Department of Biology, National Changhua University of Education, Changhua, 500, Taiwan.
Sci Rep. 2018 Jul 6;8(1):10270. doi: 10.1038/s41598-018-28627-z.
Phenotypic plasticity is the ability of a single genotype of an organism to exhibit variable phenotypes in response to fluctuating environments. It plays a crucial role in their evolutionary success. In natural environments, the importance of interactions between microalgae and other microorganisms is generally well appreciated, but the effects of these interactions on algal phenotypic plasticity has not been investigated. In this study, it revealed that indole-3-acetic acid (IAA), the most common naturally occurring plant hormone, can exert stimulatory at low concentrations and inhibitory effects at high concentrations on the growth of the green alga Desmodesmus. The morphological characteristics of Desmodesmus changed drastically under exposure to IAA compared with the algae in the control environment. The proportion of Desmodesmus unicells in monocultures increased with the IAA concentration, and these unicells exhibited less possibility of sedimentation than large cells. Furthermore, we discovered that lipid droplets accumulated in algal cells grown at a high IAA concentration. Results also demonstrated that the presence of algal competitor further stimulated inducible morphological changes in Desmodesmus populations. The relative abundance of competitors influenced the proportion of induced morphological changes. The results indicate that phenotypic plasticity in microalgae can be a response to fluctuating environments, in which algae optimize the cost-benefit ratio.
表型可塑性是指生物体的单一基因型在应对环境波动时表现出可变表型的能力。它在其进化成功中起着至关重要的作用。在自然环境中,通常很好地理解微藻与其他微生物之间相互作用的重要性,但这些相互作用对藻类表型可塑性的影响尚未得到研究。在这项研究中,揭示了吲哚-3-乙酸(IAA),最常见的天然植物激素,在低浓度下对绿色藻类小球藻的生长有刺激作用,而在高浓度下则有抑制作用。与对照环境中的藻类相比,IAA 暴露下小球藻的形态特征发生了巨大变化。在单培养物中,小球藻的单细胞比例随着 IAA 浓度的增加而增加,并且这些单细胞比大细胞更不容易沉淀。此外,我们发现,在高 IAA 浓度下生长的藻类细胞中会积累脂质滴。结果还表明,藻类竞争者的存在进一步刺激了小球藻种群的诱导形态变化。竞争者的相对丰度影响诱导形态变化的比例。结果表明,微藻的表型可塑性可以是对环境波动的一种反应,藻类在其中优化成本效益比。