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首页> 外文期刊>Annals of Botany >Phosphate (Pi) and arsenate uptake by two wheat (Triticum aestivum) cultivars and their doubled haploid lines.
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Phosphate (Pi) and arsenate uptake by two wheat (Triticum aestivum) cultivars and their doubled haploid lines.

机译:两个小麦(Triticum aestivum)品种及其双倍单倍体系对磷(Pi)和砷的吸收。

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摘要

Background and Aims: Arsenic accumulation in cereal crops represents an important pathway for human exposure to arsenic from the environment. The objectives of the present work were to find whether the relationship between arsenate and phosphate (Pi) uptake rate differs among genotypes and to select genotypes with a low arsenate uptake rate with the aim of improving food safety and human health. Methods: A hydroponic experiment was conducted using two wheat (Triticum aestivum) cultivars (Hanxuan 10 and Lumai 14) and ten doubled haploid (DH) lines derived from them to investigate Pi and arsenate uptake over 48 h. Ten plants were transferred to bottles containing 50 mL of pre-treatment solution containing 0.5 mM CaCl2 and 5 mM MES set at pH 6.0 with 330 micro M Pi as KH2PO4 and 7.33 micro M arsenate. The solutions were aerated continuously. At 8, 24 and 48 h after uptake, 1 mL of test solution was sampled for determination of Pi and arsenate concentrations. Key Results and Conclusions: For each wheat line, Pi and arsenate concentrations in the test solution decreased with uptake time. Exponential (for Pi) or polynomial (for arsenate) regression plots fitted the data closely. For all genotypes, net Pi uptake rates decreased with time (from 0 to 48 h). However, net arsenate uptake rates decreased with time for D5, changed little with time for the male parent, D4 and D6, and increased with time for the others. An inflexion of about 25 micro M Pi was observed for the relationship between arsenate and Pi concentrations in the test solution, indicating that 25 micro M could be the point where the high-affinity uptake system 'switches on', or dominates over low-affinity uptake. In addition, the male parent, D1, D6 and D10 were considered ideal genotypes because they possess Pi transporters that discriminate strongly against arsenate and are expected to accumulate less arsenate in the field..
机译:背景和目的:谷物作物中的砷积累是人类暴露于环境中砷的重要途径。本工作的目的是发现基因型之间砷和磷酸盐(Pi)吸收率之间的关系是否不同,并选择砷吸收率低的基因型,以改善食品安全和人类健康。方法:采用两个小麦品种(汉宣10号和鲁麦14号)和十个衍生自其的十倍性单倍体(DH)品系进行水培试验,研究其在48小时内的磷和砷吸收。将十株植物转移到装有50 mL预处理溶液的瓶中,该溶液含有0.5 mM CaCl2和5 mM MES,pH设置为6.0,其中KH2PO4为330 microM Pi,砷酸钾为7.33 microM。溶液连续充气。摄取后第8、24和48小时,取样1 mL测试溶液以测定Pi和砷酸盐的浓度。关键结果和结论:对于每种小麦品系,测试溶液中的Pi和砷酸浓度随吸收时间的延长而降低。指数(对于Pi)或多项式(对于砷酸盐)回归图紧密拟合数据。对于所有基因型,净Pi吸收率均随时间降低(从0到48 h)。但是,D5的砷净摄入量随时间降低,而雄性父母D4和D6的砷随时间变化不大,而其他的则随时间增加。对于测试溶液中砷酸根和Pi浓度之间的关系,观察到大约25 micro M Pi的弯曲,这表明25 micro M可能是高亲和力摄取系统“开启”或主导低亲和力的点摄取。此外,雄性亲本D1,D6和D10被认为是理想的基因型,因为它们具有Pi转运蛋白,可强烈区分砷,并有望在田间积累较少的砷。

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