拟南芥
渗透性休克
多年生植物
多年生黑麦草
非生物胁迫
渗透
内生
生物
异位表达
细胞生物学
化学
基因
植物
生物化学
突变体
膜
作者
Di Yang,Weiliang Wang,Zhengfu Fang,S. M. Wu,Lili Chen,Hao Chen,Wen-Song Zhang,Feilong Wang,Tianxiao Sun,Lin Xiang,Li Wang,Hong Luo,Zhulong Chan
摘要
ABSTRACT The phospholipase Ds (PLDs) are crucial for cellular signalling and play roles in plant abiotic stress response. In this study, we identified 12 PLD genes from the genome data of perennial ryegrass ( Lolium perenne ), which is widely used as forage and turfgrass. Among them, LpPLDδ3 was significantly repressed by ABA treatment, and induced by drought stress and heat stress treatments. The ectopic overexpression (OE) of LpPLDδ3 in Arabidopsis enhanced plant tolerance to osmotic and heat stress as demonstrated by an increased survival rate and reduced malondialdehyde (MDA) accumulation and electrolyte leakage (EL). Arabidopsis endogenous ABA RESPONSIVE ELEMENT BINDING FACTORs (ABFs) and heat stress responsive genes were elevated in LpPLDδ3 OE lines under osmotic and heat stress treatments. Additionally, overexpression of LpPLDδ3 in perennial ryegrass protoplasts could increase heat stress tolerance and elevate expression level of heat stress responsive genes. Moreover, LpABF2 and LpABF4 depressed the LpPLDδ3 expression by directly binding to its ABRE core‐binding motif of promoter region. In summary, LpPLDδ3 was repressed by LpABF2 and LpABF4 and positively involved in perennial ryegrass osmotic and heat stress responses.
科研通智能强力驱动
Strongly Powered by AbleSci AI