College of Life Sciences, Shaanxi Normal University, Xi'an, China.
School of Biological and Environmental Engineering, Xi'an University, Xi'an, China.
PLoS One. 2019 Jul 25;14(7):e0220038. doi: 10.1371/journal.pone.0220038. eCollection 2019.
Brassinosteroids (BRs) are essential hormones for plant growth and development. Enzymes DET2 and CYP90 family are responsible for BR biosynthesis in seed plants. Yet, their roles in non-seed plants are unknown. Here, we report the first functional study of DET2 and all 4 CYP90 genes isolated from Selaginella moellendorfii. Sm89026 (SmCPD) belonged to a clade with CYP90A1 (CPD) and CYP90B1 (DWF4) while Sm182839, Sm233379 and Sm157387 formed a distinct clade with CYP90C1 (ROT3) and CYP90D1. SmDET2, SmCPD and Sm157387 were highly expressed in both leaves and strobili while Sm233379 was only highly expressed in the leaves but not strobili, implying their differential functions in a tissue-specific manner in S. moellendorfii. We showed that only SmDET2 and SmCPD completely rescued Arabidopsis det2 and cpd mutant phenotypes, respectively, suggestive of their conserved BR biosynthetic functions. However, neither SmCPD nor other CYP90 genes rescued any other cyp90 mutants. Yet overexpression of Sm233379 altered plant fertility and BR response, which means that Sm233379 is not an ortholog of any CYP90 genes in Arabidopsis but appears to have a BR function in the S. moellendorfii leaves. This function is likely turned off during the development of the strobili. Our results suggest a dramatic functional divergence of CYP90 family in the non-seed plants. While some of them are functionally similar to that of seed plants, the others may be functionally distinct from that of seed plants, shedding light for future exploration.
油菜素甾醇(BRs)是植物生长和发育所必需的激素。在种子植物中,DET2 和 CYP90 家族的酶负责 BR 的生物合成。然而,它们在非种子植物中的作用尚不清楚。在这里,我们报告了首次从卷柏中分离的 DET2 和所有 4 个 CYP90 基因的功能研究。Sm89026(SmCPD)属于与 CYP90A1(CPD)和 CYP90B1(DWF4)同一分支,而 Sm182839、Sm233379 和 Sm157387 则与 CYP90C1(ROT3)和 CYP90D1 形成一个独特的分支。SmDET2、SmCPD 和 Sm157387 在叶片和孢子叶中均高度表达,而 Sm233379 仅在叶片中高度表达而不在孢子叶中表达,这表明它们在组织特异性方面具有不同的功能。我们表明,只有 SmDET2 和 SmCPD 分别完全挽救了拟南芥 det2 和 cpd 突变体的表型,表明它们具有保守的 BR 生物合成功能。然而,SmCPD 或其他 CYP90 基因都不能挽救任何其他 cyp90 突变体。然而,Sm233379 的过表达改变了植物的育性和 BR 反应,这意味着 Sm233379 不是拟南芥中任何 CYP90 基因的同源物,但在卷柏的叶片中似乎具有 BR 功能。这种功能在孢子叶发育过程中可能被关闭。我们的结果表明,CYP90 家族在非种子植物中发生了显著的功能分化。虽然其中一些与种子植物的功能相似,但其他一些可能与种子植物的功能明显不同,为未来的探索提供了线索。