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转录组和关联图谱分析揭示了响应干旱胁迫的功能基因。 (原英文文本表述不完整,推测完整表述可能是在某个特定物种中,这里根据推测补充完整了句子使其更符合逻辑)

Transcriptome and association mapping revealed functional genes respond to drought stress in .

作者信息

Song Fangyuan, Zhou Jiaxuan, Quan Mingyang, Xiao Liang, Lu Wenjie, Qin Shitong, Fang Yuanyuan, Wang Dan, Li Peng, Du Qingzhang, El-Kassaby Yousry A, Zhang Deqiang

机构信息

National Engineering Laboratory for Tree Breeding, College of Biological Sciences and Technology, Beijing Forestry University, Beijing, China.

Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants, Ministry of Education, College of Biological Sciences and Technology, Beijing Forestry University, Beijing, China.

出版信息

Front Plant Sci. 2022 Jul 29;13:829888. doi: 10.3389/fpls.2022.829888. eCollection 2022.

Abstract

Drought frequency and severity are exacerbated by global climate change, which could compromise forest ecosystems. However, there have been minimal efforts to systematically investigate the genetic basis of the response to drought stress in perennial trees. Here, we implemented a systems genetics approach that combines co-expression analysis, association genetics, and expression quantitative trait nucleotide (eQTN) mapping to construct an allelic genetic regulatory network comprising four key regulators (, , , and ) under drought stress conditions. Furthermore, Hap_01PtoeIF-2B, a superior haplotype associated with the net photosynthesis, was revealed through allelic frequency and haplotype analysis. In total, 75 candidate genes related to drought stress were identified through transcriptome analyses of five cultivars (, , , , and ). Through association mapping, we detected 92 unique SNPs from 38 genes and 104 epistatic gene pairs that were associated with six drought-related traits by association mapping. eQTN mapping unravels drought stress-related gene loci that were significantly associated with the expression levels of candidate genes for drought stress. In summary, we have developed an integrated strategy for dissecting a complex genetic network, which facilitates an integrated population genomics approach that can assess the effects of environmental threats.

摘要

干旱频率和严重程度因全球气候变化而加剧,这可能会危及森林生态系统。然而,对于系统研究多年生树木对干旱胁迫响应的遗传基础,人们所做的努力微乎其微。在此,我们采用了一种系统遗传学方法,该方法结合了共表达分析、关联遗传学和表达定量性状核苷酸(eQTN)定位,以构建一个在干旱胁迫条件下由四个关键调控因子(、、、和)组成的等位基因遗传调控网络。此外,通过等位基因频率和单倍型分析,揭示了与净光合作用相关的优良单倍型Hap_01PtoeIF-2B。通过对五个品种(、、、和)的转录组分析,总共鉴定出75个与干旱胁迫相关的候选基因。通过关联定位,我们从38个基因中检测到92个独特的单核苷酸多态性(SNP)以及104个上位性基因对,这些与六个干旱相关性状存在关联。eQTN定位揭示了与干旱胁迫候选基因表达水平显著相关的干旱胁迫相关基因位点。总之,我们开发了一种剖析复杂遗传网络的综合策略,这有助于采用综合群体基因组学方法来评估环境威胁的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09bc/9372527/242962a2d598/fpls-13-829888-g001.jpg

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