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竞争光照会导致金属在金属超积累植物中积累。

Competition for light induces metal accumulation in a metal hyperaccumulating plant.

机构信息

Institute of Evolution and Ecology, University of Tübingen, Tübingen, Germany.

Plant Physiology Department, University of Bayreuth, Bayreuth, Germany.

出版信息

Oecologia. 2021 Sep;197(1):157-165. doi: 10.1007/s00442-021-05001-x. Epub 2021 Aug 9.

DOI:10.1007/s00442-021-05001-x
PMID:34370097
Abstract

Plants can respond to competition with a myriad of physiological or morphological changes. Competition has also been shown to affect the foraging decisions of plants belowground. However, a completely unexplored idea is that competition might also affect plants' foraging for specific elements required to inhibit the growth of their competitors. In this study, we examined the effect of simulated competition on root foraging and accumulation of heavy metals in the metal hyperaccumulating perennial plant Arabidopsis halleri, whose metal accumulation has been shown to provide allelopathic ability. A. halleri plants originating from both metalliferous and non-metalliferous soils were grown in a "split-root" setup with one root in a high-metal pot and the other in a low-metal one. The plants were then assigned to either simulated light competition or no-competition (control) treatments, using vertical green or clear plastic filters, respectively. While simulated light competition did not induce greater root allocation into the high-metal pots, it did result in enhanced metal accumulation by A. halleri, particularly in the less metal-tolerant plants, originating from non-metalliferous soils. Interestingly, this accumulation response was particularly enhanced for zinc rather than cadmium. These results provide support to the idea that the accumulation of metals by hyperaccumulating plants can be facultative and change according to their demand following competition.

摘要

植物可以通过无数的生理或形态变化来应对竞争。竞争也被证明会影响植物在地下的觅食决策。然而,一个完全未知的想法是,竞争也可能影响植物对特定元素的觅食,这些元素是抑制其竞争者生长所必需的。在这项研究中,我们研究了模拟竞争对重金属超积累多年生植物拟南芥根觅食和积累的影响,其金属积累已被证明具有化感能力。来自富金属和非富金属土壤的拟南芥植物在一个“分根”装置中生长,一根在高金属盆中,另一根在低金属盆中。然后,使用垂直的绿色或透明塑料过滤器,将植物分配到模拟光竞争或无竞争(对照)处理中。虽然模拟光竞争并没有诱导更多的根分配到高金属盆中,但它确实导致了拟南芥对金属的积累增强,特别是在来自非富金属土壤的耐金属性较弱的植物中。有趣的是,这种积累反应对锌的增强尤为明显,而不是镉。这些结果支持了这样一种观点,即重金属超积累植物的金属积累是一种兼性的,可以根据竞争后的需求而变化。

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