College of Life Sciences, Nankai University, Tianjin, China.
AgResearch Ltd, Grasslands Research Centre, Palmerston North, New Zealand.
Sci Rep. 2017 Jul 31;7(1):6952. doi: 10.1038/s41598-017-07183-y.
Atmospheric CO concentrations are predicted to double within the next century. Despite this trend, the extent and mechanisms through which elevated CO affects grass-endophyte symbionts remain uncertain. In the present study, the growth, chemical composition and pathogen resistance of endophyte-infected (E+) and uninfected (E-) tall fescue were compared under elevated CO conditions. The results showed that the effect of endophyte infection on the growth of tall fescue was significantly affected by elevated CO. Significant advantage of E+ over E- tall fescue in tiller number, maximum net photosynthetic rate and shoot biomass occurred only under ambient CO. With CO concentration elevated, the beneficial effect of endophyte infection on the growth disappeared. Similarly, endophyte infection reduced lesion number and spore concentration of Curvularia lunata only under ambient CO. These results suggest that the beneficial effect of endophyte infection on the growth and pathogen resistance of tall fescue could be counteracted by elevated CO An explanation for the counteraction may be found in a change in photosynthesis and nutritive quality of leaf tissue.
大气中二氧化碳浓度预计在下个世纪将翻番。尽管存在这种趋势,但升高的二氧化碳如何影响草类内生菌共生体的程度和机制仍不确定。在本研究中,在升高的二氧化碳条件下,比较了内生菌感染(E+)和未感染(E-)高羊茅的生长、化学成分和抗病原体能力。结果表明,内生菌感染对高羊茅生长的影响受到升高的二氧化碳的显著影响。只有在大气二氧化碳条件下,E+高羊茅在分蘖数、最大净光合速率和地上生物量方面才具有明显优于 E-高羊茅的优势。随着二氧化碳浓度的升高,内生菌感染对生长的有益影响消失了。同样,内生菌感染仅在大气二氧化碳条件下降低了新月弯孢菌的病斑数和孢子浓度。这些结果表明,内生菌感染对高羊茅生长和抗病原体能力的有益影响可能会被升高的二氧化碳抵消。这种拮抗作用的解释可能在于叶片组织光合作用和营养质量的变化。