转录因子的选择促使定量性疾病耐药性的演变,以对抗死性病原体的病原体
Severin Einspanier1, Christopher Tominello-Ramirez1,2, Florent Delplace3
1Department of Phytopathology and Crop Protection, Faculty of Agricultural and Nutritional Sciences, Institute of Phytopathology, Kiel University, 24098 Kiel, Germany.
The Plant cell
|September 30, 2025
概括
野生番茄的亲属由于独特的基因调节,表现出多样化的抗病能力. 一个保存的NAC转录因子进化了增强病原体防御的特定物种作用,突出了进化的重新连接.
科学领域:
- 植物遗传学和进化研究
- 分子植物病理学 分子植物病理学
- 基因组学和转录基因组学
背景情况:
- 农作物的野生亲属对病原体表现出不同的定量抗病能力 (QDR).
- 对于QDR变异的基因组和监管基础尚不清楚.
- QDR的进化途径以及保护与特定物种监管网络的作用仍然不清楚.
研究的目的:
- 为了研究五种野生番茄物种具有不同QDR水平的转录基因反应.
- 为了确定QDR是否受到保护或特定物种的监管机制的控制.
- 探索塑造QDR的基因调节网络的进化基础.
主要方法:
- 差异性基因表达分析
- 权重基因同表达网络分析 (WGCNA)
- 对基因调节网络的植物转录组分析.
主要成果:
- 特定物种的监管特征,而不是保存模块,主要是形状QDR.
- 保存的NAC转录因子29在QDR中起着至关重要的作用,特别是在Solanum pennellii.
- 差异调节和改变NAC29的下游途径,包括敏感基因型中过早停止子,表明其对抗性的选择.
结论:
- QDR是由基因调节网络的物种特异性重新连接形成的,重新利用像NAC29.29这样的保存元素.
- 进化适应包括修改保存的调节器,以增强病原体耐药性.
- 了解特定物种的基因调节是解读对病原体的复杂QDR机制的关键.
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