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两栖植物毛茛 heterophylly 的分子基础。

A molecular basis behind heterophylly in an amphibious plant, Ranunculus trichophyllus.

机构信息

School of Biological Sciences, Seoul National University, Seoul, Korea.

Department of Chemistry, Seoul National University, Seoul, Korea.

出版信息

PLoS Genet. 2018 Feb 15;14(2):e1007208. doi: 10.1371/journal.pgen.1007208. eCollection 2018 Feb.

Abstract

Ranunculus trichophyllus is an amphibious plant that produces thin and cylindrical leaves if grown under water but thick and broad leaves if grown on land. We found that such heterophylly is widely controlled by two plant hormones, abscisic acid (ABA) and ethylene, which control terrestrial and aquatic leaf development respectively. Aquatic leaves produced higher levels of ethylene but lower levels of ABA than terrestrial leaves. In aquatic leaves, their distinct traits with narrow shape, lack of stomata, and reduced vessel development were caused by EIN3-mediated overactivation of abaxial genes, RtKANADIs, and accompanying with reductions of STOMAGEN and VASCULAR-RELATED NAC-DOMAIN7 (VDN7). In contrast, in terrestrial leaves, ABI3-mediated activation of the adaxial genes, RtHD-ZIPIIIs, and STOMAGEN and VDN7 established leaf polarity, and stomata and vessel developments. Heterophylly of R.trichophyllus could be also induced by external cues such as cold and hypoxia, which is accompanied with the changes in the expression of leaf polarity genes similar to aquatic response. A closely-related land plant R. sceleratus did not show such heterophyllic responses, suggesting that the changes in the ABA/ethylene signaling and leaf polarity are one of key evolutionary steps for aquatic adaptation.

摘要

毛茛泽泻是一种两栖植物,如果在水下生长,它会产生细长圆柱形的叶子,如果在陆地上生长,则会产生厚而宽的叶子。我们发现,这种异形叶性广泛受到两种植物激素,脱落酸(ABA)和乙烯的控制,它们分别控制陆生和水生叶片的发育。水生叶片产生的乙烯水平高于陆生叶片,而 ABA 水平则低于陆生叶片。在水生叶片中,EIN3 介导的下表皮基因 RtKANADIs 的过度激活,以及伴随而来的 STOMAGEN 和 VASCULAR-RELATED NAC-DOMAIN7(VDN7)的减少,导致叶片具有狭窄的形状、缺乏气孔和减少导管发育等明显特征。相比之下,在陆生叶片中,ABI3 介导的上表皮基因 RtHD-ZIPIIIs 的激活,以及 STOMAGEN 和 VDN7 的表达,建立了叶片的极性,以及气孔和导管的发育。外部环境因素,如寒冷和缺氧,也可以诱导毛茛泽泻的异形叶性,这伴随着与水生反应相似的叶片极性基因表达的变化。一种亲缘关系密切的陆地植物,石龙芮,并没有表现出这种异形叶性反应,这表明 ABA/乙烯信号和叶片极性的变化是水生适应的关键进化步骤之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2ee/5831646/e018400be233/pgen.1007208.g001.jpg

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