Institute for Ecology of Industrial Areas, 6 Kossutha Street, 40-844, Katowice, Poland.
Plant Ecophysiology Team, University of Silesia in Katowice, 28 Jagiellońska Street, 40-032, Katowice, Poland.
Sci Rep. 2023 Jun 28;13(1):10452. doi: 10.1038/s41598-023-37564-5.
Drought is a serious threat worldwide and has a significant impact on agricultural production and soil health. It can pose an even greater threat when it involves land contaminated with trace metal element (TMEs). To prevent desertification, such land should be properly managed and growing Miscanthus for energy or raw material purposes could be a solution. The effects of drought and TMEs were studied in a pot experiment on three different Miscanthus hybrids (conventional Miscanthus × giganteus, TV1 and GNT10) considering growth parameters, photosynthetic parameters and elemental composition of roots, rhizomes and shoots. GNT10 was characterised by the weakest gas exchange among the hybrids, which was compensated by the highest number of leaves and biomass. The strongest correlations between the studied parameters were found for TV1, which might indicate a high sensitivity to TME stress. For M × g and GNT10, the main mechanisms for coping with stress seem to be biomass management through number of shoots and leaves and gas exchange. The main factor determining the extent of accumulation of TMEs was the amount of water applied in the experimental treatment, which was related to the location of the plant in the aniso-isohydric continuum. GNT10 was the most resistant plant to combined stress, while it responded similarly to TV1 when drought and trace metal elements were applied separately.
干旱是全球范围内的一个严重威胁,对农业生产和土壤健康有重大影响。当涉及到受痕量金属元素(TMEs)污染的土地时,它可能会构成更大的威胁。为了防止沙漠化,这种土地应该得到妥善管理,种植芒草作为能源或原材料可能是一种解决方案。在一项盆栽实验中,研究了干旱和 TMEs 对三种不同芒草杂种(常规芒草×巨型芒草、TV1 和 GNT10)的影响,考虑了生长参数、光合参数以及根、根茎和地上部分的元素组成。GNT10 的气体交换能力在杂种中最弱,但它的叶片和生物量数量最高,从而得到了补偿。在 TV1 中发现了研究参数之间最强的相关性,这可能表明它对 TME 胁迫非常敏感。对于 M × g 和 GNT10,应对压力的主要机制似乎是通过地上部分和叶片的数量来管理生物量以及气体交换。决定 TMEs 积累程度的主要因素是实验处理中施加的水量,这与植物在各向异水-同水连续体中的位置有关。GNT10 是最能抵抗综合胁迫的植物,而当干旱和痕量金属元素分别施加时,它对 TV1 的反应相似。