Laboratory of Plant Science, Migal - Galilee Technology Center, P.O. Box 831, Kiryat Shmona 12100, Israel.
Laboratory of Plant Science, Migal - Galilee Technology Center, P.O. Box 831, Kiryat Shmona 12100, Israel; Tel-Hai College, Upper Galilee 11016, Israel.
Plant Sci. 2019 Jun;283:195-201. doi: 10.1016/j.plantsci.2019.02.020. Epub 2019 Mar 12.
Methionine and threonine are two essential amino acids whose low levels limit the nutritional quality of seeds. The current objective was to define factors that regulate and might increase their levels in seeds. Feeding experiments carried out on receptacles of developing tobacco (Nicotiana tabacum) capsules showed that 1 mM of S-methylmethionine increased the level of methionine to contents similar to 2.5 mM of homoserine, an intermediate metabolite of the aspartate family of amino acids. The latter also increased the level of threonine. Based on these findings, we generated tobacco seeds that expressed a combination of bacterial feedback-insensitive aspartate kinase (bAK), which was previously reported to have a high level of threonine/methionine, and feedback-insensitive cystathionine γ-synthase (CGS), the regulatory enzyme of the methionine biosynthesis pathway. Plants expressing this latter gene previously showed having higher levels of methionine. The results of total amino acids analysis showed that the level of threonine was highest in the bAK line, which has moderate levels of methionine and lysine, while the highest level of methionine was found in seeds expressing both heterologous genes. The results suggest that the level of threonine in tobacco seeds is limited by the substrate, while that of methionine is limited also by the activity of CGS.
蛋氨酸和苏氨酸是两种必需氨基酸,其含量低会限制种子的营养价值。本研究旨在确定调节并可能增加种子中这两种氨基酸含量的因素。在发育中的烟草(Nicotiana tabacum)蒴果的容器上进行的喂养实验表明,1mM 的 S-甲基蛋氨酸可将蛋氨酸水平提高到类似于 2.5mM 高丝氨酸的水平,后者是天冬氨酸族氨基酸的中间代谢产物。高丝氨酸也增加了苏氨酸的水平。基于这些发现,我们生成了表达组合的烟草种子,该组合包括先前报道的具有高苏氨酸/蛋氨酸水平的细菌反馈不敏感天冬氨酸激酶(bAK)和反馈不敏感半胱氨酸γ-合成酶(CGS),后者是蛋氨酸生物合成途径的调节酶。表达该基因的植物先前显示出更高的蛋氨酸水平。总氨基酸分析的结果表明,在 bAK 系中苏氨酸的含量最高,该系中蛋氨酸和赖氨酸的含量适中,而在表达两种异源基因的种子中,蛋氨酸的含量最高。结果表明,烟草种子中苏氨酸的水平受底物限制,而蛋氨酸的水平也受 CGS 的活性限制。