Phenotypic and transcriptional features of Araliaceae species under distinct light environments

IF 3.7 1区 生物学 Q1 Agricultural and Biological Sciences
Y. Niu, Yu-Xin Zhang, Xinfeng Wang, Jun Wen, Zhen‐Hui Wang, Ji Yang, Yu‐Guo Wang, Wen‐Ju Zhang, Zhi‐Ping Song, Linfeng Li
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Abstract

Elucidating how plant species respond to variable light conditions is essential to understanding the ecological adaptation to heterogeneous environments. Plant performance and gene regulatory network underpinning the adaptation have been well documented in heliophytic species. However, it remains largely unclear how the sciophytic plants respond to distinct light conditions. We measured phenotypic and transcriptomic features of four sciophytic (Fatsia japonica, Metapanax delavayi, Heptapleurum arboricola, and Heptapleurum delavayi) and one heliophytic woody species (Tetrapanax papyrifer) of the Araliaceae family under distinct light conditions. Our phenotypic comparisons demonstrate that the four sciophytic species maintain similar photosynthesis efficiency between high light and low light conditions. However, a significantly decreased photosynthesis rate was observed under the low light conditions of the heliophytic species compared with the high light conditions. In addition, our leaf anatomical analyses revealed that, while all five species showed different anatomical structures under distinct light conditions, the sciophytic species possessed a lower degree of phenotypic plasticity relative to the heliophytic species. Further comparisons of the transcriptome profiling showed that differentially expressed genes identified in the five species were functionally related to photosynthesis, secondary metabolites, and other basic metabolisms. In particular, differential regulation of the photosynthesis‐related and photomorphogenesis‐related genes were potentially correlated with the phenotypic responses to the distinct light conditions of the five species. Our study provides evolutionary and ecological perspectives on how the heliophytic and sciophytic woody species respond to shade and sunlight environments.

Abstract Image

不同光照环境下旱生植物的表型和转录特征
阐明植物物种如何应对多变的光照条件,对于了解异质环境的生态适应性至关重要。植物的适应性能和基因调控网络已经在日光植物中得到了很好的记录。然而,人们基本上还不清楚硫华植物是如何对不同的光照条件做出反应的。我们测量了四种硫生植物(Fatsia japonica、Metapanax delavayi、Heptapleurum arboricola 和 Heptapleurum delavayi)和一种日光型木本植物(Tetrapanax papyrifer)在不同光照条件下的表型和转录组特征。我们的表型比较结果表明,在强光和弱光条件下,这四种发根植物保持了相似的光合作用效率。然而,与强光条件相比,低光照条件下日光生物种的光合作用速率明显降低。此外,我们的叶片解剖分析表明,虽然所有五个物种在不同的光照条件下都表现出不同的解剖结构,但与日光型物种相比,硫华型物种的表型可塑性较低。对转录组图谱的进一步比较表明,在这五种物种中发现的差异表达基因在功能上与光合作用、次级代谢产物和其他基本代谢有关。特别是,光合作用相关基因和光形态发生相关基因的不同调控可能与五个物种对不同光照条件的表型反应有关。我们的研究从进化和生态学的角度探讨了日光型和硫华型木本物种如何应对阴暗和阳光环境。
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来源期刊
Journal of Systematics and Evolution
Journal of Systematics and Evolution Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
7.40
自引率
8.10%
发文量
1368
审稿时长
6-12 weeks
期刊介绍: Journal of Systematics and Evolution (JSE, since 2008; formerly Acta Phytotaxonomica Sinica) is a plant-based international journal newly dedicated to the description and understanding of the biological diversity. It covers: description of new taxa, monographic revision, phylogenetics, molecular evolution and genome evolution, evolutionary developmental biology, evolutionary ecology, population biology, conservation biology, biogeography, paleobiology, evolutionary theories, and related subjects.
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