Laboratoire de Biologie des Microorganismes et de Biotechnologie, Département de Biotechnologie, Faculté des Sciences de la Nature et de la Vie, Université Oran 1 Ahmed Ben Bella, Oran, Algérie.
PeerJ. 2022 Aug 17;10:e13769. doi: 10.7717/peerj.13769. eCollection 2022.
This study presents the first evidence of the mycorrhizal compatibility between the edible desert truffle and the valuable fruit tree . Seed germination trials demonstrated that soaking pre-treatment of argan seeds in hydrogen peroxide (9%) for five days combined with the application of a fungicide treatment on an inert sowing material maximized the seed germination of this tree species. The mycorrhizal synthesis was conducted under greenhouse conditions by inoculating, , the host plant seedlings with spores of . The growth and mycorrhizal status of was assessed 15.5 months after inoculation. The desert truffle mycorrhization significantly promoted all the investigated morphological parameters of growth and improved the physiological performances of the host plant through enhancing plant water status and chlorophyll concentration. The mycorrhizal symbiosis led to the formation of typical desert truffle endomycorrhizae with intracellular coils. The resistance of to the harsh environmental conditions of desert habitats makes it a potential candidate for cultivation of desert truffles.
本研究首次证明了可食用沙漠块菌与有价值的果树之间的共生相容性。种子萌发试验表明,将阿甘种子在 9%的过氧化氢中浸泡预处理五天,同时在惰性播种材料上使用杀菌剂处理,可最大限度地提高该树种的种子萌发率。在温室条件下,通过将宿主植物幼苗接种 ,进行共生合成。在接种后 15.5 个月评估了 的生长和菌根状况。沙漠块菌的菌根化显著促进了所有调查的生长形态参数,并通过提高植物水分状况和叶绿素浓度来改善宿主植物的生理性能。共生关系导致了典型的沙漠块菌内皮层的形成。对沙漠栖息地恶劣环境条件的抗性使成为沙漠块菌栽培的潜在候选者。