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Identification of a CYP84 Family of Cytochrome P450-Dependent Mono-Oxygenase Genes in Brassica napus and Perturbation of Their Expression for Engineering Sinapine Reduction in the Seeds1

机译:甘蓝型油菜中细胞色素P450依赖型单加氧酶基因CYP84家族的鉴定及其对种子中工程芥子碱还原的表达的扰动1

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摘要

CYP84 is a recently identified family of cytochrome P450-dependent mono-oxygenases defined by a putative ferulate-5-hydroxylase (F5H) from Arabidopsis. Until recently F5H has been thought to catalyze the hydroxylation of ferulate to 5-OH ferulate en route to sinapic acid. Sinapine, a sinapate-derived ester in the seeds, is antinutritional and a target for elimination in canola meal. We have isolated three F5H-like genes (BNF5H1-3) from a cultivated Brassica napus, whose amphidiploid progenitor is considered to have arisen from a fusion of the diploids Brassica rapa and Brassica oleracea. Two cultivated varieties of the diploids were also found to contain BNF5H3 and additionally either BNF5H1 or BNF5H2, respectively. Whereas all three are >90% identical in their coding sequence, BNF5H1 and BNF5H2 are closer to each other than to BNF5H3. This and additional data suggest that the two groups of genes have diverged in an ancestor of the diploids. B. napus showed maximal F5H expression in the stems, least in the seeds, and subtle differences among the expression profiles of the three genes elsewhere. Transgenic B. napus with cauliflower mosaic virus 35S-antisense BNF5H contained up to 40% less sinapine, from 9.0 ± 0.3 mg in the controls to 5.3 ± 0.3 mg g−1 seed. F5H from Arabidopsis and a similar enzyme from sweetgum (Liquidamber styraciflua) has recently been shown to have coniferaldehyde hydroxylase activity instead of F5H activity. Thus the supply of 5-OH coniferaldehyde or 5-OH ferulate has a bearing on sinapine accumulation in canola seeds.
机译:CYP84是最近鉴定的一种细胞色素P450依赖性单加氧酶家族,由拟南芥的一种假定的阿魏酸5-羟化酶(F5H)定义。直到最近,人们仍认为F5H可以催化阿魏酸在生成芥子酸的过程中羟基化为5-OH阿魏酸。芥子油是种子中一种源自芥子酸酯的酯,具有抗营养作用,是在菜籽粕中消除目标。我们从栽培的甘蓝型油菜中分离了三个F5H-like基因(BNF5H1-3),其两性类祖细胞被认为是由二倍体芸苔和油菜的融合产生的。还发现两个栽培的二倍体变种分别含有BNF5H3和BNF5H1或BNF5H2。尽管这三个在编码序列上均> 90%相同,但BNF5H1和BNF5H2彼此之间的距离比与BNF5H3的距离更近。该数据和其他数据表明,两组基因在二倍体的祖先中已经分化。甘蓝型油菜在茎中显示出最大的F5H表达,在种子中则最少,在其他三个基因的表达谱之间显示出细微的差异。带有花椰菜花叶病毒35S-反义BNF5H的转基因甘蓝型油菜的芥子碱含量降低了40%,从对照的9.0±0.3 mg到5.3±0.3 mg g-1种子。最近显示,拟南芥中的F5H和甜木中的类似酶(香雪草)具有松柏醛羟化酶活性而不是F5H活性。因此,5-OH松柏醛或5-OH阿魏酸酯的供应与芥花籽中芥子碱的积累有关。

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