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Vulnerability of Sunflower Germination and Metal Translocation under Heavy Metals Contamination

机译:重金属污染下向日葵发芽和金属易位的脆弱性

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The germination and metal translocation ability of two sunflower seedlings were compared to identify the cultivar differences towards metal contamination at juvenile stage. The heavy metal treatments include: 0, 50, 100, 150 and 200 mM Ni, Cd and Pb applied in sand filled pots to Hysun-33 and FH-533 sunflower. The highest germination percentage (79%) and vigor index were recorded for Hysun-33 with no heavy metal treatment. Pb and Cd treatments reduced the growth attributes of 20 days old seedlings of both the cultivars. The Ni translocation effectively enhanced the shoot and root biomass of Hysun-33. The high concentration of 150 and 200 mM Cd and Pb drastically reduced Mn and K contents, vigor, length and biomass of two sunflower cultivars. Among three of the heavy metals, Cd was found more toxic than Pb and Ni. Roots of 20 days old seedlings of Hysun-33 were able to hold more Cd metal and stop its translocation to epigenous parts. Although 150 and 200 mM Ni effects the germination and vigor of sunflower cultivars more than 50 and 100 mM Ni, it is found less toxic in comparison to Cd and Pb. The Cd accumulation in roots suggests that it is physiologically most active sink for Cd metal while epigenous parts of sunflower cultivars are sink for Pb and Ni metal as shoot of sunflower cultivars accumulates high contents of Pb and Ni.
机译:比较了两个向日葵幼苗的发芽和金属转运能力,以确定在幼年期对金属污染的品种差异。重金属处理包括:将0、50、100、150和200 mM的Ni,Cd和Pb应用于装满沙子的花盆中,用于Hysun-33和FH-533向日葵。未经重金属处理的Hysun-33的最高发芽率(79%)和活力指数。铅和镉处理降低了两个品种20天龄幼苗的生长特性。 Ni易位有效增强了Hysun-33的芽和根生物量。 150和200 mM的Cd和Pb的高浓度极大地降低了两个向日葵品种的Mn和K含量,活力,长度和生物量。在三种重金属中,镉的毒性比铅和镍高。 Hysun-33的20天龄幼苗的根部能够容纳更多的Cd金属,并阻止其向表观部位转移。尽管150和200 mM Ni会影响超过50和100 mM Ni的向日葵品种的发芽和活力,但发现与Cd和Pb相比,其毒性较小。 Cd在根中的积累表明,它是Cd生理上最活跃的吸收体,而向日葵品种的表观部分则是Pb和Ni金属的吸收体,因为向日葵品种的芽中Pb和Ni含量高。

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