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Hyperaccumulation of nickel by Streptanthus polygaloides (Brassicaceae): Implications for elemental defense.

机译:多链链霉菌(十字花科)对镍的过度积累:对元素防御的意义。

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Plants that accumulate high concentrations of elements into their tissues have been termed hyperaccumulators. Metal hyperaccumulators contain >100 mug g-1 of Cd, >1,000 mug g-1 of Co, Cu, Cr, Ni, or Pb, or >10,000 mug g-1 of Mn or Zn in their tissues. Several functions of hyperaccumulation have been suggested, but most studies have demonstrated that hyperaccumulation provides resistance against herbivores. These experiments explored the elemental defense hypothesis. I first examined the oviposition choice of a crucifer specialist ( Plutella xylostella) using caging experiments. Female moths were presented a choice of the Ni hyperaccumulating plant, Streptanthus polygaloides, grown on high-Ni soil or grown on low-N soil. I also used P. xylostella larvae to determine the toxicities of Cd, Ni, Pb and Zn, relative to the hyperaccumulation thresholds for each metal. Artificial diet treatments amended with low concentrations of metals were fed to P. xylostella larvae alone and in combination with other metals. I also explored the possible additive effect of low concentrations of Ni and organic plant defense chemicals. Finally, I investigated the defensive potential of hyperaccumulated Ni by S. polygaloides on arthropod herbivores representing various feeding modes by using a series of feeding experiments. Arthropods representing the following feeding modes were used: folivore, rhizovore, vascular tissue feeder (xylem or phloem), and cell-disruptor. My results demonstrate that hyperaccumulated Ni can defend S. polygaloides against a crucifer specialist. More eggs were laid on low-Ni plants and more feeding damage and fewer flowers were found for low-Ni plants. Low concentrations of metals (below the hyperaccumulation threshold) can negatively affect P. xylostella larval survival. When two metals are combined at low concentrations, survival of P. xylostella larvae was significantly decreased compared to each metal alone. Low concentrations of Ni combined with organic defense chemicals also resulted in significantly reduced survival of larvae compared to either Ni or organic chemical treatments alone. My results indicate that the potential defensive benefit of hyperaccumulated Ni by S. polygaloides depends on herbivore feeding mode. Hyperaccumulated Ni negatively affected survival of the folivores, rhizovore, and reduced population growth rate of one cell-disruptor. However, xylem- and phloem-feeding herbivores and one cell-disruptor were unaffected. My results will guide future studies of elemental plant defenses and will be useful in examining possible mechanisms for the evolution of hyperaccumulation.
机译:在组织中累积高浓度元素的植物被称为超蓄积物。金属超级蓄积器的组织中含有> 100马克g-1的Cd,> 1,000马克g-1的Co,Cu,Cr,Ni或Pb,或> 10,000马克g-1的Mn或Zn。有人提出了过度积累的几种功能,但是大多数研究表明,过度积累对草食动物具有抗性。这些实验探索了基本防御假设。我首先使用笼养实验检查了十字花科植物专家的产卵选择。雌性飞蛾可以选择在高Ni土或低N土上生长的Ni高积累植物Streptanthus polygaloides。我还使用了小菜蛾幼虫来确定Cd,Ni,Pb和Zn的毒性,相对于每种金属的高积累阈值。用低浓度金属改良的人工饮食疗法单独或与其他金属混合饲喂小菜蛾幼虫。我还探讨了低浓度的镍和有机植物防御化学物质可能产生的加合效应。最后,我通过一系列饲养实验研究了多倍体链球菌超积累的镍对节肢动物食草动物的防御潜力,这些节肢动物代表了不同的饲养方式。使用了代表以下喂养方式的节肢动物:叶片,根瘤菌,维管组织饲喂器(木质部或韧皮部)和破坏细胞的动物。我的结果表明,高积累的镍可以对抗十字花科植物的专家防御多倍体。在低镍植物上产下更多的卵,对低镍植物造成更多的摄食损害和更少的花朵。低浓度的金属(低于高积累阈值)会负面影响小菜蛾幼虫的存活。当两种金属以低浓度组合时,与单独的每种金属相比,小菜蛾幼虫的存活率显着降低。与单独的镍或有机化学处理相比,低浓度的镍与有机防御化学物质的结合还导致幼虫的存活率大大降低。我的结果表明,多倍体链球菌超积累的镍的潜在防御作用取决于草食动物的饲养方式。高积累的镍对叶的存活,根瘤菌和一种细胞破坏者的种群增长率降低产生负面影响。但是,以木质部和韧皮部为食的草食动物和一种破坏细胞的动物没有受到影响。我的研究结果将指导未来植物基本防御的研究,并将有助于研究过度积累进化的可能机制。

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