Kwon Choon-Tak, Tang Lingli, Wang Xingang, Gentile Iacopo, Hendelman Anat, Robitaille Gina, Van Eck Joyce, Xu Cao, Lippman Zachary B
School of Biological Sciences, Cold Spring Harbor Laboratory, Cold Spring Harbor, New York, NY, USA.
Department of Horticultural Biotechnology, Kyung Hee University, Yongin, Republic of Korea.
Nat Plants. 2022 Apr;8(4):346-355. doi: 10.1038/s41477-022-01118-w. Epub 2022 Mar 28.
Gene duplications are a hallmark of plant genome evolution and a foundation for genetic interactions that shape phenotypic diversity. Compensation is a major form of paralogue interaction but how compensation relationships change as allelic variation accumulates is unknown. Here we leveraged genomics and genome editing across the Solanaceae family to capture the evolution of compensating paralogues. Mutations in the stem cell regulator CLV3 cause floral organs to overproliferate in many plants. In tomato, this phenotype is partially suppressed by transcriptional upregulation of a closely related paralogue. Tobacco lost this paralogue, resulting in no compensation and extreme clv3 phenotypes. Strikingly, the paralogues of petunia and groundcherry nearly completely suppress clv3, indicating a potent ancestral state of compensation. Cross-species transgenic complementation analyses show that this potent compensation partially degenerated in tomato due to a single amino acid change in the paralogue and cis-regulatory variation that limits its transcriptional upregulation. Our findings show how genetic interactions are remodelled following duplications and suggest that dynamic paralogue evolution is widespread over short time scales and impacts phenotypic variation from natural and engineered mutations.
基因复制是植物基因组进化的一个标志,也是塑造表型多样性的遗传相互作用的基础。补偿是旁系同源基因相互作用的一种主要形式,但随着等位基因变异的积累,补偿关系如何变化尚不清楚。在这里,我们利用茄科植物的基因组学和基因组编辑技术来捕捉补偿性旁系同源基因的进化。干细胞调节因子CLV3中的突变会导致许多植物的花器官过度增殖。在番茄中,这种表型被一个密切相关的旁系同源基因的转录上调部分抑制。烟草失去了这个旁系同源基因,导致没有补偿和极端的clv3表型。引人注目的是,矮牵牛和酸浆的旁系同源基因几乎完全抑制了clv3,表明存在强大的祖先补偿状态。跨物种转基因互补分析表明,由于旁系同源基因中的单个氨基酸变化和顺式调控变异限制了其转录上调,这种强大的补偿在番茄中部分退化。我们的研究结果表明了基因复制后遗传相互作用是如何重塑的,并表明动态旁系同源基因进化在短时间尺度上广泛存在,并影响自然突变和工程突变的表型变异。