|
Dynamic Evolution of Small Signalling Peptide Compensation in Plant Stem Cell Control
Choon-Tak Kwon, Lingli Tang, Xingang Wang, Iacopo Gentile, Anat Hendelman, Gina Robitaille, Joyce Van Eck, Cao Xu & Zachary B. Lippman
Nature Plants
Abstract
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.
|
论文编号: |
DOI:10.1038/s41477-022-01118-w |
论文题目: |
Dynamic Evolution of Small Signalling Peptide Compensation in Plant Stem Cell Control |
英文论文题目: |
Dynamic Evolution of Small Signalling Peptide Compensation in Plant Stem Cell Control |
第一作者: |
Choon-Tak Kwon, Lingli Tang, Xingang Wang, Iacopo Gentile, Anat Hendelman, Gina Robitaille, Joyce Van Eck, Cao Xu & Zachary B. Lippman |
英文第一作者: |
Choon-Tak Kwon, Lingli Tang, Xingang Wang, Iacopo Gentile, Anat Hendelman, Gina Robitaille, Joyce Van Eck, Cao Xu & Zachary B. Lippman |
联系作者: |
|
英文联系作者: |
|
外单位作者单位: |
|
英文外单位作者单位: |
|
发表年度: |
2022-03-29 |
卷: |
|
期: |
|
页码: |
|
摘要: |
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. |
英文摘要: |
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. |
刊物名称: |
Nature Plants |
英文刊物名称: |
Nature Plants |
论文全文: |
|
英文论文全文: |
|
全文链接: |
|
其它备注: |
Choon-Tak Kwon, Lingli Tang, Xingang Wang, Iacopo Gentile, Anat Hendelman, Gina Robitaille, Joyce Van Eck, Cao Xu & Zachary B. Lippman .Dynamic Evolution of Small Signalling Peptide Compensation in Plant Stem Cell Control. Nature Plants. DOI:10.1038/s41477-022-01118-w |
英文其它备注: |
|
学科: |
|
英文学科: |
|
影响因子: |
|
第一作者所在部门: |
|
英文第一作者所在部门: |
|
论文出处: |
|
英文论文出处: |
|
论文类别: |
|
英文论文类别: |
|
参与作者: |
|
英文参与作者: |
|
|