The lotus beneath Nezha, a fairy tale character, represents an ER anion channel CLCC1. Chloride through CLCC1 compensates both potential and osmolality changes during ER Ca2+ release together with K+ (2Ca2++Cl–=3K+). CLCC1 dysfunction leads to imbalance of ER ion homeostasis (2Ca2+=4K+), ER swelling, and neurodegeneration, which is linked with ALS represented by Nezha’s frozen leg and spear. See page 497–515 by Liang Guo et al. for details.
JIPB:安徽农业大学揭示一个整合多重激素信号转导的转录调控模块
种子休眠是决定采前发芽抗性的主要遗传因素。本研究鉴定出小麦cytochrome P450 gene-TaCYP94-A1在弱休眠品种中的表达水平显著高于强休眠品种。TaCYP94-A1的表达在休眠解除过程中增加,在休眠建立过程中减少。敲除TaCYP94-A1可显著增强休眠和采前发芽抗性,且不影响产量相关性状。
TaCYP94-A1启动子中的两个关键单核苷酸多态性(-1,895 bp处的T/C和-1,225 bp处的T/C)与休眠变异显著相关,其中TaCYP94-A11,895C和TaCYP94-A11,225C等位基因组合(单倍型Hap4)与休眠增强密切相关。两种转录因子TaABI4和TaNAC-A1分别直接结合于TaCYP94-A1启动子的5′- ACCGC -3′(C,-1,895 bp)和5′- GACTTC -3′(C,-1,225 bp)基序,并通过细胞核内拮抗性蛋白-蛋白相互作用调控其转录。分析表明,TaABI4/TaNAC-A1-TaCYP94-A1模块通过与赤霉素、脱落酸和茉莉酸通路的调控影响休眠过程。
小结:本研究揭示了一个调控种子休眠的转录调控模块。
原文:The transcription factors TaABI4 and TaNAC-A1 fine-tune TaCYP94-A1 transcription to modulate seed dormancy in wheat