Gene network analysis of senescence-associated genes in annual plants and comparative assessment of aging in perennials and animals

Q2 Medicine
Hou-Ling Wang , Hongwei Guo , Zhonghai Li
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引用次数: 4

Abstract

Aging, resulting from degenerative changes in cell metabolism, affects fecundity and longevity. To increase lifespan in animals or plants, manipulation in gene modification or pharmacology intervention has been proved to be as feasible approaches. NAD+, spermidine, and rapamycin, as well as genetic editing, bring to light at the tunnel end for the longevity in animals. In plants, the existing evidence suggests that they may share common aging signaling pathway with animals. However, as sessile organisms, plants got to cope with complex environmental changes and evolved specific signaling pathways. Here, we reviewed the latest research advances in plant aging to make a gene network analysis of senescence-associated genes in annual plant and perform a comparative assessment of aging in perennials as well as animals.

一年生植物衰老相关基因的基因网络分析及多年生植物和动物衰老的比较评估
衰老是由细胞代谢的退行性变化引起的,影响生育能力和寿命。为了延长动物或植物的寿命,操纵基因修饰或药物干预已被证明是可行的方法。NAD+、亚精胺和雷帕霉素,以及基因编辑,揭示了动物长寿的隧道尽头。在植物中,现有证据表明它们可能与动物共享相同的衰老信号通路。然而,作为无根生物,植物必须应对复杂的环境变化,并进化出特定的信号通路。本文综述了植物衰老的最新研究进展,对一年生植物衰老相关基因进行了基因网络分析,并对多年生植物和动物的衰老进行了比较评估。
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来源期刊
Translational Medicine of Aging
Translational Medicine of Aging Medicine-Geriatrics and Gerontology
CiteScore
5.30
自引率
0.00%
发文量
2
审稿时长
103 days
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