Center for Bioscience Research and Education, Utsunomiya University, 350 Mine-machi, Utsunomiya, 321-8505, Japan.
Graduate School of Agriculture, Hokkaido University, Sapporo, 060-8589, Japan.
New Phytol. 2015 May;206(3):983-989. doi: 10.1111/nph.13375. Epub 2015 Mar 6.
Strigolactones released from plant roots trigger both seed germination of parasitic weeds such as Striga spp. and hyphal branching of the symbionts arbuscular mycorrhizal (AM) fungi. Generally, strigolactone composition in exudates is quantitatively and qualitatively different among plants, which may be involved in susceptibility and host specificity in the parasite-plant interactions. We hypothesized that difference in strigolactone composition would have a significant impact on compatibility and host specificity/preference in AM symbiosis. Strigolactones in root exudates of Striga-susceptible (Pioneer 3253) and -resistant (KST 94) maize (Zea mays) cultivars were characterized by LC-MS/MS combined with germination assay using Striga hermonthica seeds. Levels of colonization and community compositions of AM fungi in the two cultivars were investigated in field and glasshouse experiments. 5-Deoxystrigol was exuded exclusively by the susceptible cultivar, while the resistant cultivar mainly exuded sorgomol. Despite the distinctive difference in strigolactone composition, the levels of AM colonization and the community compositions were not different between the cultivars. The present study demonstrated that the difference in strigolactone composition has no appreciable impact on AM symbiosis, at least in the two maize cultivars, and further suggests that the traits involved in Striga-resistance are not necessarily accompanied by reduction in compatibility to AM fungi.
植物根系释放的独脚金内酯既能引发列当属寄生杂草(如独脚金)种子的萌发,也能触发丛枝菌根真菌(AM)的菌丝分枝。通常,分泌物中的独脚金内酯组成在不同植物间存在数量和质量上的差异,这可能与寄生植物互作中的易感性和宿主特异性有关。我们假设独脚金内酯组成的差异会对 AM 共生的亲和性和宿主特异性/偏好产生重大影响。采用 LC-MS/MS 结合独脚金种子萌发试验,对感独脚金玉米(先锋 3253)和抗独脚金玉米(KST 94)品种根分泌物中的独脚金内酯进行了特征描述。在田间和温室试验中,研究了两种玉米品种中 AM 真菌的定殖水平和群落组成。5-脱乙酰独脚金内酯仅由感病品种分泌,而抗病品种主要分泌 sorgomol。尽管独脚金内酯组成存在显著差异,但 AM 定殖水平和群落组成在两个品种间没有差异。本研究表明,独脚金内酯组成的差异对 AM 共生没有明显影响,至少在这两个玉米品种中是如此,进一步表明与独脚金抗性相关的特性不一定伴随着与 AM 真菌相容性的降低。