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细胞程序性死亡逆转:多胺,L 细胞死亡程序中 U 型转弯的效应物。

Programmed Cell Death Reversal: Polyamines, Effectors of the U-Turn from the Program of Death in L.

机构信息

Department of Biological, Geological and Environmental Sciences, University of Bologna, 40126 Bologna, Italy.

Interdepartmental Centre for Agri-Food Industrial Research, University of Bologna, 40126 Bologna, Italy.

出版信息

Int J Mol Sci. 2024 May 15;25(10):5386. doi: 10.3390/ijms25105386.

Abstract

This review describes a 50-year-long research study on the characteristics of L. tuber dormancy, its natural release and programmed cell death (PCD), as well as on the ability to change the PCD so as to return the tuber to a life program. The experimentation on the tuber over the years is due to its particular properties of being naturally deficient in polyamines (PAs) during dormancy and of immediately reacting to transplants by growing and synthesizing PAs. This review summarizes the research conducted in a unicum body. As in nature, the tuber tissue has to furnish its storage substances to grow vegetative buds, whereby its destiny is PCD. The review's main objective concerns data on PCD, the link with free and conjugated PAs and their capacity to switch the destiny of the tuber from a program of death to one of new life. PCD reversibility is an important biological challenge that is verified here but not reported in other experimental models. Important aspects of PA features are their capacity to change the cell functions from storage to meristematic ones and their involvement in amitosis and differentiation. Other roles reported here have also been confirmed in other plants. PAs exert multiple diverse roles, suggesting that they are not simply growth substances, as also further described in other plants.

摘要

这篇综述描述了一项长达 50 年的研究,该研究探讨了块茎休眠、自然释放和程序性细胞死亡(PCD)的特征,以及改变 PCD 以恢复块茎生命程序的能力。多年来对块茎的实验研究,是基于其在休眠期间天然缺乏多胺(PAs)以及在移植后立即通过生长和合成 PAs 做出反应的特殊特性。本文总结了在一个独特体中进行的研究。在自然界中,块茎组织必须为生长营养芽提供其储存物质,从而其命运就是 PCD。综述的主要目的是关注与 PCD、与游离和结合 PAs 的联系以及它们将块茎的命运从死亡程序切换到新生命程序的能力相关的数据。PCD 的可逆性是一个重要的生物学挑战,在这里得到了验证,但在其他实验模型中没有报道。PA 特性的重要方面是它们能够将细胞功能从储存转变为分生组织,并参与无丝分裂和分化。本文还报道了其他在其他植物中得到证实的作用。多胺发挥着多种不同的作用,这表明它们不仅仅是生长物质,正如在其他植物中进一步描述的那样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8384/11121942/dfe4edc40d18/ijms-25-05386-g001.jpg

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