Kountche Boubacar A, Novero Mara, Jamil Muhammad, Asami Tadao, Bonfante Paola, Al-Babili Salim
King Abdullah University of Science and Technology (KAUST), BESE Division, The BioActives Lab, Thuwal, 23955-6900, Saudi Arabia.
University of Turin, Life Sciences and Systems Biology Department, Italy.
Heliyon. 2018 Nov 22;4(11):e00936. doi: 10.1016/j.heliyon.2018.e00936. eCollection 2018 Nov.
Strigolactones (SLs), a novel class of plant hormones, are key regulator of plant architecture and mediator of biotic interactions in the rhizosphere. Root-released SLs initiate the establishment of arbuscular mycorrhizal (AM) symbiosis by inducing spore germination and hyphal branching in AM fungi (AMF). However, these compounds also trigger the germination of root parasitic weeds, paving the way for deleterious infestation. Availability of SLs is required for investigating of their functions and also for application in agriculture. However, natural SLs are difficult to synthesize due to their complex structure and cannot be isolated at large scale, as they are released at very low concentrations. Therefore, there is a need for synthetic SL analogs. Recently, we reported on the development of simple SL analogs, methyl phenlactonoates (MPs), which show high SL activity in plants. Here, we investigate the effect of MP1, MP3 and the widely used SL-analog GR24 on AMF spore germination and host root colonization. Our results show that MP1 and MP3 inhibit AMF spore germination, but promote the intra-radical root colonization, both more efficiently than GR24. These results indicate that field application of MP1 and MP3 does not have negative impact on mycorrhizal fungi. In conclusion, our data together with the previously reported simple synthesis, high activity in regulating plant architecture and inducing seed germination, demonstrate the utility of MP1 and MP3 as for field application in combating root parasitic weeds by inducing germination in host's absence.
独脚金内酯(SLs)是一类新型植物激素,是植物株型的关键调节因子以及根际生物相互作用的介导者。根系释放的独脚金内酯通过诱导丛枝菌根(AM)真菌(AMF)的孢子萌发和菌丝分支,启动丛枝菌根共生的建立。然而,这些化合物也会引发根寄生杂草的萌发,为有害侵染铺平道路。研究独脚金内酯的功能及其在农业中的应用需要获得独脚金内酯。然而,天然独脚金内酯由于结构复杂难以合成,且由于其释放浓度极低,无法大规模分离。因此,需要合成独脚金内酯类似物。最近,我们报道了简单独脚金内酯类似物甲基苯基内酯(MPs)的开发,其在植物中表现出高独脚金内酯活性。在此,我们研究了MP1、MP3和广泛使用的独脚金内酯类似物GR24对AMF孢子萌发和宿主根定殖的影响。我们的结果表明,MP1和MP3抑制AMF孢子萌发,但促进根内根定殖,两者都比GR24更有效。这些结果表明,MP1和MP3的田间应用对菌根真菌没有负面影响。总之,我们的数据以及先前报道的简单合成方法、在调节植物株型和诱导种子萌发方面的高活性,证明了MP1和MP3在通过在宿主缺失时诱导萌发来防治根寄生杂草的田间应用中的效用。