Department of Botany, Cytogenetics and Plant Breeding Lab, Aligarh Muslim University, Aligarh, India.
Department of Biology, Faculty of Science, Umm Al-Qura University, Makkah, Saudi Arabia.
PLoS One. 2024 Jul 29;19(7):e0305691. doi: 10.1371/journal.pone.0305691. eCollection 2024.
Trigonella, commonly known as Fenugreek, is among the most promising medicinal herbs consumed worldwide due its protein rich dietary contributions. This study involved induced mutagenesis on two Trigonella species (Trigonella foenum-graecum var. PEB and Trigonella corniculata var. Pusa kasuri) using caffeine and sodium azide as mutagens, resulting in the identification of nine high-yielding mutant lines in the M3 generation. Molecular characterization using SCoT markers revealed a high polymorphism of 28.3% and 46.7% in PEB and Pusa kasuri, respectively, facilitating the investigation of genetic divergence among the control and mutant lines. Similarity correlation analysis indicated a high similarity between mutant A and mutant C (0.97) and between mutant J and mutant O (0.88), while the lowest similarity was observed between mutant B and mutant F (0.74) and between control and mutant L (0.58). Mutant F and Mutant J displayed the highest seed yield and its attributing traits, and seed protein content in PEB and Pusa kasuri, respectively. Physiological parameters, including chlorophyll content (Mutants A and N) and carotenoids (mutant A and J), exhibited improvements. Assessment of stomatal and seed characteristics using scanning electron microscopy may lead to improved physiological processes and distinction at the interspecific level, respectively. Methanolic extracts of the control and the mutant lines of both species were subjected to GC-MS analysis, revealing 24 major phytocompounds known for their pharmacological activities (antioxidant, anti-inflammatory, anticancer, etc.). Statistical methods such as Pearson correlation heatmap and pairwise scatter plot matrix provided insights into the correlations and linear associations among parameters for both PEB and Pusa kasuri. The strong correlation between iron content and seeds per pod in the mutant lines suggests a promising avenue for further research. Continued research and breeding efforts using these mutants can lead to significant advancements in agriculture and medicine, benefiting farmers, consumers, and industries alike.
葫芦巴,俗称胡芦巴,是全球最有前途的药用草本植物之一,因为它富含蛋白质,对饮食有贡献。本研究使用咖啡因和叠氮化钠作为诱变剂,对两种葫芦巴(Trigonella foenum-graecum var. PEB 和 Trigonella corniculata var. Pusa kasuri)进行了诱导突变,在 M3 代中鉴定出了 9 个高产量的突变体系。使用 SCoT 标记进行的分子特征分析显示,PEB 和 Pusa kasuri 的多态性分别高达 28.3%和 46.7%,有助于研究对照和突变体系之间的遗传分化。相似性相关分析表明,突变体 A 和突变体 C(0.97)之间以及突变体 J 和突变体 O(0.88)之间具有高度相似性,而突变体 B 和突变体 F(0.74)之间以及对照和突变体 L(0.58)之间的相似性最低。突变体 F 和突变体 J 分别在 PEB 和 Pusa kasuri 中表现出最高的种子产量及其相关特性和种子蛋白质含量。生理参数,包括叶绿素含量(突变体 A 和 N)和类胡萝卜素(突变体 A 和 J),都有所改善。使用扫描电子显微镜评估气孔和种子特征可能分别导致生理过程的改善和种间水平的区分。对两种植物的对照和突变体系的甲醇提取物进行了 GC-MS 分析,揭示了 24 种具有药理活性(抗氧化、抗炎、抗癌等)的主要植物化合物。Pearson 相关热图和成对散点图矩阵等统计方法提供了对 PEB 和 Pusa kasuri 中参数之间相关性和线性关联的深入了解。突变体系中铁含量与每荚种子数之间的强相关性表明,这是进一步研究的有前途的途径。使用这些突变体进行持续的研究和培育工作,可以在农业和医学领域取得重大进展,使农民、消费者和行业都受益。