Department of Plant Pathology and Microbiology.
Department of Agronomy, Iowa State University, Ames 50011.
Plant Dis. 2018 Sep;102(9):1748-1758. doi: 10.1094/PDIS-11-16-1660-RE. Epub 2018 Jul 3.
Current management of sudden death syndrome (SDS) of soybean, caused by Fusarium virguliforme, focuses on planting resistant varieties and improving soil drainage; however, these measures are not completely effective. A 6-year study evaluated the effects of cropping system diversification on SDS and soybean yield. SDS, root health, yield, and F. virguliforme density in soil were assessed in a naturally infested field trial comparing a 2-year cropping system consisting of a corn-soybean rotation and synthetic fertilizer applications with 3- and 4-year cropping systems consisting of corn-soybean-oat + red clover and corn-soybean-oat +alfalfa-alfalfa rotations, respectively, with both manure and low synthetic fertilizer rates. In 5 of 6 years, SDS incidence and severity were lower and yield higher in the 3- and 4-year systems than in the 2-year system. SDS severity and incidence were up to 17-fold lower in the diversified systems than in the 2-year system. Incidence and severity of SDS explained 45 to 87% of the variation in yield. Plants in the 2-year system generally showed more severe root rot and lower plant weights than plants in the diversified systems. F. virguliforme density in soil was up to fivefold greater in the 2-year system compared with the 4-year system. The processes responsible for the suppression of SDS and yield protection in the diversified cropping systems still need to be determined.
目前,由尖孢镰刀菌引起的大豆猝死综合征(SDS)的管理重点是种植抗性品种和改善土壤排水;然而,这些措施并不完全有效。一项为期 6 年的研究评估了种植制度多样化对 SDS 和大豆产量的影响。在一个自然感染的田间试验中,评估了 SDS、根系健康、产量和土壤中尖孢镰刀菌密度,该试验比较了由玉米-大豆轮作和合成肥料应用组成的两年种植制度与由玉米-大豆-燕麦+红三叶草和玉米-大豆-燕麦+紫花苜蓿-紫花苜蓿轮作组成的 3 年和 4 年种植制度,后两者分别使用有机肥和低合成肥料。在 6 年中的 5 年中,3 年和 4 年种植制度中的 SDS 发病率和严重程度较低,产量较高。与两年制系统相比,多样化系统中的 SDS 严重度和发病率降低了 17 倍。SDS 的发病率和严重程度解释了产量变化的 45%至 87%。两年制系统中的植物通常比多样化系统中的植物表现出更严重的根腐病和更低的植物重量。与 4 年系统相比,两年制系统中土壤中的尖孢镰刀菌密度高了 5 倍。多样化种植系统中抑制 SDS 和保护产量的过程仍需确定。