首页> 外文OA文献 >Proline Accumulation in Maize (Zea mays L.) Primary Roots at Low Water Potentials. II. Metabolic Source of Increased Proline Deposition in the Elongation Zone1
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Proline Accumulation in Maize (Zea mays L.) Primary Roots at Low Water Potentials. II. Metabolic Source of Increased Proline Deposition in the Elongation Zone1

机译:玉米(Zea mays L.)中脯氨酸的积累 低水势的主根。二。的代谢来源 延伸区中脯氨酸的沉积增加1

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摘要

The proline (Pro) concentration increases greatly in the growing region of maize (Zea mays L.) primary roots at low water potentials (ψw), largely as a result of an increased net rate of Pro deposition. Labeled glutamate (Glu), ornithine (Orn), or Pro was supplied specifically to the root tip of intact seedlings in solution culture at high and low ψw to assess the relative importance of Pro synthesis, catabolism, utilization, and transport in root-tip Pro deposition. Labeling with [3H]Glu indicated that Pro synthesis from Glu did not increase substantially at low ψw and accounted for only a small fraction of the Pro deposition. Labeling with [14C]Orn showed that Pro synthesis from Orn also could not be a substantial contributor to Pro deposition. Labeling with [3H]Pro indicated that neither Pro catabolism nor utilization in the root tip was decreased at low ψw. Pro catabolism occurred at least as rapidly as Pro synthesis from Glu. There was, however, an increase in Pro uptake at low ψw, which suggests increased Pro transport. Taken together, the data indicate that increased transport of Pro to the root tip serves as the source of low-ψw-induced Pro accumulation. The possible significance of Pro catabolism in sustaining root growth at low ψw is also discussed.
机译:脯氨酸(Pro)浓度在低水势(ψw)下在玉米(Zea mays L.)初生根的生长区域中大大增加,这主要是由于Pro沉积的净速率增加所致。将标记的谷氨酸(Glu),鸟氨酸(Orn)或Pro专门提供给高和低ψw下溶液培养中完整幼苗的根尖,以评估根尖中Pro合成,分解代谢,利用和运输的相对重要性亲沉积。用[3H] Glu标记表明,在低ψw下,由Glu合成的Pro基本上没有增加,仅占Pro沉积的一小部分。用[14C] Orn标记表明,Orn的Pro合成也不能对Pro沉积产生实质性贡献。用[3H] Pro标记表明,在低ψw下,Pro分解代谢和根尖利用率均未降低。分解代谢的发生至少与由Glu合成的分解代谢一样快。但是,在低ψw时Pro吸收量增加,这表明Pro转运增加。两者合计,数据表明Pro到根尖的转运增加是低ψw诱导的Pro积累的来源。还讨论了Pro分解代谢对维持低ψw的根系生长的可能意义。

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