Osorio Claudia E, Till Bradley J
Instituto de Investigaciones Agropecuarias, INIA Carillanca, Temuco, Chile.
Veterinary Genetics Laboratory, University of California, Davis, Davis, CA, United States.
Front Plant Sci. 2022 Jan 26;12:795091. doi: 10.3389/fpls.2021.795091. eCollection 2021.
Alkaloids are part of a structurally diverse group of over 21,000 cyclic nitrogen-containing secondary metabolites that are found in over 20% of plant species. are naturally containing quinolizidine alkaloid (QA) legumes, with wild accessions containing up to 11% of QA in seeds. Notwithstanding their clear advantages as a natural protecting system, lupin-breeding programs have selected against QA content without proper understanding of quinolizidine alkaloid biosynthetic pathway. This review summarizes the current status in this field, with focus on the utilization of natural mutations such as the one contained in locus, and more recently the development of molecular markers, which along with the advent of sequencing technology, have facilitated the identification of candidate genes located in the region. New insights for future research are provided, including the utilization of differentially expressed genes located on the , as candidates for genome editing. Identification of the main genes involved in the biosynthesis of QA will enable precision breeding of low-alkaloid, high nutrition white lupin. This is important as plant based high quality protein for food and feed is an essential for sustainable agricultural productivity.
生物碱是结构多样的一类化合物,属于超过21,000种含氮环状次生代谢产物,在超过20%的植物物种中都有发现。羽扇豆是天然含有喹诺里西啶生物碱(QA)的豆科植物,野生种的种子中QA含量高达11%。尽管QA作为一种天然保护系统具有明显优势,但羽扇豆育种项目在未充分了解喹诺里西啶生物碱生物合成途径的情况下就选择降低QA含量。本综述总结了该领域的现状,重点关注自然突变的利用,如存在于某位点的突变,以及最近分子标记的发展,随着测序技术的出现,这些都有助于鉴定位于该区域的候选基因。本文还提供了未来研究的新见解,包括利用位于某区域的差异表达基因作为基因组编辑的候选基因。鉴定参与QA生物合成的主要基因将有助于低生物碱、高营养白羽扇豆的精准育种。这很重要,因为基于植物的优质蛋白质用于食品和饲料对可持续农业生产力至关重要。