Role of Morpho-Phenological Traits in Passive Resistance to Fusarium Head Blight in Wheat

生物 镰刀菌 基因型 物候学 数量性状位点 农学 接种 抗性(生态学) 兽医学 相关性 园艺 植物抗病性 失眠症 野外试验 路径分析(统计学) 禾本科 藤条 通径系数 枯萎病 作物 真菌毒素 基因-环境相互作用 植物
作者
Sairah Syed,Žilvinas Liatukas,Andrii Gorash
出处
期刊:Agriculture [Multidisciplinary Digital Publishing Institute]
卷期号:16 (2): 188-188
标识
DOI:10.3390/agriculture16020188
摘要

Fusarium head blight (FHB) is a serious concern for wheat production worldwide. The current study was conducted to identify morpho-phenological traits that contribute to passive resistance against FHB. For this purpose, a set of 332 spring wheat genotypes from different origins was used. Eight morpho-phenological traits and FHB severity were evaluated using spray inoculation under field conditions in 2022 and 2023. A non-parametric test was performed to evaluate genotypic variation for all studied traits, revealing significant differences among genotypes across the two years. Correlation analysis demonstrated a strong negative association between FHB severity and phenological traits: days to heading (r = −0.43, p < 0.001), days to flowering (r = −0.39, p < 0.001) and a low to medium negative correlation between FHB resistance and spike length (r = −0.29, p < 0.001) and spikelets per spike (r = −0.26, p < 0.001) on average across two years. Furthermore, there was a significant negative but weak association between anther extrusion and FHB severity (r = −0.21, p < 0.001). Random forest regression analysis demonstrated that a complex of eight morpho-phenological traits predicted FHB severity with an accuracy of 65% in 2023 and 57% in cross-validation sets across two years. According to permutation importance analysis, days to flowering, heading, and anther extrusion had the highest contribution to FHB severity, and all three traits had a significant effect on FHB prediction.
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