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Transcriptome and functional analyses of phenotypic plasticity in sea grape Caulerpa okamuraeopen access

Authors
Kang, JiwonKwak, Yong SungKim, Eun-JeongGwon, YeongjinChoi, Han GilEyun, Seong-Il
Issue Date
May-2024
Publisher
WILEY
Citation
Physiologia plantarum, v.176, no.3
Journal Title
Physiologia plantarum
Volume
176
Number
3
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/73956
DOI
10.1111/ppl.14339
ISSN
0031-9317
1399-3054
Abstract
Caulerpa is a marine green macroalga distinguished by a large single cell with multiple nuclei. It also exhibits remarkable morphological intraspecies variations, in response to diverse environmental types. However, the molecular mechanisms underlying this phenotypic plasticity remain poorly understood. In this work, we compare the transcriptomes of Caulerpa okamurae Weber Bosse, 1897 displaying altered phenotypes of cultivation and natural phenotypes and investigate significantly regulated genes and their biological functions using differential expression analyses. We observe light-harvesting complex upregulation and cellular framework stability downregulation in altered phenotypes compared to the natural phenotypes. Intertidal macrophytes reduce light capture to avoid photodamage and regulate their morphology to protect against wave damage. In contrast, the lower light conditions and the cultivation environment augment light capture and increase a morphology prioritizing light trapping. Moreover, the addition of simulated wave-sweeping stimuli induces a return to the natural morphology under high-light conditions, showing how mechanical stress affects morphological organization in C. okamurae. We provide detailed gene expression patterns in C. okamurae under varying light intensities and water conditions, suggesting a distinct influence on its morphological traits. © 2024 The Authors. Physiologia Plantarum published by John Wiley & Sons Ltd on behalf of Scandinavian Plant Physiology Society.
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자연과학대학 (생명과학과)
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