Coleman Christina M, Boyd Robert S, Eubanks Micky D
Department of Biological Sciences, Auburn University, AL 36849, USA.
J Chem Ecol. 2005 Aug;31(8):1669-81. doi: 10.1007/s10886-005-5919-4.
Previous work has shown that hyperaccumulator levels of some metals can defend plants against herbivores, but the possibility of defense by metal concentrations at accumulator or normal levels is unexplored. This study tested the hypothesis that metals can defend plants at low concentrations. We determined the relative toxicities of eight metals commonly acquired by plants: Cd, Co, Cr, Cu, Mn, Ni, Pb, and Zn. Larvae of the diamondback moth (Plutella xylostella), a representative crucifer specialist, were fed with artificial diet amended with concentrations of metal varying from 2 to 3,000 microg/g. Different concentration ranges were used for each of the eight metals, and larval survival at 10-14 days was calculated for each concentration. All metals were toxic to diamondback moth larvae at hyperaccumulator levels. All metals, however, were also toxic to larvae at accumulator concentrations, far below those found in hyperaccumulating plants. Five metals (Cd, Mn, Ni, Pb, and Zn) were toxic below accumulator levels, Cd and Pb were toxic near the concentration ranges of normal plants, and Zn was toxic at a concentration within the normal range. Our results indicate that uptake of certain metals may provide a defensive benefit for plants, and that elemental defenses may be effective at concentrations far lower than previously hypothesized. This study implies that elemental defenses are more widespread in plants than previously believed, and that the ecological consequences of even low levels of metal accumulation need to be explored.
先前的研究表明,某些金属的超积累水平可以保护植物免受食草动物的侵害,但积累或正常水平的金属浓度是否具有防御作用尚不清楚。本研究验证了金属在低浓度下可以保护植物的假设。我们测定了植物常见的八种金属的相对毒性:镉、钴、铬、铜、锰、镍、铅和锌。用添加了浓度从2到3000微克/克不等的金属的人工饲料喂养小菜蛾(Plutella xylostella)的幼虫,小菜蛾是一种典型的十字花科专食性害虫。八种金属各自采用不同的浓度范围,计算每种浓度下10 - 14天幼虫的存活率。所有金属在超积累水平下对小菜蛾幼虫都有毒性。然而,所有金属在积累浓度下对幼虫也有毒性,该浓度远低于超积累植物中的浓度。五种金属(镉、锰、镍、铅和锌)在低于积累水平时就有毒性,镉和铅在接近正常植物的浓度范围内有毒性,锌在正常范围内的一个浓度下有毒性。我们的结果表明,吸收某些金属可能为植物提供防御益处,并且元素防御在远低于先前假设的浓度下可能有效。本研究表明,元素防御在植物中的分布比先前认为的更为广泛,并且即使是低水平的金属积累的生态后果也需要进行探索。