Xu Quanle, Liu Fengjuan, Chen Peng, Jez Joseph M, Krishnan Hari B
College of Life Sciences, Northwest A&F University, Yangling 712100, Shaanxi, China.
Plant Genetics Research Unit, USDA-Agricultural Research Service, 108 Curtis Hall, University of Missouri, Columbia, MO 65211, USA.
Int J Mol Sci. 2017 Feb 28;18(3):526. doi: 10.3390/ijms18030526.
Grass pea ( L.) is an important legume crop grown mainly in South Asia and Sub-Saharan Africa. This underutilized legume can withstand harsh environmental conditions including drought and flooding. During drought-induced famines, this protein-rich legume serves as a food source for poor farmers when other crops fail under harsh environmental conditions; however, its use is limited because of the presence of an endogenous neurotoxic nonprotein amino acid β--oxalyl-l-α,β-diaminopropionic acid (β-ODAP). Long-term consumption of and β-ODAP is linked to lathyrism, which is a degenerative motor neuron syndrome. Pharmacological studies indicate that nutritional deficiencies in methionine and cysteine may aggravate the neurotoxicity of β-ODAP. The biosynthetic pathway leading to the production of β-ODAP is poorly understood, but is linked to sulfur metabolism. To date, only a limited number of studies have been conducted in grass pea on the sulfur assimilatory enzymes and how these enzymes regulate the biosynthesis of β-ODAP. Here, we review the current knowledge on the role of sulfur metabolism in grass pea and its contribution to β-ODAP biosynthesis. Unraveling the fundamental steps and regulation of β-ODAP biosynthesis in grass pea will be vital for the development of improved varieties of this underutilized legume.
草豌豆(L.)是一种重要的豆科作物,主要生长在南亚和撒哈拉以南非洲。这种未得到充分利用的豆科植物能够抵御包括干旱和洪水在内的恶劣环境条件。在干旱引发的饥荒期间,当其他作物在恶劣环境条件下歉收时,这种富含蛋白质的豆科植物就成为贫困农民的食物来源;然而,由于其含有内源性神经毒性非蛋白质氨基酸β-草酰-L-α,β-二氨基丙酸(β-ODAP),其用途受到限制。长期食用含有β-ODAP的草豌豆与骨软化症有关,骨软化症是一种退行性运动神经元综合征。药理学研究表明,蛋氨酸和半胱氨酸的营养缺乏可能会加重β-ODAP的神经毒性。导致β-ODAP产生的生物合成途径尚不清楚,但与硫代谢有关。迄今为止,关于草豌豆中硫同化酶以及这些酶如何调节β-ODAP生物合成的研究还很有限。在此,我们综述了目前关于草豌豆中硫代谢的作用及其对β-ODAP生物合成的贡献的知识。阐明草豌豆中β-ODAP生物合成的基本步骤和调控对于开发这种未得到充分利用的豆科植物的改良品种至关重要。