Rayner Tracey, Mundy Julia E A, Bilham Lorelei J, Moreau Carol, Lawson David M, Domoney Claire, Wang Trevor L
John Innes Centre, Norwich NR4 7UH, UK.
School of Biological Sciences, University of East Anglia, Norwich NR4 7TJ, UK.
Int J Mol Sci. 2025 Mar 14;26(6):2612. doi: 10.3390/ijms26062612.
In recent years there has been a resurgent interest in plant products as substitutes for animal-derived food products, in which legumes, including peas, feature highly. Here, we report on a set of L. (pea) near-isolines, comprising 24 unique mutants at five loci, where the impact of the mutations on the corresponding enzymes of the starch pathway confers a wrinkled-seeded phenotype. Together with a set of round-seeded mutants impacted at a sixth locus, all 27 mutants show variation for starch composition and protein content. The mutations have been mapped onto three-dimensional protein models to examine potential effects on the corresponding enzyme structures and their activities, and to guide targeted mutagenesis. The mutant lines represent a unique suite of alleles for rapid introduction into elite pea varieties to create new materials for the food and feed markets and industrial applications.
近年来,人们对植物产品作为动物源食品替代品的兴趣再度兴起,其中豌豆等豆类备受关注。在此,我们报道了一组豌豆近等基因系,它们在五个位点包含24个独特的突变体,这些突变对淀粉途径中相应酶的影响导致了皱粒种子表型。连同在第六个位点受到影响的一组圆粒种子突变体,所有27个突变体在淀粉组成和蛋白质含量上都表现出差异。这些突变已被定位到三维蛋白质模型上,以研究对相应酶结构及其活性的潜在影响,并指导定向诱变。这些突变体系代表了一组独特的等位基因,可快速导入优良豌豆品种,为食品、饲料市场及工业应用创造新材料。