健康并不总是值得的:成功的风景

IF 1.8 4区 生物学 Q3 BIOPHYSICS
Trung V. Phan, Gao Wang, Tuan K. Do, Ioannis G. Kevrekidis, Sarah Amend, Emma Hammarlund, Ken Pienta, Joel Brown, Liyu Liu, Robert H. Austin
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引用次数: 4

摘要

景观在生物学的许多领域都扮演着重要的角色,其中生物的生命深深地纠缠在一起。在这里,我们讨论进化生物学中的一种景观形式,它考虑了(1)初始生长速率,(2)突变率,(3)生物资源消耗,以及(4)资源随时间的循环变化。作为这四个参数的函数,存活生物体的长期平衡数量形成了我们所说的成功景观,我们认为这种景观在质量上不同于适应度景观,适应度景观通常不包括突变或资源消耗/将基因组映射到最终存活数量的变化。虽然我们的分析纯粹是理论上的,但我们相信,通过对资源退化、突变和不受控制的细胞生长之间的相互作用的更深入了解,这些结果可能与我们未来如何治疗癌症等疾病有很强的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

It doesn’t always pay to be fit: success landscapes

It doesn’t always pay to be fit: success landscapes

Landscapes play an important role in many areas of biology, in which biological lives are deeply entangled. Here we discuss a form of landscape in evolutionary biology which takes into account (1) initial growth rates, (2) mutation rates, (3) resource consumption by organisms, and (4) cyclic changes in the resources with time. The long-term equilibrium number of surviving organisms as a function of these four parameters forms what we call a success landscape, a landscape we would claim is qualitatively different from fitness landscapes which commonly do not include mutations or resource consumption/changes in mapping genomes to the final number of survivors. Although our analysis is purely theoretical, we believe the results have possibly strong connections to how we might treat diseases such as cancer in the future with a deeper understanding of the interplay between resource degradation, mutation, and uncontrolled cell growth.

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来源期刊
Journal of Biological Physics
Journal of Biological Physics 生物-生物物理
CiteScore
3.00
自引率
5.60%
发文量
20
审稿时长
>12 weeks
期刊介绍: Many physicists are turning their attention to domains that were not traditionally part of physics and are applying the sophisticated tools of theoretical, computational and experimental physics to investigate biological processes, systems and materials. The Journal of Biological Physics provides a medium where this growing community of scientists can publish its results and discuss its aims and methods. It welcomes papers which use the tools of physics in an innovative way to study biological problems, as well as research aimed at providing a better understanding of the physical principles underlying biological processes.
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