转子子增殖驱动了基因组架构和野生和养的监管进化
Kang Zhang1, Hailong Yu1, Lingkui Zhang1
1State Key Laboratory of Vegetable Biobreeding, Key Laboratory of Biology and Genetic Improvement of Horticultural Crops of the Ministry of Agriculture and Rural Affairs, Sino-Dutch Joint Laboratory of Horticultural Genomics, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, China.
这项研究揭示了胡的基因组进化 (Capsicum spp. ),详细说明了可转移元素如何塑造它们的大型基因组和多样化的特征. 这些关于胡遗传学的见解将有助于未来的作物育种工作.
科学领域:
- 基因组学就是基因组学.
- 植物科学 植物科学
- 进化生物学 进化生物学
背景情况:
- 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡 (Capsicum spp.) 胡) 胡 (Capsicum spp) 胡 (Capsicum spp) 胡 是重要的Solanaceae蔬菜,具有大型,复杂的基因组.
- 人们对基因组进化史和驱动胡基因组大小变化的因素的了解很少.
研究的目的:
- 为了重建胡的祖先型和进化轨迹.
- 研究可移植元素 (TE) 在塑造胡基因组进化和特征多样性的作用.
- 为了确定基因组机制的基础上重要的胡的特征和育种的进步.
主要方法:
- 产生了11个高质量的Capsicum基因组组合,包括两个无缺口基因组.
- 重建了祖先的型和推断的进化历史.
- 开发了一个染色质可访问性地图和124个胡生殖细胞的哈普洛布克地图.
主要成果:
- 可转移元素 (TE) 的差积累解释了胡的扩大和变化的基因组大小.
- TEs影响了3D染色体结构,并引入了诸如水果取向和颜色等特征的突变.
- 在生殖质中频繁的内侵入促进了甜的形成和特征的获得 (例如,病毒耐药性).
结论:
- 的基因组和功能进化在很大程度上是由可转移的元素驱动的.
- 了解这些进化动态为有针对性的胡繁殖提供了基础.
- 这项研究为改善胡品种提供了有价值的基因组资源.
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