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Early‐stage sugar beet taproot development is characterized by three distinct physiological phases

机译:早期的糖甜菜胶卷制作的特点是三个不同的生理阶段

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摘要

Despite the agronomic importance of sugar beet (Beta vulgaris L.), the early‐stage development of its taproot has only been poorly investigated. Thus, the mechanisms that determine growth and sugar accumulation in sugar beet are largely unknown. In the presented study, a physiological characterization of early‐stage sugar beet taproot development was conducted. Activities were analyzed for fourteen key enzymes of carbohydrate metabolism in developing taproots over the first 80 days after sowing. In addition, we performed in situ localizations of selected carbohydrate‐metabolic enzyme activities, anatomical investigations, and quantifications of soluble carbohydrates, hexose phosphates, and phytohormones. Based on the accumulation dynamics of biomass and sucrose, as well as on anatomical parameters, the early phase of taproot development could be subdivided into three stages—prestorage, transition, secondary growth and sucrose accumulation stage—each of which was characterized by distinct metabolic and phytohormonal signatures. The enzyme activity signatures corresponding to these stages were also shown to be robustly reproducible in experiments conducted in two additional locations. The results from this physiological phenotyping approach contribute to the identification of the key regulators of sugar beet taproot development and open up new perspectives for sugar beet crop improvement concerning both physiological marker‐based breeding and biotechnological approaches.
机译:尽管甜菜(Beta Vulgaris L)的农艺重要性,其噻虫的早期发展仍未调查。因此,确定甜菜中生长和糖积聚的机制在很大程度上是未知的。在呈现的研究中,进行了早期糖束染色胶滴的生理特征。在播种后的前80天在发育前80天开发胶卷,分析了第四次碳水化合物代谢酶的活动。此外,我们以所选择的碳水化合物 - 代谢酶活性,解剖学研究和可溶性碳水化合物,己糖磷酸盐和植物激素的定量进行。基于生物质和蔗糖的累积动态,以及解剖学参数,噻根发育的早期阶段可以细分为三个阶段 - 突发,过渡,二次生长和蔗糖累积阶段,其特征在于不同的代谢和植物激情签名。对应于这些阶段的酶活性签名也被证明在两个附加位置进行的实验中具有鲁棒性可再现。这种生理表型方法的结果有助于鉴定甜菜Taproot开发的关键调节因子,并开辟了关于生理标志性育种和生物技术方法的糖甜菜作物改善的新视角。

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