ELUCIDATION OF CELLULAR MECHANISMS OF AUTOPHAGY INVOLVEMENT IN PLANT ADAPTATION TO MICROGRAVITY CONDITIONS

Pub Date : 2023-04-28 DOI:10.15407/knit2023.02.022
A. Yemets, S. Plokhovska, R. Shadrina, O. Kravets, Y. Blume
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Abstract

It was shown that clinostating conditions induce autophagy without increasing of programmed cell death (PCD) index in the epidermal cells of the root apex of A. thaliana seedlings. After the phase of activation of autophagy, its regulatory weakening occurs, which probably indicates adaptive changes to the conditions of clinostating. The induction of autophagy correlates with an increase in the expression levels of atg8 genes, some of which (atg8e and atg8i) may be involved in the implementation of autophagy under the simulated microgravity conditions. The transcriptional activity of cytoskeleton genes involved in the implementation of stress-induced autophagy, in particular α- and β-tubulin genes, was analyzed. Joint expression of α- and β-tubulin genes and atg8 under the simulated microgravity conditions was revealed. These results illustrate the role of the cytoskeleton in the development of microgravity-induced autophagy and make it possible to identify genes specific to this type of stress. The induction of autophagy and PСD was studied under the action of gamma irradiation as a concomitant factor of space flights, as well as under the combined action of acute irradiation and clinostating. Gamma irradiation in doses equivalent to those in the spacecraft cabin (1 - 6 Gy) induced dose-dependent changes in the topology and cytogenetic state of the root apical meristem, as well as slightly inhibited of the early plant development. In the meristem, heterogeneity increased, PCD indexes, mainly proliferative death and autophagy, increased. With the combined action of gamma irradiation (2 Gy) and clinostating, the density of autophagosomes in the epidermal cell root apices of 6-day-old seedlings increased (24 hours after irradiation), and after 4 days it decreased, compared to the non-irradiated control.
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自噬参与植物适应微重力条件的细胞机制的阐明
结果表明,固温条件诱导拟南芥幼苗根尖表皮细胞自噬,但不增加其程序性细胞死亡(PCD)指数。自噬激活期后,其调控减弱,这可能表明对气候条件的适应性改变。自噬的诱导与at8基因表达水平的增加有关,其中一些基因(atg8e和atg8i)可能参与了模拟微重力条件下自噬的实施。我们分析了参与应力诱导自噬的细胞骨架基因的转录活性,特别是α-和β-微管蛋白基因。揭示了模拟微重力条件下α-、β-微管蛋白基因和atg8的联合表达。这些结果说明了细胞骨架在微重力诱导的自噬发展中的作用,并使鉴定这种应激类型的特异性基因成为可能。研究了航天飞行伴随因素γ辐照以及急性辐照和低温联合作用下自噬和PСD的诱导作用。与宇宙飞船舱内辐射剂量相当(1 - 6 Gy)的伽马辐照诱导了根尖分生组织拓扑结构和细胞遗传学状态的剂量依赖性变化,并轻微抑制了植物早期发育。分生组织异质性增加,PCD指标增加,主要是增生性死亡和自噬。在γ辐射(2 Gy)和斜凝剂的联合作用下,6 d龄幼苗表皮细胞根尖的自噬体密度在照射后24小时呈上升趋势,照射后4 d呈下降趋势。
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