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Anatomical and chemical characteristics associated with lodging resistance in wheat

机译:小麦抗倒伏性的解剖化学特征

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Anatomical and chemical characteristics of stems affect lodging in wheat(Triticum aestivum L.) cultivars. Traits associated with lodging resistance, such as plant height, stem strength, culm wall thickness, pith diameter, and stem diameter, were extensively investigated in earlier studies. However, the solid stem trait was rarely considered. In this study, we measured a range of anatomical and chemical characteristics on solid and hollow stemmed wheat cultivars. Significant correlations were detected between resistance to lodging and several anatomical features, including width of mechanical tissue, weight of low internodes, and width of stem walls. Morphological features that gave the best indication of improved lodging resistance were increased stem width, width of mechanical tissue layer, and stem density. Multiple linear regression analysis showed that 99% of the variation in lodging resistance could be explained by the width of the mechanical tissue layer, suggesting that solid stemmed wheat has several anatomical features for increasing resistance to lodging. In addition, microsatellite markers GWM247 and GWM340 were linked to a single solid stem QTL on chromosome 3BL in a population derived from the cross Xinongshixin(solid stem)/Line 3159(hollow stem). These markers should be valuable in breeding wheat for solid stem.
机译:茎的解剖学和化学特征影响小麦(Triticum Aestivum L.)品种的植物。在早期研究中,广泛研究了与植物高度,茎强度,秆壁厚,髓径和茎直径相关的耐植物抗性的特征。然而,很少考虑固体茎特征。在这项研究中,我们测量了一系列固体和空心茎小麦品种的解剖和化学特性。在抵抗抵抗力和几种解剖学特征之间检测到显着的相关性,包括机械组织的宽度,低间的重量和杆壁的宽度。给出了改进的封装抗性的最佳指示的形态学特征增加了茎宽,机械组织层的宽度和茎密度。多元线性回归分析表明,通过机械组织层的宽度可以解释封装电阻的99%的变化,表明固体茎小麦具有几种用于增加对坡度抗性的解剖学特征。此外,微卫星标记物GWM247和GWM340与衍生自交叉XinongSxin(固体茎)/线3159(中空茎)的群体的染色体3BL上的单个固体茎QT1连接。这些标记对于固体茎的繁殖小麦应该是有价值的。

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