多细胞生物
短暂键
竞赛(生物学)
生态网络
生态学
资源(消歧)
网络动力学
网络结构
编队网络
比例(比率)
生物
复杂网络
计算机科学
分布式计算
地理
计算机网络
数学
细胞
地图学
遗传学
生态系统
离散数学
万维网
作者
Mark D. Fricker,Luke Heaton,Nick S. Jones,Lynne Boddy
标识
DOI:10.1128/microbiolspec.funk-0033-2017
摘要
ABSTRACT The characteristic growth pattern of fungal mycelia as an interconnected network has a major impact on how cellular events operating on a micron scale affect colony behavior at an ecological scale. Network structure is intimately linked to flows of resources across the network that in turn modify the network architecture itself. This complex interplay shapes the incredibly plastic behavior of fungi and allows them to cope with patchy, ephemeral resources, competition, damage, and predation in a manner completely different from multicellular plants or animals. Here, we try to link network structure with impact on resource movement at different scales of organization to understand the benefits and challenges of organisms that grow as connected networks. This inevitably involves an interdisciplinary approach whereby mathematical modeling helps to provide a bridge between information gleaned by traditional cell and molecular techniques or biophysical approaches at a hyphal level, with observations of colony dynamics and behavior at an ecological level.
科研通智能强力驱动
Strongly Powered by AbleSci AI