不同土壤和气候条件下五味子植物器官中同化物分布的特殊性

IF 0.8 Q2 Environmental Science
N. Zaimenko, N. Skrypchenko, B. Ivanytska, T. Venediktova, N. Kovalska, U. Karpiuk, T. Stasiv, D. Liu
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引用次数: 1

摘要

五味子叶片营养物质积累的特性Baill。并对其连续单一栽培条件下的根际土壤进行了研究。对不同土壤和气候条件下植物叶片养分分布的对比分析显示出显著差异。研究发现,生长在Kolomyia国家森林基金(Otyniia, Ukraine)灰化土黑钙土上的植物对Ca、Si、P、Cu、Zn和Mg等营养物质的吸收更为强烈。深灰色森林土壤条件下,在乌克兰基辅M. Gryshko国家植物园种植的羊草叶片组织中P、K、S、Mn含量较高。揭示了植物在根际土壤中积累和释放镁元素的高能力,这与植物根据生态形态选择向土壤环境释放矿质元素的能力完全一致。与此同时,根际土壤中Ca的含量在营养期结束时显著下降,这一方面可以解释为Ca大量流入植物组织,另一方面可以解释为参与化学平衡过程以减少土壤中锰和氮的流动性。揭示了五味子叶片中Fe、Ca、Mg、Al元素的无障碍积累,这是开发植物栽培技术时应考虑的问题。对植物营养器官和生殖器官及根际土壤化感作用活性的研究表明,在乌克兰森林-草原地带连续长期栽培的条件下,羊草土壤中酚类物质有少量的积累,这是羊草成功栽培的先决条件。土壤中酚类物质含量最多的是上层土层,随着深度的增加,酚类物质含量逐渐减少,这与土壤剖面的氧化还原过程一致。对生长在不同土壤和气候条件下的五味子植株的游离氨基酸库进行了分析,其中叶片中氨基酸的浓度最具指示性。评价植物组织中游离氨基酸的定量和定性分布是植物对土壤和气候条件敏感性的诊断标志。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Peculiarities of the distribution of assimilates in the organs of Schisandra chinensis plants under different soil and climatic conditions
Peculiarities of accumulation of nutrients in the leaves of Schisandra chinensis (Turcz.) Baill. and rhizosphere soil under the conditions of its continuous monoculture have been studied. Comparative analysis of the distribution of nutrients in the leaves of plants under different soil and climatic conditions revealed significant differences. It was found that plants grown on podzolic chernozem of Kolomyia State Forest Fund (Otyniia, Ukraine) were characterized by more intensive absorption of such nutrients as Ca, Si, P, Cu, Zn and Mg. The content of P, K, S, Mn was much higher in the foliar tissues of S. chinensis plants cultivated on the territory of the M. Gryshko National Botanical Garden (Kyiv, Ukraine) in the conditions of dark grey forest soil. The high ability of plants to accumulate and release Mg into the rhizosphere soil was revealed, which is fully consistent with the selective ability of plants to release mineral elements into the soil environment in accordance with their ecomorphotypes. At the same time, the amount of Ca in the rhizosphere soil decreased significantly at the end of the vegetative period, which could be explained, on the one hand, by the intensive influx of Ca into plant tissues and, on the other hand, by participation in chemical balancing processes to reduce manganese and nitrogen mobility in the soil. Barrier-free accumulation of Fe, Ca, Mg, Al elements in S. chinensis leaves was revealed, which should be taken into account when developing plant cultivation technology. The studies of allelopathy activity of vegetative and generative organs of plants and rhizosphere soil have shown that phenolic substances accumulate in small amounts in the soil under S. chinensis, which is a prerequisite for successful cultivation of this fruit vine in the Forest-Steppe zone of Ukraine under conditions of continuous long-term cultivation. The largest amount of phenolic substances was in the upper soil horizons, which gradually decreased with depth, which is consistent with the course of redox processes for the studied soil profiles. The pool of free amino acids of S. chinensis plants growing in different soil and climatic conditions was analyzed, the concentration of amino acids in the leaves was the most indicative. Evaluation of the quantitative and qualitative distribution of free amino acids in plant tissues serves as a diagnostic sign of plant sensitivity to soil and climatic conditions.
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