The method of determining the plants phytoindicator traits adaptive changes coefficient

E. G. Tyulkova, L. P. Аvdashkova
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引用次数: 2

Abstract

One of the key environmental problem is the study of protective and adaptive reactions of plants to technogenic conditions. When carrying out a comparative analysis of plants implementation results adaptive mechanisms the quantitative assessment of these processes is great importance. Currently, calculation formulas have been developed to assess the adaptive potential of a particular cultivar, taking into account their yield. In this case, it is necessary to use the average yield of the variety and culture for the entire period of cultivation to quantify the value of the adaptive potential realization. There is a graphical method of determining the value of adaptive potential plants implementation using curves variability phytoindicator features of the studied plants (length, width, area, shape index sheet, the annual growth of trees, the chlorophyll fluorescence induction index etc.), growing under man-made conditions, and the curves of plants these signs variability in background conditions. The value of the adaptive capacity implementation in this case may be defined as the percentage area overlap of the variability phytoindicator characteristic the object in technogenic conditions curve and variability phytoindicator the control test object curve. However, this method provides for the contribution of only the adaptive changes degree and does not take into account the depth of differences in the phytoindicator characteristics the object in technogenic conditions and the control object. To assess changes in the plants parameters under the influence adverse factors environment possible with use the analysis method of growth in ontogenesis lamina dynamics in the contaminated territories. The method involves study the parameters average dynamics (length, width, perimeter and leaf area) of leaves groups (at least five in the group), located on hanging branches on the world four sides, depending on the distance from the road edge and the each group leaves height above the soil surface. Further, statistical modeling reveals multifactorial regularities of the influence of the accounting sheet height above the soil surface, the distance from the road to the accounting leaves individual parameters change. Given the adaptive changes genetic nature developed discrete-systematic approach to the plants adaptive capacity analysis, which allows us to analyze data about the adaptive reactions genetic nature and to obtain new information about the management at different levels of living organisms organization, including the biosphere. Since these methods do not provide for the definition a single quantitative criterion that allows comparative analysis of the several plants phytoindicator parameters dynamics, this was the purpose of this work.
植物指示性状适应性变化系数的确定方法
研究植物对技术条件的保护性和适应性反应是一个关键的环境问题。在对植物实施结果和适应机制进行比较分析时,对这些过程进行定量评估是非常重要的。目前,已经开发出计算公式来评估特定品种的适应潜力,并考虑到它们的产量。在这种情况下,有必要使用品种和栽培在整个栽培期间的平均产量来量化适应潜力实现的价值。有一种图形化的方法来确定适应性潜在植物实现的价值,使用被研究植物的曲线变异性植物指示剂特征(长度、宽度、面积、形状指数表、树木的年生长量、叶绿素荧光诱导指数等),在人工条件下生长,以及植物的曲线这些标志在背景条件下的变异性。在这种情况下,自适应能力实现的值可以定义为技术条件下对象的变异性植物指示物特征曲线和控制测试对象曲线的变异性植物指示物重叠的面积百分比。然而,这种方法只提供了适应性变化程度的贡献,而没有考虑到在技术条件下的对象和对照对象的植物指示剂特性差异的深度。利用植物生长发育层流动力学分析方法,评价在环境不利因素影响下植物参数可能发生的变化。该方法包括根据距离道路边缘的距离和每组叶子高于土壤表面的高度,研究位于世界四面悬挂树枝上的叶子组(组中至少有五个)的参数平均动态(长度,宽度,周长和叶面积)。进一步,通过统计建模揭示了会计片距土壤表面高度、道路距离到会计片间距各参数变化影响的多因素规律。鉴于遗传性质的适应性变化,发展了离散系统的植物适应能力分析方法,使我们能够分析遗传性质的适应性反应数据,并获得有关生物组织(包括生物圈)不同层次管理的新信息。由于这些方法没有为定义提供一个单一的定量标准,以便对几种植物的植物指示剂参数动态进行比较分析,因此这是本工作的目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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