Department of Cellular and Systems Biology, University of Toronto, Toronto, ON, M5S 3G5, Canada.
Department of Biology, University of Toronto-Mississauga, Mississauga, ON, L5L 1C6, Canada.
Plant J. 2021 Jul;107(2):493-510. doi: 10.1111/tpj.15304. Epub 2021 Jun 7.
Geraniol, citronellol and their esters are high-value acyclic monoterpenes used in food technology, perfumery and cosmetics. A major source of these compounds is the essential oil of rose-scented geraniums of the genus Pelargonium. We provide evidence that their biosynthesis mainly takes place in the cytosol of glandular trichomes via geranyl monophosphate (GP) through the action of a Nudix hydrolase. Protein preparations could convert geranyl diphosphate (GDP) to geraniol in in vitro assays, a process which could be blocked by inorganic phosphatase inhibitors, suggesting a two-step conversion of GDP to geraniol. Pelargonium graveolens chemotypes enriched in either geraniol or (-)-citronellol accumulate GP or citronellyl monophosphate (CP), respectively, the presumed precursors to their monoterpenoid end products. Geranyl monophosphate was highly enriched in isolated glandular trichomes of lines producing high amounts of geraniol. In contrast, (-)-isomenthone-rich lines are depleted in these prenyl monophosphates and monoterpene alcohols and instead feature high levels of GDP, the precursor to plastidic p-menthane biosynthesis. A Nudix hydrolase cDNA from Pelargonium glandular trichomes, dubbed PgNdx1, encoded a cytosolic protein capable of hydrolyzing GDP to GP with a K of about 750 nm but is only weakly active towards farnesyl diphosphate. In citronellol-rich lines, GDP, GP and CP were detected in nearly equimolar amounts, while citronellyl diphosphate was absent, suggesting that citronellol biosynthesis may proceed by reduction of GP to CP in this species. These findings highlight the cytosol as a compartment that supports monoterpene biosynthesis and expands the roles of Nudix hydrolases in the biosynthesis of plant volatiles.
香叶醇、香茅醇及其酯类是高附加值的环状单萜,用于食品技术、香水和化妆品。这些化合物的主要来源是天竺葵属的香叶天竺葵的精油。我们提供的证据表明,它们的生物合成主要发生在腺毛的细胞质中,通过香叶基单磷酸(GP),通过 Nudix 水解酶的作用。蛋白制剂可以在体外实验中将二磷酸香叶酯(GDP)转化为香叶醇,这一过程可以被无机磷酸酶抑制剂阻断,表明 GDP 向香叶醇的两步转化。富含香叶醇或(-)香茅醇的 Pelargonium graveolens 化学型分别积累 GP 或香茅基单磷酸(CP),分别是其单萜类终产物的前体。香叶基单磷酸在产生高量香叶醇的系的分离腺毛中高度富集。相比之下,(-)异薄荷酮丰富的系在这些 prenyl 单磷酸和单萜醇中含量较低,而 GDP 含量较高,这是质体 p-menthane 生物合成的前体。从 Pelargonium 腺毛中分离出的 Nudix 水解酶 cDNA,命名为 PgNdx1,编码一种能够将 GDP 水解为 GP 的细胞质蛋白,其 K 约为 750nm,但对法呢基二磷酸的活性较弱。在香茅醇丰富的系中,GDP、GP 和 CP 以几乎等摩尔的量检测到,而香茅基二磷酸不存在,表明香茅醇的生物合成可能在该物种中通过 GP 还原为 CP 进行。这些发现突出了细胞质作为支持单萜生物合成的隔室,并扩展了 Nudix 水解酶在植物挥发物生物合成中的作用。