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绘制光照强度对……的跨代遗传结构的影响

Mapping the Influence of Light Intensity on the Transgenerational Genetic Architecture of .

作者信息

Mei Jie, Che Jincan, Shi Yunzhu, Fang Yudian, Wu Rongling, Zhu Xuli

机构信息

Center for Computational Biology, College of Biological Sciences and Technology, Beijing Forestry University, Beijing 100083, China.

National Engineering Research Center of Tree Breeding and Ecological Restoration, Beijing Forestry University, Beijing 100083, China.

出版信息

Curr Issues Mol Biol. 2024 Jul 29;46(8):8148-8169. doi: 10.3390/cimb46080482.

Abstract

Light is a crucial environmental factor that influences the phenotypic development of plants. Despite extensive studies on the physiological, biochemical, and molecular mechanisms of the impact of light on phenotypes, genetic investigations regarding light-induced transgenerational plasticity in remain incomplete. In this study, we used as the material, then gathered phenotypic data regarding leaf number and plant height under high- and low-light conditions from two generations. In addition to the developed genotype data, a functional mapping model was used to locate a series of significant single-nucleotide polymorphisms (SNPs). Under low-light conditions, a noticeable adaptive change in the phenotype of leaf number in the second generation suggests the presence of transgenerational genetic effects in under environmental stress. Under different lighting treatments, 33 and 13 significant genes associated with transgenerational inheritance were identified, respectively. These genes are largely involved in signal transduction, technical hormone pathways, light responses, and the regulation of organ development. Notably, genes identified under high-light conditions more significantly influence plant development, whereas those identified under low-light conditions focus more on responding to external environmental stimuli.

摘要

光是影响植物表型发育的关键环境因素。尽管对光影响表型的生理、生化和分子机制进行了广泛研究,但关于光诱导的跨代可塑性的遗传研究仍不完整。在本研究中,我们以[具体材料]为材料,然后收集了两代在高光和低光条件下关于叶片数量和株高的表型数据。除了已开发的基因型数据外,还使用功能定位模型来定位一系列显著的单核苷酸多态性(SNP)。在低光条件下,第二代叶片数量表型出现明显的适应性变化,表明[具体植物]在环境胁迫下存在跨代遗传效应。在不同光照处理下,分别鉴定出33个和13个与跨代遗传相关的显著基因。这些基因主要参与信号转导、技术激素途径、光反应和器官发育的调控。值得注意的是,在高光条件下鉴定出的基因对植物发育的影响更为显著,而在低光条件下鉴定出的基因则更侧重于对外界环境刺激的响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9cd/11352948/34e6d0e69430/cimb-46-00482-g001.jpg

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