Morcillo Rafael Jorge León, Leal-López Jesús, Férez-Gómez Alberto, López-Serrano Lidia, Baroja-Fernández Edurne, Gámez-Arcas Samuel, Tortosa Germán, López Leonel E, Estevez José Manuel, Doblas Verónica G, Frías-España Laura, García-Pedrajas María Dolores, Sarmiento-Villamil Jorge, Pozueta-Romero Javier
Institute for Mediterranean and Subtropical Horticulture "La Mayora" (IHSM), CSIC-UMA, Campus de Teatinos, Avda. Louis Pasteur, 49, 29010 Málaga, Spain.
Instituto de Agrobiotecnología (IdAB), CSIC-Gobierno de Navarra, Iruñako etorbidea 123, 31192 Mutiloabeti, Nafarroa, Spain.
Plant Physiol. 2024 Dec 2;196(4):2890-2904. doi: 10.1093/plphys/kiae484.
In Arabidopsis (Arabidopsis thaliana (L.) Heynh), exposure to volatile compounds (VCs) emitted by Penicillium aurantiogriseum promotes root hair (RH) proliferation and hyper-elongation through mechanisms involving ethylene, auxin, and photosynthesis signaling. In addition, this treatment enhances the levels of the small signaling peptide RAPID ALKALINIZATION FACTOR 22 (RALF22). Here, we used genetics to address the role of RALF22 in fungal VC-promoted RH growth and to identify the bioactive fungal VC. We found that RHs of ralf22 and feronia (fer-4) plants impaired in the expression of RALF22 and its receptor FERONIA, respectively, responded weakly to fungal VCs. Unlike in wild-type roots, fungal VC exposure did not enhance RALF22 transcript levels in roots of fer-4 and ethylene- and auxin-insensitive mutants. In ralf22 and fer-4 roots, this treatment did not enhance the levels of ERS2 transcripts encoding one member of the ethylene receptor family and those of some RH-related genes. RHs of ers2-1 and the rsl2rsl4 double mutants impaired in the expression of ERS2 and the ethylene- and auxin-responsive ROOT HAIR DEFECTIVE 6-LIKE 2 and 4 transcription factors, respectively, weakly responded to fungal VCs. Moreover, roots of plants defective in photosynthetic responsiveness to VCs exhibited weak RALF22 expression and RH growth responses to fungal VCs. VCs of ΔefeA strains of P. aurantiogriseum cultures impaired in ethylene synthesis weakly promoted RH proliferation and elongation in exposed plants. We conclude that RALF22 simultaneously functions as a transcriptionally regulated signaling molecule that participates in the ethylene, auxin, and photosynthesis signaling-mediated RH growth response to fungal ethylene emissions and regulation of ethylene perception in RHs.
在拟南芥(Arabidopsis thaliana (L.) Heynh)中,暴露于由橙灰青霉(Penicillium aurantiogriseum)释放的挥发性化合物(VCs)中,通过涉及乙烯、生长素和光合作用信号传导的机制促进根毛(RH)的增殖和过度伸长。此外,这种处理提高了小信号肽快速碱化因子22(RALF22)的水平。在此,我们利用遗传学方法来研究RALF22在真菌VC促进的RH生长中的作用,并鉴定具有生物活性的真菌VC。我们发现,分别在RALF22及其受体FERONIA(FER-4)的表达上受损的ralf22和feronia(fer-4)植物的根毛对真菌VC的反应较弱。与野生型根不同,暴露于真菌VC中并不会提高fer-4以及乙烯和生长素不敏感突变体根中的RALF22转录水平。在ralf22和fer-4根中,这种处理不会提高编码乙烯受体家族成员之一的ERS2转录本水平以及一些与根毛相关基因的转录本水平。分别在ERS2以及乙烯和生长素响应性根毛缺陷型6样2和4转录因子的表达上受损的ers2-1和rsl2rsl4双突变体的根毛对真菌VC的反应较弱。此外,对VC光合反应有缺陷的植物根对真菌VC表现出较弱的RALF22表达和根毛生长反应。乙烯合成受损的橙灰青霉培养物的ΔefeA菌株的VC在暴露的植物中对根毛增殖和伸长的促进作用较弱。我们得出结论,RALF22同时作为一种转录调控的信号分子,参与乙烯、生长素和光合作用信号介导的根毛对真菌乙烯排放的生长反应以及根毛中乙烯感知的调节。