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Environmentally-Related Cherry Root Cambial Plasticity

机译:与环境有关的樱桃根冈比亚可塑性

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The general aim of this research was to determine whether the cherry root cambium possesses similar water-stress adaptation abilities as the scion. Specifically, this study aimed to determine whether there is a shift in root xylem structure due to precipitation fluctuations and temperature increase during the growing season in two cherry species. Obla?inska sour cherry and European ground cherry roots with secondary structure were anatomically surveyed in detail, and correlated with meteorological conditions occurring during the vegetation when the roots were formed. Under environmental signals, both investigated species altered their radial root growth imprinting stops and starts in a cambial activity that resulted in the occurrence of intra-annual false growth rings. Changing environmental conditions triggered the shifts of large and small vessels throughout the false growth rings, but their size seemed to be mainly genetically controlled. Taking into consideration all the above, genotypes with moderate vessel lumen area—lesser or around 1200 μm 2 in the inner zone, as well as no greater than 1500 μm 2 in the outer zone—are presumed to be both size-controlling and stable upon the drought events. Thus, further field trials will be focused on the SV2 European ground cherry genotype, and OV13, OV32, and OV34 Obla?inska sour cherry genotypes.
机译:这项研究的总体目的是确定樱桃根形成层是否具有与接穗相似的水分胁迫适应能力。具体而言,本研究旨在确定两个樱桃树种在生长期期间由于降水波动和温度升高而引起的根木质部结构是否发生变化。对欧柏林斯(Obla?inska)酸樱桃和欧洲地面樱桃具有二级结构的根进行了详细的解剖调查,并与形成根的植被过程中发生的气象条件相关。在环境信号下,这两个被调查物种都改变了其径向根生长的印记停止并开始于冈比亚活动,这导致了年内虚假年轮的发生。环境条件的变化触发了整个假生长圈中大血管和小血管的移动,但是它们的大小似乎主要是遗传控制的。考虑到上述所有因素,假定血管腔面积适中的基因型(内部区域较小或约为1200μm2,而外部区域不大于1500μm2)则可控制大小并稳定干旱事件。因此,进一步的田间试验将侧重于SV2欧洲地面樱桃基因型,以及OV13,OV32和OV34 Obla?inska酸樱桃基因型。

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