乌克兰南部草原冬小麦褐叶锈病的流行与危害

O. Markovska, V. Dudchenko, T. Grechishkina, I. Stetsenko
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引用次数: 0

摘要

全球气候变化除了使农民适应新的、更干旱的条件以获得可持续的高产外,还改变了植物病原体的致病性,其生物周期与环境因素密切相关。冬小麦最常见的病害之一是褐叶锈病。前Desm。小麦f.sp。就其危害性和在其他叶和茎疾病中的流行性而言,褐叶锈病与黄和茎锈病、隔叶斑病和其他叶斑病相当。在乌克兰南部草原的干旱条件下,只要在春季和夏季植被期有足够的水分(水热指数高于1.0),这种疾病每五年就会出现一次。影响病原菌发育强度的主要因素是4-6月的水分供应(∑TP>50mm)。2019年,这一时期的降水量为194毫米,导致疾病发展在18.4%的水平,传播率为27.2%。Antonivka、Blago和Maria等冬小麦品种在乳粒期(BBCH尺度上的73-77期)感染后,生产力下降10.8-11.3%,而净光合作用生产力下降14.2-14.3%,这意味着较低的平均产量为2.3-3.1t/ha。为了最大限度地发挥品种的生产潜力,并在有利于附生发育的条件下有效控制冬小麦褐叶锈病病原体的发展,建议在69-71阶段使用具有长期保护作用的三唑类化学基团(Colossal e.c.,1.0 l/ha)的系统杀菌剂,在BBCH规模上进行施用。这不仅提供了可靠的作物保护(效率:77.9-82.0%),而且产量在3.3-4.6吨/公顷的水平上,这取决于非灌溉条件下的品种。关键词:疾病;病原体保护树叶;潮湿收益参考Bolton,Melvin,D.,Kolmer,James,A.,Garvin,David,F.(2008)。小麦叶锈菌引起的小麦叶锈病。分子植物病理学。9(5),563-575。Derecha,O.,Hrytsiuk,N.,Bakalova,A.(2018)。利沃夫国立农业大学Visnyk北部森林草原杀菌剂和氮肥联合使用保护冬小麦免受疾病侵害的效果。系列:农学,22(2),112-118。Dermenko,O.P,Panchenko,Y.S,Gavriyuk,L.L.(2012)。冬小麦的危险病害。褐叶锈病(Puccinia recodita Rob.Ex Desm.F.Sp.tritii):在乌克兰森林草原的分布和发展。检疫和植物保护,11,4-7。Dermenko,O.P,Panchenko,Yu.S.,Gavriyuk,L.L.(2013)。保护冬小麦免受褐叶锈病的危害。检疫和植物保护,5,9-11。Dimov,O.M.,Bojark
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prevalence and harmfulness of winter wheat brown leaf rust (Puccinia recondita Rob. ex desm. f. sp. tritici) in the Southern Steppe of Ukraine
Apart from making farmers adapt agricultural technologies to new, more arid conditions in order to obtain sustainable and high yields, global climate change is also known to alter the pathogenicity of plant pathogens, the biological cycle of which is tightly associated with environmental factors. One of the most common diseases of winter wheat is brown leaf rust, caused by Puccinia recondita Rob. ex Desm. f. sp. tritici. In terms of its harmfulness and prevalence among other leaf and stem diseases, brown leaf rust is comparable to yellow and stem rust, septoria leaf blotch and other leaves blotches. Under arid conditions of the Southern Steppe of Ukraine, the disease manifests itself once every five years provided that sufficient moisture, indicated by the hydro-thermal index above 1.0, is present during the spring and summer vegetation periods. The main factor influencing the intensity of pathogen development is moisture supply from April to June (ΣTP> 50 mm). In 2019, the amount of precipitation during this period was 194 mm, which led to the disease development at the level of 18.4% with a spread of 27.2%. Productivity of winter wheat varieties such as Antonivka, Blago and Maria was reduced by 10.8-11.3%, when infected in the phase of milk grain stage (stages 73-77 on the BBCH scale), while net photosynthesis productivity decreased by 14.2-14.3%, which translates to lower average yields of 2.3-3.1 t/ha. To maximize the productive potential of varieties and effectively control the development of the causative agent of brown leaf rust in winter wheat under favourable conditions for epiphytic development, the application of systemic fungicides with long-term protective effect imparted by the chemical group of triazoles (Colossal e.c., 1.0 l/ha ) is recommended in stages 69-71 on the BBCH scale. This provides not only reliable crop protection (Eff.: 77.9-82.0%), but also yields at the level of 3.3 - 4.6 t/ha, depending on the variety under non-irrigated conditions. Keywords: Diseases; Pathogen; Protection; Leaves; Moisture; Yield   References Bolton, Melvin, D., Kolmer, James, A., Garvin, David, F. (2008). Wheat leaf rust caused by Puccinia triticina. Molecular Plant Pathology. 9 (5), 563–575. Derecha, O., Hrytsiuk, N., Bakalova, A. (2018). The effectiveness of the combined use of fungicides and nitrogen fertilizers to protect winter wheat from diseases in the Northern Forest-Steppe Visnyk of Lviv National Agrarian University. Series: Agronomy, 22 (2), 112–118. Dermenko, O.P, Panchenko, Y.S, Gavrilyuk, L.L. (2012). Dangerous disease of winter wheat. Brown leaf rust (Puccinia recondita Rob. Ex Desm. F. Sp.tritici): distribution and development in the Forest-Steppe of Ukraine. Quarantine and plant protection, 11, 4–7. Dermenko, O.P, Panchenko, Yu.S., Gavrilyuk, L.L. (2013). Protection of winter wheat from brown leaf rust. Quarantine and plant protection, 5, 9–11. Dimov, O.M., Bojark
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