Calculation of United Quality Latent Indices of Deschampsia antarctica plants adaptability of different origin grown in vitro

N. Miryuta, I. Parnikoza, O. Poronnik, G. Myryuta, M. Rojek-Jelonek, E. Dykyi, V. Kunakh
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Abstract

The research was to develop and describe in detail the algorithm for calculating the United Quality Latent Index (UQLI, Iq ) of plant adaptability from the collection of Deschampsia antarctica Ė. Desv. genotypes obtained from seeds collected at different sites in the Argentine Islands region, the maritime Antarctic, and grown in vitro at the laboratory conditions. Genome size and genetic distances by ISSR and IRAP markers according to data from published articles were used as basic indices of initial genetic heterogeneity for analyzed plant genotypes. To assess individual adaptability indices for eleven D. antarctica genotypes, we used measurement of the leaf length morphometric index and determination of the flavonoids content by rutin and the content of photosynthetic pigments. The spectra of reserve and protective proteins in leaves were investigated by polyacrylamide gel electrophoresis. To obtain the United Quality Latent Index of Adaptability (Iqi, UQLI), the method of extreme grouping was used. The estimation of Iqi (UQLI) was performed using pairwise comparisons of indices from differences sets for each pair of genotypes. We developed and described in detail the algorithm for Iqi estimation for eleven D. antarctica genotypes. As an example of application, correlation models of probability relations of the indices are presented. To evaluate the complex adaptability for eleven D. antarctica genotypes grown in vitro we used developed algorithm for the UQLI calculation. The individuality of the adaptive portrait for all studied genotypes under in vitro cultivation conditions was shown. The influence of basic genetic characteristics (genome size and genetic distances) on auxin metabolism-related indices of leaf length and flavonoid content was shown. Such effect may be carried out by genetic characteristics both individually and together, probably via auxin metabolism. Among the eight genotypes researched, we distinguish four different variants by correlation models and two (positive and negative) by the general Iqi value. Thus the Iqi (UQLI) is proposed to describe a large number of source data at different organization levels which characterize sample genotypes by reducing the dimensions to one dimensionless number. This genotypes’ individuality and the peculiarities of their grouping by Iqi should be taken into account when doing experimental studies using these genotypes as model plants, especially in experiments studying the regulation of productivity and the effect of the various exogenous factors, etc.
不同产地南极地衣植物离体适应性联合品质潜势指数的计算
本研究旨在开发并详细描述Deschampsia antarctica Ė植物适应性联合质量潜指数(UQLI, Iq)的计算算法。Desv。从阿根廷群岛地区和南极海域不同地点收集的种子中获得基因型,并在实验室条件下进行体外培养。利用ISSR和IRAP标记的基因组大小和遗传距离作为分析植物基因型初始遗传异质性的基本指标。采用叶片长度形态计量指数测定、芦丁类黄酮含量测定和光合色素含量测定等方法,对11个基因型的单株适应性进行了评价。利用聚丙烯酰胺凝胶电泳技术研究了油菜叶片中储备蛋白和保护蛋白的光谱。采用极值分组的方法,得到了统一质量潜在适应性指数(Iqi, UQLI)。Iqi (UQLI)的估计采用两两比较每对基因型的差异集指数。我们开发并详细描述了11种南极D.基因型的Iqi估计算法。作为应用实例,给出了指标概率关系的相关模型。为了评价11个南极龙牙基因型体外培养的复杂适应性,我们采用开发的算法进行了UQLI的计算。结果表明,在体外培养条件下,各基因型的自适应图谱各具特色。揭示了基本遗传性状(基因组大小和遗传距离)对生长素代谢相关指标(叶长和类黄酮含量)的影响。这种作用可能是由遗传特征单独或共同发挥的,可能是通过生长素代谢发挥的。在研究的8个基因型中,我们通过相关模型区分了4个不同的变异,通过一般Iqi值区分了2个(阳性和阴性)。因此,我们提出了一种将大量不同组织层次的源数据通过降维到一个无量纲数来描述样本基因型特征的方法。在以这些基因型为模式植物进行实验研究时,特别是在研究其生产力的调控和各种外源因素的影响等方面,应考虑到这些基因型的个体性和Iqi分组的特殊性。
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