Department of Biology, Indiana University, Bloomington, IN 47405, USA.
Plant Physiol. 2023 Aug 3;192(4):2687-2702. doi: 10.1093/plphys/kiad248.
Light, temperature, water, and nutrient availability influence how plants grow to maximize access to resources. Axial growth, the linear extension of tissues by coordinated axial cell expansion, plays a central role in these adaptive morphological responses. Using Arabidopsis (Arabidopsis thaliana) hypocotyl cells to explore axial growth control mechanisms, we investigated WAVE-DAMPENED2-LIKE4 (WDL4), an auxin-induced, microtubule-associated protein and member of the larger WDL gene family shown to modulate hypocotyl growth under changing environmental conditions. Loss-of-function wdl4 seedlings exhibited a hyper-elongation phenotype under light conditions, continuing to elongate when wild-type Col-0 hypocotyls arrested and reaching 150% to 200% of wild-type length before shoot emergence. wdl4 seedling hypocotyls showed dramatic hyper-elongation (500%) in response to temperature elevation, indicating an important role in morphological adaptation to environmental cues. WDL4 was associated with microtubules under both light and dark growth conditions, and no evidence was found for altered microtubule array patterning in loss-of-function wdl4 mutants under various conditions. Examination of hormone responses showed altered sensitivity to ethylene and evidence for changes in the spatial distribution of an auxin-dependent transcriptional reporter. Our data provide evidence that WDL4 regulates hypocotyl cell elongation without substantial changes to microtubule array patterning, suggesting an unconventional role in axial growth control.
光、温度、水和养分供应会影响植物的生长方式,使其最大限度地获取资源。轴向生长是指组织通过协调的轴向细胞扩展进行线性延伸,它在这些适应性形态响应中起着核心作用。我们使用拟南芥(Arabidopsis thaliana)下胚轴细胞来探索轴向生长控制机制,研究了 WAVE-DAMPENED2-LIKE4(WDL4),它是一种生长素诱导的微管相关蛋白,也是较大的 WDL 基因家族的成员,该基因家族在环境条件变化下调节下胚轴生长。功能丧失型 wdl4 幼苗在光照条件下表现出过度伸长的表型,当野生型 Col-0 下胚轴停止伸长时,它们仍在继续伸长,并在出现芽之前达到野生型长度的 150%到 200%。wdl4 幼苗下胚轴对温度升高表现出显著的过度伸长(500%),表明其在形态适应环境信号方面起着重要作用。WDL4 在光照和黑暗生长条件下都与微管相关,在各种条件下,功能丧失型 wdl4 突变体中没有发现微管阵列模式发生改变的证据。对激素反应的研究表明,WDL4 对乙烯的敏感性发生改变,并且证据表明生长素依赖性转录报告基因的空间分布发生变化。我们的数据提供了证据表明,WDL4 调节下胚轴细胞伸长,而微管阵列模式没有明显变化,这表明它在轴向生长控制中具有非常规作用。