The genome of the vining fern Lygodium microphyllum highlights genomic and functional differences between life phases of an invasive plant

配子体 生物 孢子体 蕨类植物 植物进化 基因组 进化生物学 植物 遗传学 基因 花粉
作者
Jessie A. Pelosi,R. John Davenport,Li‐Yaung Kuo,Levi N. Gray,Anthony J. Dant,Emily H. Kim,Fay‐Wei Li,Katrina M. Dlugosch,Trevor J. Krabbenhoft,W. Brad Barbazuk,Emily B. Sessa
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:122 (39): e2504773122-e2504773122 被引量:2
标识
DOI:10.1073/pnas.2504773122
摘要

Functional and genomic studies on the differences between the gametophyte and sporophyte life phases of plants remain scarce, yet unraveling these dynamics is crucial to understanding the biology of plants and the success of each phase under different conditions. Here, we provide a reference genome for the highly invasive fern Lygodium microphyllum and compare the transcriptomic and epigenomic landscapes of its gametophyte and sporophyte life phases. Under ambient conditions, we found differential regulation and splicing of developmental genes (homeobox and MADS-box clades) may play a role in the genomic determination of the haploid and diploid life stages. We generated a base pair-resolution methylome of a fern gametophyte, and determined that methylation patterns are remarkably similar between vegetative tissues despite their morphological and functional differences. We further explored the physiological and transcriptomic responses of gametophytes and sporophytes to freezing stress, the most likely abiotic factor limiting further range expansion of this invasive species. While controlled by the same genome, we show that life phases and tissues use alternative molecular pathways in response to freezing and greater physiological resilience in the gametophyte life stage to this stressor. Our results underscore the need to incorporate both life phases when developing effective mitigation strategies, as differential responses to environmental stressors between phases reveal opportunities for management approaches (e.g., targeting gametophytes in addition to sporophytes). These genomic resources fill a gap in our understanding of fundamental plant biology and inform invasive species research.
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