Bertini Laura, Proietti Silvia, Fongaro Benedetta, Holfeld Aleš, Picotti Paola, Falconieri Gaia Salvatore, Bizzarri Elisabetta, Capaldi Gloria, Polverino de Laureto Patrizia, Caruso Carla
Department of Ecological and Biological Sciences, University of Tuscia, 01100 Viterbo, Italy.
Department of Pharmaceutical and Pharmacological Sciences, University of Padova, 35100 Padova, Italy.
Plants (Basel). 2022 Nov 21;11(22):3176. doi: 10.3390/plants11223176.
During evolution, plants have faced countless stresses of both biotic and abiotic nature developing very effective mechanisms able to perceive and counteract adverse signals. The biggest challenge is the ability to fine-tune the trade-off between plant growth and stress resistance. The Antarctic plant has managed to survive the adverse environmental conditions of the white continent and can be considered a wonderful example of adaptation to prohibitive conditions for millions of other plant species. Due to the progressive environmental change that the Antarctic Peninsula has undergone over time, a more comprehensive overview of the metabolic features of becomes particularly interesting to assess its ability to respond to environmental stresses. To this end, a differential proteomic approach was used to study the response of to different environmental cues. Many differentially expressed proteins were identified highlighting the rewiring of metabolic pathways as well as defense responses. Finally, a different modulation of oxidative stress response between different environmental sites was observed. The data collected in this paper add knowledge on the impact of environmental stimuli on plant metabolism and stress response by providing useful information on the trade-off between plant growth and defense mechanisms.
在进化过程中,植物面临着无数生物和非生物性质的胁迫,从而形成了非常有效的机制来感知和应对不利信号。最大的挑战是如何精确调节植物生长与抗逆性之间的权衡。南极植物成功地在这片白色大陆的恶劣环境条件下生存下来,堪称数百万其他植物物种难以企及的适应范例。由于南极半岛长期以来经历的环境变化,更全面地了解其代谢特征对于评估其应对环境胁迫的能力尤为有趣。为此,采用差异蛋白质组学方法研究其对不同环境线索的反应。鉴定出许多差异表达蛋白,突出了代谢途径的重新布线以及防御反应。最后,观察到不同环境地点之间氧化应激反应的不同调节。本文收集的数据通过提供关于植物生长与防御机制之间权衡的有用信息,增加了对环境刺激对植物代谢和应激反应影响的认识。