BESE Division, Plant Cell and Developmental Biology, King Abdullah University of Science and Technology, Thuwal, Kingdom of Saudi Arabia.
BESE Division, The BioActives Lab, King Abdullah University of Science and Technology, Thuwal, Kingdom of Saudi Arabia.
Plant Physiol. 2022 Aug 1;189(4):2281-2297. doi: 10.1093/plphys/kiac215.
The parasitic plant Striga (Striga hermonthica) invades the host root through the formation of a haustorium and has detrimental impacts on cereal crops. The haustorium results from the prehaustorium, which is derived directly from the differentiation of the Striga radicle. The molecular mechanisms leading to radicle differentiation shortly after germination remain unclear. In this study, we determined the developmental programs that regulate terminal prehaustorium formation in S. hermonthica at cellular resolution. We showed that shortly after germination, cells in the root meristem undergo multiplanar divisions. During growth, the meristematic activity declines and associates with reduced expression of the stem cell regulator PLETHORA1 and the cell cycle genes CYCLINB1 and HISTONE H4. We also observed a basal localization of the PIN-FORMED (PIN) proteins and a decrease in auxin levels in the meristem. Using the structural layout of the root meristem and the polarity of outer-membrane PIN proteins, we constructed a mathematical model of auxin transport that explains the auxin distribution patterns observed during S. hermonthica root growth. Our results reveal a fundamental molecular and cellular framework governing the switch of S. hermonthica roots to form the invasive prehaustoria.
寄生植物独脚金(Striga hermonthica)通过形成吸器侵入宿主根,并对谷类作物造成有害影响。吸器来源于预吸器,预吸器直接来源于独脚金胚根的分化。发芽后不久导致胚根分化的分子机制仍不清楚。在这项研究中,我们以细胞分辨率确定了调节独脚金终端预吸器形成的发育程序。我们表明,在发芽后不久,根分生组织中的细胞经历多平面分裂。在生长过程中,分生组织活性下降,与干细胞调节因子 PLETHORA1 和细胞周期基因 CYCLINB1 和 HISTONE H4 的表达减少有关。我们还观察到 PIN 蛋白在基部的定位和在分生组织中生长素水平的降低。利用根分生组织的结构布局和外膜 PIN 蛋白的极性,我们构建了一个生长素运输的数学模型,该模型解释了在独脚金根生长过程中观察到的生长素分布模式。我们的结果揭示了一个基本的分子和细胞框架,该框架控制着独脚金根向形成侵袭性预吸器的转变。