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Effect of a strobilurin-class fungicide on water use in synthetic bread wheat genotypes grown under increasing water deficit conditions

机译:施用型杀菌剂杀菌剂对水资源缺陷条件下种植的合成面包小麦基因型用水的影响

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摘要

Three synthetic bread wheat genotypes and their parental cultivar Cham 6 were used to examine the effects of a strobilurin-class fungicide pyraclostrobin on leaf temperature, root water uptake and grain yield under increasing water deficit conditions. Wheat plants of Cham 6 treated with the pyraclostrobin at the booting stage showed a rapidly increased leaf temperature as compared with the gradually increased leaf temperature of the untreated plants. The final temperature reached, however, was lower for the pyraclostrobin treated plants than the untreated. Potted soil of the treated wheat plants also showed higher water contents than the untreated potted soil, suggesting delay of plant water uptake by pyraclostrobin treatment. A variation in water uptake by roots was also found between the four wheat genotypes examined. Daily water uptake was depressed after the pyraclostrobin treatment in all four wheat genotypes. Grain yields were slightly increased by the pyraclostrobin treatment in field trials under controlled water supply whereas no significant differences were detected in soil water content between treatments. The increase in grain yield by pyraclostrobin treatment might be dependent on the different water uptake of the wheat genotypes. These results suggest that foliage treatment of pyraclostrobin fungicide on wheat delays root water uptake, resulting in postponement of soil dehydration, which contributes to a slight increase of grain yield in some wheat genotypes in the field under water deficit conditions.
机译:三种合成面包小麦基因型和它们的亲本栽培品种湛6被用来研究对叶片温度,根系吸水和籽粒产量嗜球果伞素类杀真菌剂的唑菌胺酯增加水分亏缺条件下的效果。与未处理的植物的逐渐增加的叶温度相比较以在孕穗期的唑菌胺酯处理过的湛6的小麦植株表现出迅速增加叶片温度。达到最终温度,然而,对于比未处理的唑菌胺酯处理的植物低。经处理的小麦植物的土壤盆栽也表现出更高的水含量比未处理的土壤盆栽,提示由唑菌胺酯处理厂的水吸收的延迟。通过根在水吸收的变化还检查四个小麦基因型之间找到。每日吸水量在所有四个小麦品种唑菌胺酯治疗后郁闷。而在处理之间土壤水分含量没有检测到差异显著在田间试验谷物产率略有增加由治疗唑菌胺酯在受控的供水。通过治疗唑菌胺酯谷物产量的增加可能是依赖于小麦基因型的水吸收不同。这些结果表明对小麦延迟根系吸水唑菌胺酯的杀真菌剂的那叶面处理,导致土壤脱水,推迟其有助于谷类中一些小麦基因型在现场水分亏缺条件下略有增加。

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