生物
调节器
遗传学
表型
调节顺序
抑制因子
调节基因
基因
等位基因
数量性状位点
干细胞
计算生物学
基因表达调控
基因调控网络
基因表达
作者
Xingang Wang,Lyndsey Aguirre,Daniel Rodríguez-Leal,Anat Hendelman,Matthias Benoit,Zachary B. Lippman
出处
期刊:Nature plants
[Nature Portfolio]
日期:2021-04-12
卷期号:7 (4): 419-427
被引量:153
标识
DOI:10.1038/s41477-021-00898-x
摘要
Cis-regulatory mutations underlie important crop domestication and improvement traits1,2. However, limited allelic diversity has hindered functional dissection of the large number of cis-regulatory elements and their potential interactions, thereby precluding a deeper understanding of how cis-regulatory variation impacts traits quantitatively. Here, we engineered over 60 promoter alleles in two tomato fruit size genes3,4 to characterize cis-regulatory sequences and study their functional relationships. We found that targeted mutations in conserved promoter sequences of SlCLV3, a repressor of stem cell proliferation5,6, have a weak impact on fruit locule number. Pairwise combinations of these mutations mildly enhance this phenotype, revealing additive and synergistic relationships between conserved regions and further suggesting even higher-order cis-regulatory interactions within the SlCLV3 promoter. In contrast, SlWUS, a positive regulator of stem cell proliferation repressed by SlCLV3 (refs. 5,6), is more tolerant to promoter perturbations. Our results show that complex interplay among cis-regulatory variants can shape quantitative variation, and suggest that empirical dissections of this hidden complexity can guide promoter engineering to predictably modify crop traits.
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