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Differences in Cadmium Accumulation and Root Morphology in Seedlings of Japanese Wheat Varieties with Distinctive Grain Cadmium Concentration

机译:籽粒镉含量不同的日本小麦幼苗中镉积累和根系形态的差异

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A low cadmium (Cd) concentration in wheat grain is desirable because of Cd toxicity to humans. Grain Cd concentrations in Japanese wheat differed among the varieties in previous study. In this study, we hypothesized that the varieties with a low concentration of Cd in grain have (1) low Cd uptake from the soil through the roots during early growth and/or (2) low Cd translocation from the roots to shoots, and also, that (3) Cd uptake from soil is affected by root morphology. These hypotheses were verified by investigating the concentration and quantity of Cd in root, shoot and leaf tissues, and examining the root morphology of young seedlings of wheat varieties with high and low grain Cd concentrations. Seedlings of ‘Kitahonami’ and ‘Nanbukomugi’ which had low grain Cd concentration (low Cd/G varieties) had a lower Cd quantity in whole plant tissues than ‘Nishikazekomugi’ and ‘Kitakamikomugi’ which had high grain Cd concentration (high Cd/G varieties) during early growth. Low Cd/G varieties also showed lower root to shoot (aerial parts) translocation of Cd than high Cd/G varieties. Seedlings of low Cd/G varieties showed less root branching than high Cd/G varieties. Root frequency showed a significant positive correlation with Cd quantity in whole plant tissues. These results suggest that low Cd/G varieties used in this study have low Cd uptake and translocation from the roots to shoots during early growth, and furthermore, that low Cd uptake at the seedling stage may relate to slow and/or limited development of branching roots.
机译:由于镉对人类的毒性,因此希望小麦籽粒中的镉含量低。在以前的研究中,日本小麦的籽粒中Cd含量有所不同。在这项研究中,我们假设谷物中Cd浓度低的品种(1)在早期生长期间从根部通过土壤吸收的Cd较低,和/或(2)从根部到芽的​​Cd转运低,并且,(3)土壤中Cd的吸收受根系形态的影响。通过研究根,茎和叶组织中Cd的含量和含量,以及检查高和低Cd浓度的小麦品种的幼苗的根系形态,可以验证这些假设。籽粒Cd浓度低(低Cd / G品种)的'Kitahonami'和'Nanbukomugi'幼苗的整体植物组织中Cd量低于籽粒Cd浓度高'Nishikazekomugi'和'Kitakamikomugi'籽粒Cd浓度高(Cd / G高)品种)。与高Cd / G品种相比,低Cd / G品种还显示出较低的Cd根茎向(空中部分)移位。低Cd / G品种的幼苗显示出比高Cd / G品种少的根分支。根频率与整个植物组织中的镉含量呈显着正相关。这些结果表明,本研究中使用的低Cd / G品种在早期生长过程中具有较低的Cd吸收和从根到芽的转运,此外,苗期低Cd吸收可能与分支的缓慢和/或有限发育有关。根。

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