Leonard J M, Knapp S J, Slabaugh M B
Department of Botany and Plant Pathology, Oregon State University, Corvallis 97331, USA.
Plant J. 1998 Mar;13(5):621-8. doi: 10.1046/j.1365-313x.1998.00066.x.
Acyl-acyl carrier protein (ACP) thioesterases with specificities on medium chain substrates (C8-C14) are requisite enzymes in plants that produce 8:0, 10:0, 12:0 and 14:0 seed oils, but they may not be the sole enzymatic determinants of chain length. The contribution to chain length regulation of a beta-ketoacyl-ACP synthase, Cw KAS A1, derived from Cuphea wrightii, a species that accumulates 30% 10:0 and 54% 12:0 in seed oils, was investigated. Expression of Cw KAS A1 in Arabidopsis seeds reduced 16:0 from 8.2 to 6.2 mol%, suggesting a KAS II-type activity. In the presence of the KAS I inhibitor cerulenin, however, transgenic seed extracts extended 6:0- and 8:0-ACP at a rate four- to fivefold greater than extracts from untransformed plants, whereas no difference was observed in extension of 14:0- and 16:0-ACP. The effect of KAS A1 on seed oils was tested by combining it with the C. wrightii medium chain-specific thioesterases, Cw FatB1 and Cw FatB2, in crosses of transformed plants. Fatty acid synthesis thesis shifted towards shorter chains in progeny expressing both classes of enzymes. KasA1/FatB1 homozygotes produced threefold more 12:0 than the FatB1 parent while 14:0 and 16:0 were reduced by one-third and one-half, respectively. F2 progeny expressing KasA1 and FatB2 produced twofold more 10:0 and 1.4-fold more 12:0 than the FatB2 parent, and the double-transgenic progeny produced one-quarter less 14:0 and one-half less 16:0 than the FatB2 parent. It is hypothesized that the shift towards production of shorter chains resulted from increased pools of medium chain acyl-ACP resulting from KAS A1 activity. The combined activities of KAS A1 and FatB thioesterases appear to determine the C. wrightii phenotype.
对中链底物(C8 - C14)具有特异性的酰基 - 酰基载体蛋白(ACP)硫酯酶是产生8:0、10:0、12:0和14:0种子油的植物中的必需酶,但它们可能不是链长的唯一酶促决定因素。研究了源自怀氏萼距花(Cuphea wrightii)的β - 酮酰 - ACP合酶Cw KAS A1对链长调节的贡献,该物种种子油中积累了30%的10:0和54%的12:0。Cw KAS A1在拟南芥种子中的表达使16:0从8.2 mol%降至6.2 mol%,表明具有KAS II型活性。然而,在KAS I抑制剂浅蓝菌素存在的情况下,转基因种子提取物将6:0 - 和8:0 - ACP延长的速率比未转化植物的提取物高四到五倍,而在14:0 - 和16:0 - ACP的延长方面未观察到差异。通过在转化植物的杂交中将KAS A1与怀氏萼距花中链特异性硫酯酶Cw FatB1和Cw FatB2组合,测试了KAS A1对种子油的影响。在同时表达这两类酶的后代中,脂肪酸合成向较短链转移。KasA1/FatB1纯合子产生的12:0比FatB1亲本多三倍,而14:0和16:0分别减少了三分之一和二分之一。表达KasA1和FatB2的F2后代产生的10:0比FatB2亲本多两倍,12:0多1.4倍,双转基因后代产生的14:0比FatB2亲本少四分之一,16:0少二分之一。据推测,向较短链生产的转移是由于KAS A1活性导致中链酰基 - ACP库增加所致。KAS A1和FatB硫酯酶的联合活性似乎决定了怀氏萼距花的表型。