Department of Plant Sciences, University of Tennessee, Knoxville, TN 37996, USA.
Plant J. 2011 Apr;66(1):212-29. doi: 10.1111/j.1365-313X.2011.04520.x.
Some plant terpenes such as sterols and carotenes are part of primary metabolism and found essentially in all plants. However, the majority of the terpenes found in plants are classified as 'secondary' compounds, those chemicals whose synthesis has evolved in plants as a result of selection for increased fitness via better adaptation to the local ecological niche of each species. Thousands of such terpenes have been found in the plant kingdom, but each species is capable of synthesizing only a small fraction of this total. In plants, a family of terpene synthases (TPSs) is responsible for the synthesis of the various terpene molecules from two isomeric 5-carbon precursor 'building blocks', leading to 5-carbon isoprene, 10-carbon monoterpenes, 15-carbon sesquiterpenes and 20-carbon diterpenes. The bryophyte Physcomitrella patens has a single TPS gene, copalyl synthase/kaurene synthase (CPS/KS), encoding a bifunctional enzyme producing ent-kaurene, which is a precursor of gibberellins. The genome of the lycophyte Selaginella moellendorffii contains 18 TPS genes, and the genomes of some model angiosperms and gymnosperms contain 40-152 TPS genes, not all of them functional and most of the functional ones having lost activity in either the CPS- or KS-type domains. TPS genes are generally divided into seven clades, with some plant lineages having a majority of their TPS genes in one or two clades, indicating lineage-specific expansion of specific types of genes. Evolutionary plasticity is evident in the TPS family, with closely related enzymes differing in their product profiles, subcellular localization, or the in planta substrates they use.
有些植物萜烯,如甾醇和类胡萝卜素,是初级代谢的一部分,基本上存在于所有植物中。然而,植物中发现的大多数萜烯被归类为“次级”化合物,即那些由于选择而在植物中进化的化学物质,以通过更好地适应每个物种的局部生态位来提高适应性。在植物王国中已经发现了数千种这样的萜烯,但每种植物只能合成其中一小部分。在植物中,萜烯合酶(TPS)家族负责从两种异构的 5-碳前体“构建块”合成各种萜烯分子,导致 5-碳异戊二烯、10-碳单萜、15-碳倍半萜和 20-碳二萜。苔藓植物Physcomitrella patens 只有一个 TPS 基因,即杯状二磷酸合酶/贝壳杉烯合酶(CPS/KS),编码一种双功能酶,产生贝壳杉烯,它是赤霉素的前体。石松属植物 Selaginella moellendorffii 的基因组包含 18 个 TPS 基因,一些模式被子植物和裸子植物的基因组包含 40-152 个 TPS 基因,并非所有这些基因都具有功能,而且大多数具有功能的基因在 CPS 或 KS 型结构域中失去了活性。TPS 基因通常分为七个类群,有些植物谱系的 TPS 基因大部分集中在一个或两个类群中,这表明特定类型的基因具有谱系特异性扩张。TPS 家族中的进化可塑性显而易见,具有密切亲缘关系的酶在其产物谱、亚细胞定位或它们在植物体内使用的底物方面存在差异。