生物
表型可塑性
适应(眼睛)
束毛藻
表型
转录组
代谢途径
氮同化
遗传学
进化生物学
基因
固氮
基因表达
重氮
神经科学
细菌
作者
Nathan G. Walworth,Michael Lee,Fei‐Xue Fu,David A. Hutchins,Eric A. Webb
标识
DOI:10.1073/pnas.1605202113
摘要
Significance The free-living cyanobacterium Trichodesmium is an important nitrogen-fixer in the global oceans, yet virtually nothing is known about its molecular evolution to increased CO 2 . Here we show that Trichodesmium can fix a plastic, short-term response upon long-term adaptation, potentially through genetic assimilation. We provide transcriptional evidence for molecular mechanisms that parallel the fixation of the plastic phenotype, thereby demonstrating an important evolutionary capability in Trichodesmium CO 2 adaptation. Transcriptional shifts involve transposition and other regulatory mechanisms (sigma factors) that control a variety of metabolic pathways, suggesting alterations in upstream regulation to be important under genetic assimilation. Together, these data highlight potential biochemical evidence of genetic assimilation in a keystone marine N 2 -fixer, with broad implications for microbial evolution and biogeochemistry.
科研通智能强力驱动
Strongly Powered by AbleSci AI