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首页> 外文期刊>Field Crops Research >Efficacy of biocontrol yeasts combined with calcium silicate or sulphur for controlling durum wheat powdery mildew and increasing grain yield components.
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Efficacy of biocontrol yeasts combined with calcium silicate or sulphur for controlling durum wheat powdery mildew and increasing grain yield components.

机译:生防酵母与硅酸钙或硫的结合用于控制硬粒小麦白粉病和增加谷物产量的功效。

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摘要

Powdery mildew, caused by Blumeria graminis f. sp. tritici, has been recognized as the main and widespread disease of wheat in the growing areas of this crop. In the present study, to set up new effective and eco-compatible control methods against the pathogen, the activity of three biological control agents (BCAs), the yeasts Rhodosporidium kratochvilovae, strain UM350, and Cryptococcus laurentii, strain UM108, and the yeast-like fungus Aureobasidium pullulans, strain LS30, previously selected for their high activity against different pathogens on various crops, were tested for two consecutive years on durum wheat in the field. The BCAs were tested alone or in combination with two mineral salts (calcium silicate and calcium chloride) or with low doses of wettable sulphur or with synthetic fungicides (azoxystrobin, tebuconazole or tetraconazole) currently used for controlling this disease. Treatments were applied twice, at the flag leaf and at pre-flowering stages. Disease severity, total yeast population dynamic on wheat leaves, grain yield components (grain yield, grain number, grain weight) were recorded. In both years, the results of the investigations showed that (i) at the flag leaf phenological stage, disease severity on untreated wheat leaves was very high (up to 63%); (ii) the sprayed BCAs colonized wheat plant phylloplane at high rate; (iii) the BCAs, applied alone or in combination with the two mineral additives or with fungicides, compared with untreated control, in general not only reduced the disease severity (up to 89%), but also increased grain yield (up to 35.3%) and grain weight (up to 13.2%) of durum wheat. Among the integrated treatments, the highest level of disease reduction as well as better levels of grain yield components were supplied by BCAs combined with calcium silicate or sulphur. Collectively, our results demonstrated that integrated approaches based on the combination of biocontrol yeasts with suitable additives or low doses of fungicides have a high potential for large-scale applications in eco-compatible agriculture for both controlling wheat powdery mildew and improving grain yield components.CAS Registry Numbers 131860-33-8 10043-52-4 1344-95-2 107534-96-3
机译:白粉病,由Blumeria graminis f。引起。 sp。在小麦的生长区域,小麦已经被认为是小麦的主要和广泛传播的疾病。在本研究中,为了建立针对病原体的新的有效且生态兼容的控制方法,三种生物控制剂(BCA),酵母Rhodosporidium kratochvilovae,菌株UM350和劳氏隐球菌,菌株UM108以及酵母菌的活性像真菌金黄色葡萄球菌一样,LS30菌株先前因对多种农作物的不同病原体具有高活性而被选中,在田间硬质小麦上连续两年进行了测试。对BCA进行了单独测试,或与两种无机盐(硅酸钙和氯化钙)结合使用,或与低剂量的可湿性硫测试,或与目前用于控制该疾病的合成杀真菌剂(天冬酰胺,戊唑醇或丁康唑)结合使用。在旗叶和开花前进行两次处理。记录病害严重程度,小麦叶片上总酵母种群动态,谷物产量成分(谷物产量,籽粒数量,籽粒重量)。在这两年中,调查结果表明:(i)在旗叶物候期,未经处理的小麦叶片的病害严重程度很高(高达63%); (ii)喷洒的BCA以高速率定植于小麦植物的叶平面; (iii)与未经治疗的对照相比,单独或与两种矿物质添加剂或杀真菌剂组合使用的BCA,通常不仅降低了疾病的严重程度(高达89%),而且提高了谷物产量(高达35.3%) )和硬粒小麦的粒重(最高13.2%)。在综合处理中,BCA结合硅酸钙或硫磺可最大程度地减少疾病,提高谷物产量。总的来说,我们的结果表明,基于生物防治酵母菌与合适的添加剂或低剂量杀真菌剂结合的综合方法在控制小麦白粉病和改善谷物单产方面都具有在生态兼容农业中大规模应用的巨大潜力。注册表编号131860-33-8 10043-52-4 1344-95-2 107534-96-3

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