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Organic acid complexation, heavy metal distribution and the effect of ATPase inhibition in hairy roots of hyperaccumulator plant species

机译:高积累植物物种毛状根中的有机酸络合,重金属分布和ATPase抑制作用

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Heavy metal uptake and distribution were investigated in hairy roots of the Cd hyperaccumulator, Thlaspi caerulescens, and the Ni hyperaccumulator, Alyssum bertolonii. Hairy roots of both species contained high constitutive levels of citric, malic and malonic acids. After treatment with 20 ppm Cd or 25 ppm Ni, about 13% of the total Cd in T caerulescens roots and 28% of the total Ni in A. bertolonii were associated with organic acids. T caerulescens and A. bertolonii hairy roots remained healthy and grew well at high concentrations of Cd and Ni, respectively, whereas hairy roots of the non-hyperaccumulator, Nicotiana tabacum, did not. Most of the Cd in T caerulescens and N. tabacum roots was localised in the cell walls. In contrast, 85-95% of the Ni in A. bertolonii and N. tabacum was associated with the symplasm. Growth of T caerulescens and A. bertolonii hairy roots was severely reduced in the presence of diethylstilbestrol. (DES), an inhibitor of plasma membrane H+-ATPase. Treatment with DES increased the concentration of Cd in the symplasm of T caerulescens about 6-fold with retention of root viability, whereas viability and Ni transport across the plasma membrane were both reduced in A. bertolonii. These results suggest that the mechanisms of Cd tolerance and hyperaccumulation in T caerulescens hairy roots are capable of withstanding the effects of plasma membrane depolarisation, whereas Ni tolerance and hyperaccumulation in A. bertolonii hairy roots are not.
机译:研究了重金属的吸收和分布在Cd超富集菌(Thlaspi caerulescens)和Ni超富集菌(Alyssum bertolonii)的毛状根中。两种物种的毛状根均含有高含量的柠檬酸,苹果酸和丙二酸。用20 ppm的Cd或25 ppm的Ni处理后,芥蓝中总Cd的约13%和bertolonii中总Ni的28%与有机酸相关。 T芥蓝和A.bertolonii的毛状根保持健康,并分别在高浓度的Cd和Ni下生长良好,而非超蓄积烟草的毛状根则没有。 T芥蓝和烟草根中的大多数Cd都位于细胞壁中。相反,A。bertolonii和烟草中的Ni的85-95%与该种质有关。在存在己烯雌酚的情况下,T。caerulescens和A. bertolonii毛状根的生长严重降低。 (DES),质膜H + -ATPase的抑制剂。用DES处理可将铜芥T的共生体中Cd的浓度增加约6倍,并且保留了根的活力,而在A. bertolonii中,活力和Ni在整个质膜上的转运都降低了。这些结果表明,C容忍和毛ca的毛状根中的Cd耐性和高积累的机制能够承受质膜去极化的影响,而A.bertolonii毛状根的Ni耐性和过高的积累却没有。

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