondary xylem formation in the woody suppressor of overexpression of constans 1 (soc1) fruitfull (ful) double loss-of-function mutant. Moreover, we found that AHL15 induces vascular cambium activity downstream of the repressing SOC1 and FUL transcription factors, most likely similar to how it enhances lateral branching by promoting biosynthesis of the hormone cytokinin. Our results uncover a novel pathway driving cambium development, in which AHL15 expression levels act in parallel to and are dependent on the well-established TDIF-PXY-WOX pathway to differentiate between herbaceous and woody stem growth.
植物的次生生长是木材形成的基础,包括次生木质部的产生,次生木质部源自嵌入维管组织中的分生形成层细胞。在此,我们确定了拟南芥含AT钩基序核定位蛋白15(AHL15)转录调节因子在控制维管形成层活性方面的重要作用。在ahl15功能缺失突变体中,草本拟南芥植株花序茎中有限的次生木质部发育显著减少,而组成型或维管分生组织特异性AHL15过表达则产生木质化的花序茎。在常量表达过强抑制子1(soc1)和丰产基因(ful)双功能缺失突变体的木质化抑制子中,增强次生木质部形成需要AHL15。此外,我们发现AHL15在抑制性SOC1和FUL转录因子下游诱导维管形成层活性,很可能类似于其通过促进激素细胞分裂素的生物合成来增强侧枝生长的方式。我们的研究结果揭示了一条驱动形成层发育的新途径,其中AHL15的表达水平与已确立的TDIF-PXY-WOX途径并行发挥作用,并依赖于该途径来区分草本茎和木质茎的生长。