植物信号系统在响应关键天体物理因素中的作用:增加的电离辐射、近零磁场和微重力。

The role of signaling systems of plant in responding to key astrophysical factors: increased ionizing radiation, near-null magnetic field and microgravity.

作者信息

Grinberg Marina, Vodeneev Vladimir

机构信息

Lobachevsky State University of Nizhny Novgorod, Nizhny Novgorod, Russia.

出版信息

Planta. 2025 Jan 11;261(2):31. doi: 10.1007/s00425-025-04610-7.

Abstract

Plants will form the basis of artificial ecosystems in space exploration and the creation of bases on other planets. Astrophysical factors, such as ionizing radiation (IR), magnetic fields (MF) and gravity, can significantly affect the growth and development of plants beyond Earth. However, to date, the ways in which these factors influence plants remain largely unexplored. The review shows that, despite the lack of specialized receptors, plants are able to perceive changes in astrophysical factors. Potential mechanisms for perceiving changes in IR, MF and gravity levels are considered. The main pathway for inducing effects in plants is caused by primary physicochemical reactions and change in the levels of secondary messengers, including ROS and Ca. The presence of common components, including secondary messengers, in the chain of responses to astrophysical factors determines the complex nature of the response under their combined action. The analysis performed and the proposed hypothesis will help in planning space missions, as well as identifying the most important areas of research in space biology.

摘要

植物将成为太空探索以及在其他星球建立基地过程中人工生态系统的基础。天体物理因素,如电离辐射(IR)、磁场(MF)和重力,会对地球以外植物的生长和发育产生重大影响。然而,迄今为止,这些因素影响植物的方式在很大程度上仍未得到探索。该综述表明,尽管植物缺乏专门的受体,但它们能够感知天体物理因素的变化。文中考虑了感知IR、MF和重力水平变化的潜在机制。在植物中诱导效应的主要途径是由初级物理化学反应以及包括活性氧(ROS)和钙在内的二级信使水平的变化引起的。在对天体物理因素的反应链中存在包括二级信使在内的共同成分,这决定了它们共同作用下反应的复杂性。所进行的分析和提出的假设将有助于规划太空任务,以及确定空间生物学中最重要的研究领域。

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