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首页> 外文期刊>Metabolites >Changes in the Elemental and Metabolite Profile of Wheat Phloem Sap during Grain Filling Indicate a Dynamic between Plant Maturity and Time of Day
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Changes in the Elemental and Metabolite Profile of Wheat Phloem Sap during Grain Filling Indicate a Dynamic between Plant Maturity and Time of Day

机译:小麦韧皮部汁液灌浆过程中元素和代谢物特征的变化表明植物成熟度与日间动态

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The long distance transport of Fe and Zn in the phloem sap of wheat ( Triticum aestivum L.) is the key route for seed supply, due to wheat having a xylem discontinuity. To date, our knowledge is limited on Fe and Zn homeostasis in the phloem sap during the reproductive and grain filling stages. With the use of aphid stylectomy to collect samples of phloem sap, we explored maturity and morning versus afternoon (within-day) changes in nutrient and metabolite profiles. Phloem exudate was collected from a wheat breeding line, SAMNYT16, at three times during the grain filling period and at both midday and mid-afternoon. There were significant changes in the concentration of Mg, K, Fe and Zn during the course of grain loading and there were also significant within-day differences for Fe and K concentrations in the phloem exudate during the early phases of grain development. We found that, for K and Fe, there was an increase of 1.1- and 1.4-fold, respectively, for samples taken prior to midday to those from mid-afternoon. There was also a significant decrease in K, Fe and Zn phloem sap concentration of 1.5-, 1.4- and 1.1-fold, respectively, from the start of peak grain loading to the end of grain loading. Of the 79 metabolites detected within samples of phloem exudate, 43 had significant maturity differences and 38 had significant within-day variability. Glutamine was found to increase by 3.3–5.9-fold from midday to mid-afternoon and citric acid was found to decrease by 1.6-fold from the start of grain loading to the end of grain loading. These two metabolites are of interest as they can complex metal ions and may play a role in long distance transport of metal ions. The work presented here gives further insight into the complex composition of the phloem sap and variability that can occur during the day and also with increasing maturity.
机译:小麦韧皮部汁液中铁和锌的长距离运输是种子供应的关键途径,因为小麦具有木质部不连续性。迄今为止,我们对生殖和籽粒充实阶段韧皮部汁液中铁和锌稳态的认识有限。通过使用蚜虫切开术收集韧皮部汁液样品,我们研究了成熟度以及早晨与下午(一天之内)营养物和代谢产物的变化。在灌浆期以及中午和下午三点从小麦育种系SAMNYT16收集韧皮部分泌物。在籽粒加载过程中,镁,钾,铁和锌的浓度发生了显着变化,并且在籽粒发育的早期,韧皮部渗出液中铁和钾的浓度在日内也存在显着差异。我们发现,对于中午之前采集的样品和下午中午采集的样品,钾和铁的含量分别增加了1.1倍和1.4倍。从峰值谷粒装载开始到谷粒装载结束,钾,铁和锌韧皮部树液的浓度也分别显着降低了1.5倍,1.4倍和1.1倍。在韧皮部渗出液样品中检测到的79种代谢物中,有43种具有显着的成熟度差异,而38种具有在日内的显着变异性。从谷粒开始到谷粒中午,谷氨酰胺增加了3.3-5.9倍,柠檬酸从开始谷物装载到结束谷物减少了1.6倍。令人关注的是这两种代谢物,因为它们可以络合金属离子,并可能在金属离子的长距离传输中起作用。此处介绍的工作可进一步了解韧皮部汁液的复杂组成和白天可能发生的变化以及成熟度的增加。

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