Knoch Eva, Motawie Mohammed Saddik, Olsen Carl Erik, Møller Birger Lindberg, Lyngkjaer Michael Foged
Department of Plant and Environmental Sciences, Plant Biochemistry Laboratory, University of Copenhagen, Thorvaldsensvej 40, 1871 Frederiksberg C, Copenhagen, Denmark.
VILLUM Research Center for Plant Plasticity, University of Copenhagen, Copenhagen, Denmark.
Plant J. 2016 Oct;88(2):247-256. doi: 10.1111/tpj.13247. Epub 2016 Aug 31.
Barley (Hordeum vulgare L.) produces five leucine-derived hydroxynitrile glucosides (HNGs), of which only epiheterodendrin is a cyanogenic glucoside. The four non-cyanogenic HNGs are the β-HNG epidermin and the γ-HNGs osmaronin, dihydroosmaronin and sutherlandin. By analyzing 247 spring barley lines including landraces and old and modern cultivars, we demonstrated that the HNG level varies notably between lines whereas the overall ratio between the compounds is constant. Based on sequence similarity to the sorghum (Sorghum bicolor) genes involved in dhurrin biosynthesis, we identified a gene cluster on barley chromosome 1 putatively harboring genes that encode enzymes in HNG biosynthesis. Candidate genes were functionally characterized by transient expression in Nicotiana benthamiana. Five multifunctional P450s, including two CYP79 family enzymes and three CYP71 family enzymes, and a single UDP-glucosyltransferase were found to catalyze the reactions required for biosynthesis of all five barley HNGs. Two of the CYP71 enzymes needed to be co-expressed for the last hydroxylation step in sutherlandin synthesis to proceed. This observation, together with the constant ratio between the different HNGs, suggested that HNG synthesis in barley is organized within a single multi-enzyme complex.
大麦(Hordeum vulgare L.)能产生五种源自亮氨酸的羟基腈糖苷(HNGs),其中只有表异odendrin是一种含氰糖苷。四种非含氰HNGs分别是β-HNG表皮素和γ-HNGs的渗透压素、二氢渗透压素和萨瑟兰素。通过分析包括地方品种以及古老和现代栽培品种在内的247个春大麦品系,我们证明了HNG水平在品系间差异显著,而这些化合物之间的总体比例是恒定的。基于与参与蜀黍苷生物合成的高粱(Sorghum bicolor)基因的序列相似性,我们在大麦1号染色体上鉴定出一个基因簇,推测其含有编码HNG生物合成中酶的基因。通过在本氏烟草中瞬时表达对候选基因进行了功能表征。发现五种多功能细胞色素P450,包括两种CYP79家族酶和三种CYP71家族酶,以及一种单一的UDP-葡萄糖基转移酶催化大麦所有五种HNGs生物合成所需的反应。在萨瑟兰素合成的最后羟基化步骤中,需要共表达两种CYP71酶才能进行。这一观察结果,连同不同HNGs之间的恒定比例,表明大麦中的HNG合成是在单个多酶复合物中进行的。