Prinzessin Therese von Bayern Lehrstuhl für Systematik, Biodiversität & Evolution der Pflanzen, Ludwig-Maximilans-Universität München, Menzinger Str. 67, Munich, 80638, Germany.
Botanischer Garten München-Nymphenburg Und Botanische Staatssammlung München, Staatliche Naturwissenschaftliche Sammlungen Bayerns, Menzinger Str. 65, Munich, 80638, Germany.
BMC Genomics. 2024 Jul 13;25(1):688. doi: 10.1186/s12864-024-10553-2.
The co-occurrence of C and CAM photosynthesis in a single species seems to be unusual and rare. This is likely due to the difficulty in effectively co-regulating both pathways. Here, we conducted a comparative transcriptomic analysis of leaves and cotyledons of the C-like species Sesuvium sesuvioides (Aizoaceae) using RNA-seq.
When compared to cotyledons, phosphoenolpyruvate carboxylase 4 (PEPC4) and some key C genes were found to be up-regulated in leaves. During the day, the expression of NADP-dependent malic enzyme (NADP-ME) was significantly higher in cotyledons than in leaves. The titratable acidity confirmed higher acidity in the morning than in the previous evening indicating the induction of weak CAM in cotyledons by environmental conditions. Comparison of the leaves of S. sesuvioides (C-like) and S. portulacastrum (C) revealed that PEPC1 was significantly higher in S. sesuvioides, while PEPC3 and PEPC4 were up-regulated in S. portulacastrum. Finally, potential key regulatory elements involved in the C-like and CAM pathways were identified.
These findings provide a new species in which C-like and CAM co-occur and raise the question if this phenomenon is indeed so rare or just hard to detect and probably more common in succulent C lineages.
在单个物种中同时存在 C 型和 CAM 光合作用似乎是不寻常和罕见的。这可能是由于有效调节这两种途径的困难。在这里,我们使用 RNA-seq 对类似 C 型物种 Sesuvium sesuvioides(马齿苋科)的叶片和子叶进行了比较转录组分析。
与子叶相比,磷酸烯醇丙酮酸羧化酶 4(PEPC4)和一些关键的 C 基因在叶片中上调。在白天,NADP 依赖性苹果酸酶(NADP-ME)在子叶中的表达明显高于叶片。可滴定酸度证实,早晨的酸度高于前一天晚上,表明环境条件诱导子叶中弱 CAM 的发生。比较 S. sesuvioides(C 型)和 S. portulacastrum(C)的叶片发现,S. sesuvioides 中的 PEPC1 明显较高,而 S. portulacastrum 中的 PEPC3 和 PEPC4 上调。最后,鉴定了参与 C 型和 CAM 途径的潜在关键调节元件。
这些发现提供了一个同时存在 C 型和 CAM 的新物种,并提出了一个问题,即这种现象是否真的如此罕见,还是只是难以检测,可能在肉质 C 谱系中更为常见。