Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystem, College of the Environment and Ecology, Xiamen University, Xiamen, Fujian, 361102, China.
Graduate College of Biomedical Sciences, Western University of Health Sciences, Pomona, CA, 91766, USA.
Sci Rep. 2018 Jan 15;8(1):770. doi: 10.1038/s41598-018-19236-x.
Mangrove plants adapt to coastal tidal mudflats with specially evolved viviparity seed development. However, very little is known about the genetic and molecular mechanisms of mangrove viviparity. Here, we tested a hypothesis that plant hormone abscisic acid (ABA) plays a significant role in precocious germination of viviparous Kandelia obovata seeds by exogenous applications. Through transcriptome analysis of ABA treated seeds, it was found that ABA repressed mangrove fruit growth and development, and there were thousands of genes differentially expressed. As a result, dynamics of the pathways were dramatically altered. In particular, "Plant hormone signal transduction" and "MAPK signaling pathway" were represented significantly. Among differentially expressed genes, some key genes of ABA signal transduction were induced, while ABA biosynthesis genes were repressed. Take ABI1 and ABI2, key negative regulators in ABA signal pathway, as examples, homologous alignment and a phylogenetic tree in various species showed that ABI1 and ABI2 are highly conserved among various species. The functional similarity of these genes was confirmed by transgenic work in Arabidopsis. Taken together, ABA inhibited mangrove viviparity, but mangroves developed a mechanism to prevent accidently increase of ABA in the harsh environment for maintaining viviparous reproductive strategy.
红树植物通过特化的胎生现象来适应沿海潮汐淤泥环境。然而,对于红树胎生的遗传和分子机制,我们知之甚少。在这里,我们通过外源施加脱落酸(ABA)来检验一个假设,即植物激素脱落酸(ABA)在红树胎生种子的早熟萌发中起着重要作用。通过对 ABA 处理的种子进行转录组分析,发现 ABA 抑制了红树果实的生长和发育,有数千个基因差异表达。结果,这些途径的动态发生了显著改变。特别是,“植物激素信号转导”和“MAPK 信号通路”显著代表。在差异表达基因中,一些 ABA 信号转导的关键基因被诱导,而 ABA 生物合成基因则被抑制。以 ABA 信号通路中的关键负调控因子 ABI1 和 ABI2 为例,在不同物种中的同源性比对和系统发育树显示,ABI1 和 ABI2 在各种物种中高度保守。这些基因的功能相似性通过在拟南芥中的转基因工作得到了证实。总之,ABA 抑制了红树胎生,但红树为了维持胎生的生殖策略,在恶劣的环境中发展出了一种机制来防止 ABA 意外增加。