National Research Council Canada, Saskatoon, Saskatchewan, Canada.
Department of Plant Science, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.
PLoS One. 2020 Feb 5;15(2):e0227840. doi: 10.1371/journal.pone.0227840. eCollection 2020.
Flax seed has become consumers' choice for not only polyunsaturated alpha-linolenic fatty acid but also nutraceuticals such as lignans and soluble fiber. There is, however, a major drawback of flax as a source of functional food since the seeds contain significant level of cyanogenic glucosides. The final step of cyanogenic glucoside biosynthesis is mediated by UDP-glucose dependent glucosyltransferase. To date, no flax cyanogenic glucosyl transferase genes have been reported with verified biochemical functionality. Here we present a study on the identification and enzymatic characterization of a first flax cyanogenic glucosyltransferase, LuCGT1. We show that LuCGT1 was highly active towards both aliphatic and aromatic substrates. The LuCGT1 gene is expressed in leaf tissues as well as in developing seeds, and its expression level was drastically reduced in flax mutant lines low in cyanogenic glucosides. Identification of LuCGT1 provides a molecular handle for developing gene specific markers for targeted breeding of low cyanogenic glucosides in flax.
亚麻籽不仅因其富含多不饱和α-亚麻酸,而且富含木脂素和可溶性纤维等营养保健品而成为消费者的首选。然而,由于亚麻籽中含有大量的氰苷,因此作为功能性食品的来源存在一个主要的缺点。氰苷生物合成的最后一步是由 UDP-葡萄糖依赖的葡萄糖基转移酶介导的。迄今为止,尚未报道具有已验证的生化功能的亚麻氰苷葡萄糖基转移酶基因。在这里,我们研究了鉴定和酶特性分析一种新的亚麻氰苷葡萄糖基转移酶 LuCGT1。我们发现 LuCGT1 对脂肪族和芳香族底物都具有很高的活性。LuCGT1 基因在叶片组织和发育中的种子中表达,并且在氰苷含量低的亚麻突变体中其表达水平显著降低。LuCGT1 的鉴定为开发针对亚麻低氰苷的基因特异性标记提供了分子手段,可用于有针对性的育种。