Environmental Factors Affecting the Expression of Bilateral-Symmetrical Traits in Plants

S. Baranov, I. Vinokurov, L. Fedorova
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引用次数: 5

Abstract

In recent years, there has been a growing interest in the problem of asymmetry of bilateral traits in plants. Three types of bilateral asymmetry are found in the leaf blade, of interest to ecologists and evolutionists. A brief review of the methods used in testing bilateral asymmetry and developmental stability discusses their role in the development of homeostasis and ontogenesis. Intra- and interspecific differences are considered on the example of woody plants under the influence of factors influencing the expression of bilaterally symmetry. The influence of stress on the manifestation of asymmetric traits is considered. Apparently, the climate and topography of the area play a more important role, determining the plastic and fluctuating variability. The relationship of plasticity, evolutionary canalization, and development stability is considered on the example of woody and cultivated plants. Plasticity and fluctuation variability are in a relationship coordinated by climatic conditions, primarily lighting and temperature. This, in turn, determines the mechanisms of gene regulatory networks. Thus, phenogenetics, which studies the patterns and mechanisms of gene expression and ontogenesis, is based on the data from field botanical studies of plant shape and asymmetry. Epigenetic and population studies of phenotypic variations play a role in standardizing and finding suitable plant species and varieties.
影响植物双侧对称性状表达的环境因子
近年来,植物双侧性状的不对称性问题日益引起人们的关注。在叶片中发现了三种类型的双边不对称,这引起了生态学家和进化论者的兴趣。简要回顾了用于测试双侧不对称和发育稳定性的方法,讨论了它们在体内平衡和个体发生发展中的作用。以木本植物为例,在影响双侧对称表达的因素影响下,考虑了种内和种间差异。考虑了应力对非对称性状表现的影响。显然,该地区的气候和地形起着更重要的作用,决定了塑性和波动变率。以木本植物和栽培植物为例,研究了植物的可塑性、进化渠道化和发育稳定性之间的关系。可塑性和波动可变性是由气候条件协调的关系,主要是光照和温度。这反过来又决定了基因调控网络的机制。因此,表型遗传学研究基因表达和个体发生的模式和机制,是基于植物形状和不对称的野外植物学研究数据。表型变异的表观遗传学和群体研究在标准化和寻找合适的植物物种和品种方面发挥着重要作用。
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