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首页> 外文期刊>Plant physiology >Metabolic engineering of valine- and isoleucine-derived glucosinolates in Arabidopsis expressing CYP79D2 from cassava
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Metabolic engineering of valine- and isoleucine-derived glucosinolates in Arabidopsis expressing CYP79D2 from cassava

机译:木薯中表达CYP79D2的拟南芥中缬氨酸和异亮氨酸衍生的芥子油苷的代谢工程

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Glucosinolates are amino acid-derived natural products that, upon hydrolysis, typically release isothiocyanates with a wide range of biological activities. Glucosinolates play a role in plant defense as attractants and deterrents against herbivores and pathogens. A key step in glucosinolate biosynthesis is the conversion of amino acids to the corresponding aldoximes, which is catalyzed by cytochromes P450 belonging to the CYP79 family. Expression of CYP79D2 from cassava (Manihot esculenta Crantz.) in Arabidopsis resulted in the production of valine (Val)-and isoleucine-derived glucosinolates not normally found in this ecotype. The transgenic lines showed no morphological phenotype, and the level of endogenous glucosinolates was not affected. The novel glucosinolates were shown to constitute up to 35% of the total glucosinolate content in mature rosette leaves and up to 48% in old leaves. Furthermore, at increased concentrations of these glucosinolates, the proportion of Val-derived glucosinolates decreased. As the isothiocyanates produced from the Val- and isoleucine-derived glucosinolates are volatile, metabolically engineered plants producing these glucosinolates have acquired novel properties with great potential for improvement of resistance to herbivorous insects and for biofumigation.
机译:芥子油苷是氨基酸衍生的天然产物,其水解后通常释放具有广泛生物活性的异硫氰酸酯。芥子油苷在植物防御中起着草食动物和病原体的吸引和威慑作用。芥子油苷生物合成的关键步骤是氨基酸转化为相应的醛肟,该醛肟是由属于CYP79家族的细胞色素P450催化的。在拟南芥中从木薯(Manihot esculenta Crantz。)表达CYP79D2导致产生缬氨酸(Val)和异亮氨酸衍生的芥子油苷,通常在该生态型中找不到。转基因品系未显示形态表型,内源芥子油苷水平也不受影响。在成熟的莲座叶中,新型芥子油苷占总芥子油苷含量的35%,在老叶中占48%。此外,在这些芥子油苷的浓度增加时,Val衍生的芥子油苷的比例降低。由于由缬氨酸和异亮氨酸衍生的芥子油苷产生的异硫氰酸酯是挥发性的,因此生产这些芥子油苷的代谢工程植物获得了新颖的特性,具有改善对草食性昆虫的抗性和生物熏蒸的巨大潜力。

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