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Root-to-shoot Cd translocation via the xylem is the major process determining shoot and grain cadmium accumulation in rice

机译:通过木质部从根到茎的镉转运是确定水稻芽和籽粒镉积累的主要过程

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摘要

Physiological properties involved in divergent cadmium (Cd) accumulation among rice genotypes were characterized using the indica cultivar 'Habataki' (high Cd in grains) and the japonica cultivar 'Sasanishiki' (low Cd in grains). Time-dependence and concentration-dependence of symplastic Cd absorption in roots were revealed not to be responsible for the different Cd accumulation between the two cultivars because root Cd uptake was not greater in the Cd-accumulating cultivar 'Habataki' compared with 'Sasanishiki'. On the other hand, rapid and greater root-to-shoot Cd translocation was observed in 'Habataki', which could be mediated by higher abilities in xylem loading of Cd and transpiration rate as a driving force. To verify whether different abilities in xylem-mediated shoot-to-root translocation generally account for the genotypic variation in shoot Cd accumulation in rice, the world rice core collection, consisting of 69 accessions which covers the genetic diversity of almost 32 000 accessions of cultivated rice, was used. The results showed strong correlation between Cd levels in xylem sap and shoots and grains among the 69 rice accessions. Overall, the results presented in this study revealed that the root-to-shoot Cd translocation via the xylem is the major and common physiological process determining the Cd accumulation level in shoots and grains of rice plants.
机译:利用the稻品种'Habataki'(谷物中的镉含量高)和粳稻品种'Sasanishiki'(谷物中的镉含量低)来表征水稻基因型中不同镉(Cd)积累的生理特性。根系中共生Cd吸收的时间依赖性和浓度依赖性与两个品种之间不同的Cd积累无关,这是因为在积累Cd的品种'Habataki'中,与'Sasanishiki'相比,其吸收Cd的比例并不高。另一方面,在“ Habataki”中观察到了快速且更大的从根到茎的Cd易位,这可能由较高的Cd木质部负载能力和作为驱动力的蒸腾速率所介导。为了验证木质部介导的芽到根易位的不同能力是否通常解释了水稻芽Cd积累的基因型变异,世界水稻核心收藏品由69个种质组成,涵盖了近32000种栽培种的遗传多样性大米,被使用。结果表明69个水稻品种中木质部汁液中的Cd水平与枝条和籽粒之间有很强的相关性。总体而言,本研究提出的结果表明,通过木质部从根到茎的Cd易位是决定水稻植株和籽粒中Cd积累水平的主要且常见的生理过程。

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