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Effects of two iron sources on iron and cadmium allocation in poplar (Populus alba) plants exposed to cadmium

机译:两种铁源对暴露于镉的杨树(Populus alba)植物中铁和镉分配的影响

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摘要

Effects of 10 μM cadmium (supplied as Cd nitrate) on the utilization and allocation of iron (Fe) were investigated in poplar (Populus alba L.) plants grown in nutrient solution with Fe(III)-EDTA or Fe(III)-citrate as the Fe source. The effects of Cd were also compared with those of Fe deprivation. The accumulation of Fe in roots was 10-fold higher in plants grown with Fe-citrate than with Fe-EDTA. Cadmium decreased leaf chlorophyll concentrations and photosynthetic rates, and these decreases were more marked in plants grown with Fe-citrate than with Fe-EDTA. In both Fe treatments, addition of Cd caused large increases in root and shoot apoplasmic and non-apoplasmic Cd contents and increases in root Fe content; however, Cd decreased shoot Fe content, especially in plants grown with Fe-citrate. New leaves of plants grown with Fe-citrate had small cellular (non-apoplasmic) Fe pools, whereas these pools were large in new leaves of plants grown with Fe-EDTA. Non-apoplasmic Cd pools in new leaves were smaller in plants grown with Fe-citrate than with Fe-EDTA, indicating that inactivation of non-apoplasmic Cd pools is facilitated more by Fe-EDTA than by Fe-citrate. In the presence of Cd, Fe-EDTA was also superior to Fe-citrate in maintaining an adequate Fe supply to poplar shoots. Differences in plant responses to Fe-EDTA and Fe-citrate may reflect differences in long-distance transport of Fe rather than in acquisition of Fe by roots.
机译:研究了在营养液中添加了Fe(III)-EDTA或柠檬酸Fe(III)的杨树(Populus alba L.)植物中10μM镉(以硝酸镉的形式提供)对铁(Fe)的利用和分配的影响。作为铁的来源还比较了Cd和Fe剥夺的影响。用柠檬酸铁生长的植物中,根中的铁蓄积比使用Fe-EDTA高10倍。镉降低了叶片的叶绿素浓度和光合速率,与使用Fe-EDTA相比,柠檬酸铁生长的植物中这些降低的趋势更为明显。在两种铁处理中,添加Cd都会导致根和茎的无性和非无性Cd含量大大增加,并且使根Fe含量增加。然而,镉降低了茎中铁的含量,特别是在柠檬酸铁生长的植物中。用柠檬酸铁生长的植物的新叶具有小的细胞(非质疏性)Fe池,而这些池在用Fe-EDTA生长的植物的新叶中较大。用柠檬酸铁生长的植物中新叶中的非无质Cd库要比用Fe-EDTA小。这表明,用Fe-EDTA比用柠檬酸铁更有利于非无质Cd库的失活。在存在镉的情况下,Fe-EDTA在维持向杨枝的充足铁供应方面也优于柠檬酸铁。植物对Fe-EDTA和柠檬酸铁的反应差异可能反映了Fe的长距离运输而不是根部吸收Fe的差异。

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