Moire Laurence, Rezzonico Enea, Goepfert Simon, Poirier Yves
Département de Biologie Moléculaire Végétale, Université de Lausanne, CH-1015 Lausanne, Switzerland.
Plant Physiol. 2004 Jan;134(1):432-42. doi: 10.1104/pp.103.032938. Epub 2003 Dec 11.
Arabidopsis expressing the castor bean (Ricinus communis) oleate 12-hydroxylase or the Crepis palaestina linoleate 12-epoxygenase in developing seeds typically accumulate low levels of ricinoleic acid and vernolic acid, respectively. We have examined the presence of a futile cycle of fatty acid degradation in developing seeds using the synthesis of polyhydroxyalkanoate (PHA) from the intermediates of the peroxisomal beta-oxidation cycle. Both the quantity and monomer composition of the PHA synthesized in transgenic plants expressing the 12-epoxygenase and 12-hydroxylase in developing seeds revealed the presence of a futile cycle of degradation of the corresponding unusual fatty acids, indicating a limitation in their stable integration into lipids. The expression profile of nearly 200 genes involved in fatty acid biosynthesis and degradation has been analyzed through microarray. No significant changes in gene expression have been detected as a consequence of the activity of the 12-epoxygenase or the 12-hydroxylase in developing siliques. Similar results have also been obtained for transgenic plants expressing the Cuphea lanceolata caproyl-acyl carrier protein thioesterase and accumulating high amounts of caproic acid. Only in developing siliques of the tag1 mutant, deficient in the accumulation of triacylglycerols and shown to have a substantial futile cycling of fatty acids toward beta-oxidation, have some changes in gene expression been detected, notably the induction of the isocitrate lyase gene. These results indicate that analysis of peroxisomal PHA is a better indicator of the flux of fatty acid through beta-oxidation than the expression profile of genes involved in lipid metabolism.
在发育种子中表达蓖麻(Ricinus communis)油酸12-羟化酶或巴勒斯坦假还阳参(Crepis palaestina)亚油酸12-环氧化酶的拟南芥,通常分别积累低水平的蓖麻油酸和岩芹酸。我们利用过氧化物酶体β-氧化循环中间体合成聚羟基脂肪酸酯(PHA),研究了发育种子中脂肪酸降解无效循环的存在情况。在发育种子中表达12-环氧化酶和12-羟化酶的转基因植物中合成的PHA的数量和单体组成,都揭示了相应异常脂肪酸降解无效循环的存在,表明它们稳定整合到脂质中存在限制。通过微阵列分析了近200个参与脂肪酸生物合成和降解的基因的表达谱。未检测到发育中的角果中12-环氧化酶或12-羟化酶的活性导致基因表达有显著变化。对于表达柳叶菜(Cuphea lanceolata)己酰-酰基载体蛋白硫酯酶并积累大量己酸的转基因植物,也得到了类似结果。只有在tag1突变体发育中的角果中,该突变体缺乏三酰甘油积累且显示出脂肪酸向β-氧化有大量无效循环,才检测到一些基因表达变化,特别是异柠檬酸裂解酶基因的诱导。这些结果表明,过氧化物酶体PHA分析比参与脂质代谢的基因表达谱更能准确反映脂肪酸通过β-氧化的通量。