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A Tandem Array of ent-Kaurene Synthases in Maize with Roles in Gibberellin and More Specialized Metabolism

机译:玉米中串联的天牛-天牛氨酸合酶阵列在赤霉素和更专门的代谢中起作用

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摘要

While most commonly associated with its role in gibberellin phytohormone biosynthesis, ent-kaurene also serves as an intermediate in more specialized diterpenoid metabolism, as exemplified by the more than 800 known derived natural products. Among these are the maize kauralexins. However, no ent-kaurene synthases (s) have been identified from maize. The maize gibberellin-deficient dwarf-5 (d5) mutant has been associated with a loss of activity. The relevant genetic lesion has been previously mapped, and was found here to correlate with the location of the -like gene ZmKSL3. Intriguingly, this forms part of a tandem array with two other terpene synthases (s). Although one of these, ZmTPS1, has been previously reported to encode a sesquiterpene synthase, and both ZmTPS1 and that encoded by the third gene, ZmKSL5, have lost the N-terminal γ-domain prototypically associated with (L)s, all three genes fall within the (L) or -e subfamily. Here it is reported that all three genes encode enzymes that are targeted to the plastid in planta, where diterpenoid biosynthesis is initiated, and which all readily catalyze the production of ent-kaurene. Consistent with the closer phylogenetic relationship of ZmKSL3 with previously identified s from cereals, only transcription of this gene is affected in d5 plants. On the other hand, the expression of all three of these genes is inducible, suggesting a role in more specialized metabolism, such as that of the kauralexins. Thus, these results clarify not only gibberellin phytohormone, but also diterpenoid phytoalexin biosynthesis in this important cereal crop plant.
机译:尽管最常见的是其在赤霉素植物激素生物合成中的作用,但ent-kaurene还可作为更专门的二萜类化合物代谢的中间体,例如800多种已知的天然产物。其中有玉米高岭素。但是,尚未从玉米中鉴定出新戊烯-丁二烯合酶。玉米赤霉素缺乏的dwarf-5(d5)突变体与活性降低有关。先前已经对相关的遗传病灶进行了定位,并在此处发现了与类似基因ZmKSL3的位置相关。有趣的是,这与其他两个萜烯合酶形成了串联阵列的一部分。尽管以前有报道称其中一个ZmTPS1编码倍半萜烯合酶,而ZmTPS1和第三个基因ZmKSL5编码的ZmTPS1都失去了与这三个基因(L)相关的N端γ域原型。属于(L)或-e子族。据报道,这三个基因均编码针对植物中质体的酶,在该酶中开始进行二萜类生物合成,并且都容易催化丁香花胶的产生。与ZmKSL3与先前从谷物中鉴定出的S的系统发育关系更加紧密一致,在d5植物中仅该基因的转录受到影响。另一方面,所有这三个基因的表达都是可诱导的,提示其在更专门的代谢中发挥作用,例如高卢瑞辛。因此,这些结果不仅阐明了赤霉素植物激素,而且还阐明了这种重要谷物农作物中的二萜类植物抗生物素蛋白的生物合成。

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