Genetic mechanisms of aging in plants: What can we learn from them?

长寿 生物 衰老 表观遗传学 蛋白质稳态 分生组织 进化生物学 端粒 遗传学 基因
作者
В. Н. Попов,Mikhail Syromyatnikov,Claudio Franceschi,Alexey Moskalev,Konstantin V. Krutovsky
出处
期刊:Ageing Research Reviews [Elsevier]
卷期号:77: 101601-101601 被引量:6
标识
DOI:10.1016/j.arr.2022.101601
摘要

Plants hold all records in longevity. Their aging is a complex process. In the presented review, we analyzed published data on various aspects of plant aging with focus on any inferences that could shed a light on aging in animals and help to fight it in human. Plant aging can be caused by many factors, such as telomere depletion, genomic instability, loss of proteostasis, changes in intercellular interaction, desynchronosis, autophagy misregulation, epigenetic changes and others. Plants have developed a number of mechanisms to increase lifespan. Among these mechanisms are gene duplication (“genetic backup”), the active work of telomerases, abundance of meristematic cells, capacity of maintaining the meristems permanently active and continuous activity of phytohormones. Plant aging usually occurs throughout the whole perennial life, but could be also seasonal senescence. Study of causes for seasonal aging can also help to uncover the mechanisms of plant longevity. The influence of different factors such as microbiome communities, glycation, alternative oxidase activity, mitochondrial dysfunction on plant longevity was also reviewed. Adaptive mechanisms of long-lived plants are considered. Further comparative study of the mechanisms underlying longevity of plants is necessary. This will allow us to reach a potentially new level of understanding of the aging process of plants.

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