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小麦基因组中细胞分裂素序列的分子量和等电点分析

Molecular Mass and Isoelectric Point Analysis of Cytokinin Sequences in the Wheat Genome.

作者信息

Almutairi Meshal M, Alzahrani Saad M

机构信息

Advanced Agricultural and Food Technology Institute, King Abdulaziz City for Science and Technology (KACST), P.O. Box 6086, Riyadh 11442, Saudi Arabia.

出版信息

Int J Mol Sci. 2025 May 30;26(11):5270. doi: 10.3390/ijms26115270.

Abstract

Cytokinins play an important role in plants and are targets of wheat breeding, particularly in terms of flowering and yield. The objective of this study was to determine relative synonymous codon usage (RSCU), molecular weight (g/mol), theoretical isoelectric point, instability index, aliphatic index, and hydrophobicity for the wheat cytokinin sequences from two different databases. The methods employed involved different formulas for calculations. The relative synonymous codon usage values were calculated as the ratio of the observed frequency to the expected frequency for the particular codon. The theoretical isoelectric point was calculated based on dissociation constant for groups of carboxylic acid and amino acids groups. The results showed that values of the relative synonymous codon usage divided amino acids of wheat into two groups. In the first group, values were above 1.6 (significant overrepresentation), such as those for phenylalanine (TTC), and Leucine (TTA). In the second group, values were below 0.6 (underrepresentation) such as those for leucine (CTA) and valine (GTT). In addition, the theoretical isoelectric point (pI) ranged from 4.81 to 6.6, and the instability index values were 34.3 and 38.16. A high degree of instability was observed at 1D and 5D of wheat genomes with values of 54.16 and 50.36, respectively. Principal component analysis (PCA) of the RSCU revealed that the main variation was attributed to PC1, accounting for a total variation of about 72.11%. The amino acids contributing to this variation included isoleucine, leucine, lysine, aspartic acid, and serine. PCA of the theoretical isoelectric point results found that the main variation was attributed to PC1, with a total variation of about 58.88%, and these chromosomes included 5D, 4D, 1A, 4B, and 3D of wheat genomes. Understanding the importance of RSCU in plant breeding helps breeders understand the mechanisms and functional aspects of wheat genomes, thereby enabling the development of wheat genomes for environmental adaptations. These results will provide a reference for nutrition and industrial applications, as well as supporting breeding programs.

摘要

细胞分裂素在植物中发挥着重要作用,并且是小麦育种的目标,特别是在开花和产量方面。本研究的目的是确定来自两个不同数据库的小麦细胞分裂素序列的相对同义密码子使用情况(RSCU)、分子量(g/mol)、理论等电点、不稳定指数、脂肪族指数和疏水性。所采用的方法涉及不同的计算公式。相对同义密码子使用值计算为特定密码子的观察频率与预期频率之比。理论等电点基于羧酸基团和氨基酸基团的解离常数进行计算。结果表明,相对同义密码子使用值将小麦氨基酸分为两组。在第一组中,值高于1.6(显著过表达),例如苯丙氨酸(TTC)和亮氨酸(TTA)的值。在第二组中,值低于0.6(低表达),例如亮氨酸(CTA)和缬氨酸(GTT)的值。此外,理论等电点(pI)范围为4.81至6.6,不稳定指数值分别为34.3和38.16。在小麦基因组的1D和5D处观察到高度不稳定,值分别为54.16和50.36。RSCU的主成分分析(PCA)表明,主要变异归因于PC1,占总变异的约72.11%。导致这种变异的氨基酸包括异亮氨酸、亮氨酸、赖氨酸、天冬氨酸和丝氨酸。理论等电点结果的PCA发现,主要变异归因于PC1,总变异约为58.88%,这些染色体包括小麦基因组的5D、4D、1A、4B和3D。了解RSCU在植物育种中的重要性有助于育种者理解小麦基因组的机制和功能方面,从而能够开发适应环境的小麦基因组。这些结果将为营养和工业应用提供参考,并支持育种计划。

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