Biological, morphological and biochemical features of seeds of introduced genotypes of Cicer arietinum L.

D. Rakhmetov, O. Bondarchuk, S. Rakhmetova, Namik Rashydov, N. Kutsokon
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Abstract

The research relevance is determined by the need to develop modern scientific and practical principles of involving little-known, rare, and newly created plant genotypes in the introduction process. This will help to warn of a possible phytoproduct crisis caused by climate change and rapid population growth on the planet. The research aims to determine the morphological characteristics and biochemical features of Cicer arietinum seeds for improving the germplasm of legumes and conducting further breeding and biotechnological research. The comparative morphological method was used for seeds of introduced plant genotypes from different regions of origin. The material for the study was 9 genotypes of Cicer arietinum originating from Australia, Afghanistan, Azerbaijan, and Ukraine, which were grown in experimental plots of the M.M. Gryshko National Botanical Garden. Morphometric parameters and some biochemical properties of plant seeds were studied depending on genotypic characteristics. Field, laboratory, and methods of analysis of variance and statistical evaluation of average data were used using Microsoft Excel (2010). In the course of the research, it was found that all introduced genotypes are characterised by high quantitative and qualitative indicators of seeds. In terms of linear seed dimensions (length to width ratio), the sample CAAFGK-1 was particularly distinguished – 17.12 × 14.38 mm, and in terms of weight of 1000 seeds CATADJK-1 – 584.5 g. Biochemical studies have shown that the highest amount of absolute dry matter was accumulated in the seeds of C. arietinum samples – CAAFGD-2, CAAFGK-1, CATADJD-2 and CATADJK-1 (from 89.04 to 89.68%). The level of total sugars was dominated by the samples of C. arietinum genotypes CATADJK-1 – 9.37%, and the accumulation of phosphorus was dominated by CAAZEUR-2 – 1.43%. The biochemical composition of plants makes it possible not only to characterise their value in terms of food crops but also to determine the most plastic genotypes to environmental factors. Thus, the results obtained indicate the prospects of using certain genotypes of C. arietinum as a starting material for breeding and biotechnological research and the creation of new plant forms, which will help to expand the range of highly productive chickpea genotypes in the northern regions of Ukraine
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Cicer arietinum L.引进基因型种子的生物学、形态学和生物化学特征
这项研究的现实意义在于,有必要制定现代科学和实用原则,让鲜为人知、稀有和新创造的植物基因型参与引种过程。这将有助于对气候变化和地球人口快速增长可能导致的植物产品危机发出警告。该研究旨在确定 Cicer arietinum 种子的形态特征和生化特征,以改良豆科植物的种质,并开展进一步的育种和生物技术研究。比较形态学方法适用于从不同原产地引进的植物基因型的种子。研究材料是来自澳大利亚、阿富汗、阿塞拜疆和乌克兰的 9 个 Cicer arietinum 基因型,这些基因型生长在 M.M. Gryshko 国家植物园的实验田中。根据基因型特征对植物种子的形态参数和一些生化特性进行了研究。使用 Microsoft Excel(2010)对田间、实验室和方差分析方法以及平均数据的统计评估进行了研究。研究过程中发现,所有引进的基因型都具有较高的种子定量和定性指标。生化研究表明,C. arietinum 样品 CAAFGD-2、CAAFGK-1、CATADJD-2 和 CATADJK-1 种子中积累的绝对干物质含量最高(从 89.04% 到 89.68%)。总糖水平以 C. arietinum 基因型 CATADJK-1 样品为主 - 9.37%,磷的积累以 CAAZEUR-2 为主 - 1.43%。植物的生化成分不仅可以确定其在粮食作物方面的价值,还可以确定对环境因素最具可塑性的基因型。因此,研究结果表明,将某些鹰嘴豆基因型作为育种和生物技术研究的起始材料以及创造新的植物形态的前景广阔,这将有助于扩大乌克兰北部地区高产鹰嘴豆基因型的范围。
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