Ma Yi, Garrido Keila, Ali Rashid, Berkowitz Gerald A
Department of Plant Science and Landscape Architecture, Agricultural Biotechnology Laboratory, University of Connecticut, Storrs, CT, 06269, USA.
Plant J. 2023 Mar;113(6):1223-1236. doi: 10.1111/tpj.16106. Epub 2023 Jan 19.
Plant cyclic nucleotide gated channels (CNGCs) facilitate cytosolic Ca influx as an early step in numerous signaling cascades. CNGC-mediated Ca elevations are essential for plant immune defense and high temperature thermosensing. In the present study, we evaluated phenotypes of CNGC2, CNGC4, CNGC6, and CNGC12 null mutants in these two pathways. It is shown CNGC2, CNGC4, and CNGC6 physically interact in vivo, whereas CNGC12 does not. CNGC involvement in immune signaling was evaluated by monitoring mutant response to elicitor peptide Pep3. Pep3 response cascades involving CNGCs included mitogen-activated kinase activation mediated by Ca -dependent protein kinase phosphorylation. Pep3-induced reactive oxygen species generation was impaired in cngc2, cngc4, and cngc6, but not in cngc12, suggesting that CNGC2, CNGC4, and CNGC6 (which physically interact) may be components of a multimeric CNGC channel complex for immune signaling. However, unlike cngc2 and cngc4, cngc6 is not sensitive to high Ca and displays no pleiotropic dwarfism. All four cngc mutants showed thermotolerance compared to wild-type, although CNGC12 does not interact with the other three CNGCs. These results imply that physically interacting CNGCs may, in some cases, function in a signaling cascade as components of a heteromeric channel complex, although this may not be the case in other signaling pathways.
植物环核苷酸门控通道(CNGCs)促进胞质Ca内流,这是众多信号级联反应的早期步骤。CNGC介导的Ca升高对于植物免疫防御和高温热感知至关重要。在本研究中,我们评估了CNGC2、CNGC4、CNGC6和CNGC12缺失突变体在这两条途径中的表型。结果表明,CNGC2、CNGC4和CNGC6在体内存在物理相互作用,而CNGC12则不存在。通过监测突变体对激发肽Pep3的反应来评估CNGC在免疫信号传导中的作用。涉及CNGCs的Pep3反应级联包括由钙依赖性蛋白激酶磷酸化介导的丝裂原活化激酶激活。Pep3诱导的活性氧生成在cngc2、cngc4和cngc6中受损,但在cngc12中未受损,这表明物理相互作用的CNGC2、CNGC4和CNGC6可能是免疫信号传导多聚体CNGC通道复合物的组成部分。然而,与cngc2和cngc4不同,cngc6对高Ca不敏感,也不表现出多效性矮化。与野生型相比,所有四个cngc突变体均表现出耐热性,尽管CNGC12与其他三个CNGCs不相互作用。这些结果表明,在某些情况下,物理相互作用的CNGCs可能作为异源通道复合物的组成部分在信号级联反应中发挥作用,尽管在其他信号通路中可能并非如此。