Department of Botany, University of Wisconsin-Madison, Madison, WI, 53706, USA.
Department of Ecology & Evolutionary Biology, University of Michigan, Ann Arbor, MI, 48109, USA.
New Phytol. 2018 Jan;217(2):896-908. doi: 10.1111/nph.14822. Epub 2017 Oct 9.
Diverse natural products are synthesized in plants by specialized metabolic enzymes, which are often lineage-specific and derived from gene duplication followed by functional divergence. However, little is known about the contribution of primary metabolism to the evolution of specialized metabolic pathways. Betalain pigments, uniquely found in the plant order Caryophyllales, are synthesized from the aromatic amino acid l-tyrosine (Tyr) and replaced the otherwise ubiquitous phenylalanine-derived anthocyanins. This study combined biochemical, molecular and phylogenetic analyses, and uncovered coordinated evolution of Tyr and betalain biosynthetic pathways in Caryophyllales. We found that Beta vulgaris, which produces high concentrations of betalains, synthesizes Tyr via plastidic arogenate dehydrogenases (TyrA /ADH) encoded by two ADH genes (BvADHα and BvADHβ). Unlike BvADHβ and other plant ADHs that are strongly inhibited by Tyr, BvADHα exhibited relaxed sensitivity to Tyr. Also, Tyr-insensitive BvADHα orthologs arose during the evolution of betalain pigmentation in the core Caryophyllales and later experienced relaxed selection and gene loss in lineages that reverted from betalain to anthocyanin pigmentation, such as Caryophyllaceae. These results suggest that relaxation of Tyr pathway regulation increased Tyr production and contributed to the evolution of betalain pigmentation, highlighting the significance of upstream primary metabolic regulation for the diversification of specialized plant metabolism.
植物中通过专门的代谢酶合成多种天然产物,这些酶通常是谱系特异性的,源自基因复制后功能分化。然而,人们对初级代谢物对特化代谢途径进化的贡献知之甚少。甜菜红素是唯一存在于石竹目植物中的类胡萝卜素,由芳香族氨基酸 l-酪氨酸(Tyr)合成,并取代了原本无处不在的苯丙氨酸衍生的花青素。本研究结合生物化学、分子和系统发育分析,揭示了石竹目中 Tyr 和甜菜红素生物合成途径的协同进化。我们发现,产生高浓度甜菜红素的糖萝卜通过两个 ADH 基因(BvADHα和 BvADHβ)编码的质体芳香族氨基酸脱氢酶(TyrA/ADH)合成 Tyr。与 Tyr 强烈抑制 BvADHβ和其他植物 ADH 不同,BvADHα对 Tyr 的敏感性较低。此外,在核心石竹目中甜菜红素色素形成过程中出现了对 Tyr 不敏感的 BvADHα同源物,随后在从甜菜红素到花青素色素形成的谱系中经历了松弛选择和基因丢失,如石竹科。这些结果表明,Tyr 途径调节的松弛增加了 Tyr 的产生,有助于甜菜红素色素的进化,突出了上游初级代谢物调节对特化植物代谢多样化的重要性。