Ravnskov S, Larsen J
Department of Agroecology, Aarhus University, Flakkebjerg, Slagelse, Denmark.
Laboratorio de Agroecología, Instituto de Investigaciones en Ecosistemas y Sustentabilidad, Universidad Nacional Autónoma de México, Morelia, México.
Plant Biol (Stuttg). 2016 Sep;18(5):816-23. doi: 10.1111/plb.12465. Epub 2016 May 11.
Functional compatibility in cucumber mycorrhizas in terms of plant and fungal growth, and foliar nutrient composition from all possible combinations of six cucumber varieties and three species of arbuscular mycorrhizal (AM) fungi was evaluated. Measurements of foliar nutrient composition included N, P, K, Mg, Ca, Na, Fe, Zn, Mn and Cu. Growth of AM fungi was measured in terms of root colonisation, as examined with microscopy and the AM fungus biomarker fatty acid 16:1ω5 from both phospholipids and neutral lipids. Different responses of plant growth and foliar nutrient profiles were observed for the different AM symbioses examined. The AM fungus Claroideoglomus claroideum caused growth depression in association with four out of six cucumber varieties; Rhizophagus irregularis caused growth promotion in one of six cucumber varieties; whereas Funneliformis mosseae had no effect on the growth performance of any of the cucumber varieties examined. All three AM fungi markedly altered host plant shoot nutrient composition, with the strongest contrast observed between cucumber-R. irregularis symbioses and non-mycorrhizal cucumber plants, independent of cucumber variety. On the other hand, AM fungal growth in roots differed between the three AM fungi, but was unaffected by host genotype. Strong build-up of storage lipids was observed for R. irregularis, which was more moderate in the two other AM fungi. In conclusion, strong differential responses of cucumber varieties to inoculation with different AM fungi in terms of growth and shoot nutrient composition revealed high functional diversity in AM symbioses in cucumber plants.
对六个黄瓜品种与三种丛枝菌根(AM)真菌的所有可能组合在植物和真菌生长以及叶片养分组成方面的黄瓜菌根功能兼容性进行了评估。叶片养分组成的测量包括氮、磷、钾、镁、钙、钠、铁、锌、锰和铜。通过显微镜检查以及来自磷脂和中性脂质的AM真菌生物标志物脂肪酸16:1ω5来测量AM真菌的生长,以根定殖来衡量。对于所研究的不同AM共生关系,观察到了植物生长和叶片养分状况的不同反应。AM真菌透明球囊霉与六个黄瓜品种中的四个品种共生时导致生长抑制;不规则球囊霉在六个黄瓜品种中的一个品种上引起生长促进;而摩西管柄囊霉对所研究的任何黄瓜品种的生长表现均无影响。所有三种AM真菌均显著改变了宿主植物地上部的养分组成,在黄瓜-不规则球囊霉共生体与非菌根黄瓜植株之间观察到最明显的差异,且与黄瓜品种无关。另一方面,三种AM真菌在根中的生长情况有所不同,但不受宿主基因型的影响。观察到不规则球囊霉的储存脂质大量积累,在另外两种AM真菌中则较为适中。总之,黄瓜品种对接种不同AM真菌在生长和地上部养分组成方面有强烈的差异反应,这揭示了黄瓜植株中AM共生关系具有高度的功能多样性。