Ellouze Walid, Hamel Chantal, Singh Asheesh K, Mishra Vachaspati, DePauw Ron M, Knox Ron E
a Swift Current Research and Development Centre, Agriculture and Agri-Food Canada, P.O. Box 1030, 1 Airport Road, Swift Current, SK S9H 3X2, Canada.
b Crop Diversification Centre South, Alberta Agriculture and Forestry, 301 Horticultural Station Road East, Brooks, AB T1R 1E6, Canada.
Can J Microbiol. 2018 Aug;64(8):527-536. doi: 10.1139/cjm-2017-0637. Epub 2018 Apr 10.
Understanding the variation in how wheat genotypes shape their arbuscular mycorrhizal (AM) fungal communities in a prairie environment is foundational to breeding for enhanced AM fungi-wheat interactions. The AM fungal communities associated with 32 durum wheat genotypes were described by pyrosequencing of amplicons. The experiment was set up at two locations in the Canadian prairies. The intensively managed site was highly dominated by Funneliformis. Genotype influenced the AM fungal community in the rhizosphere soil, but there was no evidence of a differential genotype effect on the AM fungal community of durum wheat roots. The influence of durum wheat genotype on the AM fungal community of the soil was less important at the intensively managed site. Certain durum wheat genotypes, such as Strongfield, Plenty, and CDC Verona, were associated with high abundance of Paraglomus, and Dominikia was undetected in the rhizosphere of the recent cultivars Enterprise, Eurostar, Commander, and Brigade. Genetic variation in the association of durum wheat with AM fungi suggests the possibility of increasing the sustainability of cropping systems through the use of durum wheat genotypes that select highly effective AM fungal taxa residing in the agricultural soils of the Canadian prairies.
了解小麦基因型在草原环境中塑造其丛枝菌根(AM)真菌群落的方式差异,是培育增强AM真菌与小麦相互作用品种的基础。通过对扩增子进行焦磷酸测序,描述了与32个硬粒小麦基因型相关的AM真菌群落。该实验在加拿大大草原的两个地点进行。集约管理的地点以漏斗孢属为主。基因型影响根际土壤中的AM真菌群落,但没有证据表明硬粒小麦基因型对其根系的AM真菌群落有不同影响。在集约管理的地点,硬粒小麦基因型对土壤中AM真菌群落的影响较小。某些硬粒小麦基因型,如Strongfield、Plenty和CDC Verona,与高丰度的类球囊霉属相关,而在近期品种Enterprise、Eurostar、Commander和Brigade的根际中未检测到多米尼球囊霉。硬粒小麦与AM真菌关联的遗传变异表明,通过使用能选择加拿大草原农业土壤中高效AM真菌类群的硬粒小麦基因型,有可能提高种植系统的可持续性。