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首页> 外文期刊>Environmental and experimental botany >Physiological mechanism of hypertolerance of cadmium in Kentucky bluegrass and tall fescue: Chemical forms and tissue distribution
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Physiological mechanism of hypertolerance of cadmium in Kentucky bluegrass and tall fescue: Chemical forms and tissue distribution

机译:肯塔基草和高羊茅中镉超耐受的生理机制:化学形式和组织分布

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摘要

Kentucky bluegrass (Poa pratensis) and tall fescue (Festuca arundinacea) are hypertolerant grasses to soil cadmium contamination. Little information is available on their tolerance mechanism. A sand culture and a hydroponic culture experiment were designed to investigate the Cd chemical form changes and its translocation in different tissues. The results showed that Kentucky bluegrass and tall fescue can tolerate 50-200mgkg~(-1) of soil Cd stresses and accumulate as high as 4275 and 2559mgCdkg~(-1) DW, respectively, in their shoots without the loss of shoot biomass. Their Cd hypertolerance was correlated with an increase of the undissolved Cd phosphates in the leaves in both grass species, as determined by sequential solvent extraction procedures. The superior Cd tolerance of tall fescue to Kentucky bluegrass was associated with less Cd translocation into the stele of roots and less Cd transported to leaves. The pectate- and protein-integrated Cd forms may be involved in the symplastic translocation of Cd from cortex into stele, and this may lead the higher Cd concentrations in the stele of roots and then above ground leaves via long-distance transport in Kentucky bluegrass.
机译:肯塔基草(Poa pratensis)和高羊茅(Festuca arundinacea)是对土壤镉污染的高耐受性草。关于其容忍机制的信息很少。设计了砂培养和水培培养实验,以研究镉化学形态的变化及其在不同组织中的转运。结果表明,肯塔基州早熟禾和高羊茅能够承受50-200mgkg〜(-1)的土壤Cd胁迫,并在其芽中累积高达4275和2559mgCdkg〜(-1)的DW,而不会损失茎生物量。通过顺序溶剂萃取程序确定,它们的Cd超耐受性与两种草种叶片中未溶解的Cd磷酸盐的增加相关。高羊茅对肯塔基州早熟禾的较高的Cd耐受性与较少的Cd转运到根石碑和较少的Cd转运到叶片有关。果胶和蛋白质整合的Cd形式可能参与Cd从皮层到石碑的共生易位,这可能导致肯塔基州早熟禾的根部石碑中的Cd浓度升高,然后离开地上叶的Cd含量更高。

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