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首页> 外文期刊>Plant and Soil >Impact of high temperature on sucrose translocation, sugar content and inulin yield in Cichorium intybus L. var. sativum
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Impact of high temperature on sucrose translocation, sugar content and inulin yield in Cichorium intybus L. var. sativum

机译:高温对蔗糖易位,糖含量和菊粉产量的影响,ChorybusL.Vα中的蔗糖易位,糖含量和菊粉产量。 ativum.

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摘要

Background and aimCichorium intybus is a biennal species storing inulin in taproot during the first year and flowering after vernalization. Heat impact on sugar distribution and inulin yield remains poorly documented.MethodsPlants were cultivated under ambient or high (ambient+5 degrees C) temperature for 27weeks. Plants were monthly harvested and morphological parameters, bolting rate, sugar translocation, soluble sugars and inulin content were determined.ResultsHeat reduced shoot and root growth and unexpectedly induced precocious bolting. It increased fructose contents in roots and leaves, increased root myo-inositol and reduced leaf sucrose content. At harvest, inulin content was higher in heat-treated than in control roots but total amount of inulin produced per plant was lower. Heat inhibited sugar translocation from leaves to secondary roots. Total soluble sugar content was lower in leaves but higher in roots of bolted plants compared to non-bolted ones. Bolting induced an increase in the mean degree of polymerization of inulin and root lignification.ConclusionHigh temperatures impaired inulin production as a result of root growth inhibition and reduced sugar translocation from the leaves to the roots. Heat induced precocious bolting on non-vernalized plants. Bolting reinforced root growth inhibition and thus inulin yield decrease.
机译:背景和Aimcichorium intybus是在第一年后储存菊粉的生物蛋白,在春节化后开花。对糖分布和菊粉产量的热影响仍然记录不良。在环境或高(环境+ 5摄氏度)温度下培养一般的培养粉剂27周。植物是每月收获的,确定螺栓率,糖易位,可溶性糖和菊粉含量。探讨和根生长,意外诱导预胶螺栓。它在根和叶片中增加了果糖含量,增加了根肌醇和减少的叶片蔗糖含量。在收获时,热处理的菊粉含量高于对照根,但每株植物产生的菊粉总量较低。热量抑制来自叶子到二级根的糖易位。与非用螺栓玻璃螺栓植物的根叶片,叶片总溶解的糖含量较高。螺栓诱导菊粉和根褐化的平均聚合度的增加。由于根生长抑制和从叶片的根生长抑制和减少糖易位,结论菊粉产生受损的抑制温度。热诱导非常规植物上的早熟螺栓。螺栓加固根生长抑制,从而减少菊粉产量。

著录项

  • 来源
    《Plant and Soil 》 |2018年第2期| 共16页
  • 作者单位

    Catholic Univ Louvain Grp Rech Physiol Vegetale ELIA 5 Bte 7-07-13 Pl Croix Sud B-1348 Louvain La Neuve Belgium;

    Catholic Univ Louvain Grp Rech Physiol Vegetale ELIA 5 Bte 7-07-13 Pl Croix Sud B-1348 Louvain La Neuve Belgium;

    Catholic Univ Louvain Grp Rech Physiol Vegetale ELIA 5 Bte 7-07-13 Pl Croix Sud B-1348 Louvain La Neuve Belgium;

    Catholic Univ Louvain Grp Rech Physiol Vegetale ELIA 5 Bte 7-07-13 Pl Croix Sud B-1348 Louvain La Neuve Belgium;

    Catholic Univ Louvain Grp Rech Physiol Vegetale ELIA 5 Bte 7-07-13 Pl Croix Sud B-1348 Louvain La Neuve Belgium;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学 ;
  • 关键词

    Cichorium intybus; Climate change; Flowering; Global warming; Heat stress; Inulin; Root chicory;

    机译:Cichorium intybus;气候变化;开花;全球变暖;热应激;菊粉;根菊苣;

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