Rice Non-Specific Phospholipase C6 Is Involved in Mesocotyl Elongation

突变体 延伸率 磷酸胆碱 磷脂酶 细胞生物学 磷脂 赤霉素 磷脂酰胆碱 生物 生物化学 化学 信号转导 磷脂酶C 植物 基因 发芽 材料科学 极限抗拉强度 冶金
作者
Di Yang,Xiong Liu,Xiao‐Ming Yin,Tian Dong,Min Yu,Yan Wu
出处
期刊:Plant and Cell Physiology [Oxford University Press]
卷期号:62 (6): 985-1000 被引量:11
标识
DOI:10.1093/pcp/pcab069
摘要

Mesocotyl elongation of rice is crucial for seedlings pushing out of deep soil. The underlying mechanisms of phospholipid signaling in mesocotyl growth of rice are elusive. Here we report that the rice non-specific phospholipase C6 (OsNPC6) is involved in mesocotyl elongation. Our results indicated that all five OsNPCs (OsNPC1, OsNPC2, OsNPC3, OsNPC4 and OsNPC6) hydrolyzed the substrate phosphatidylcholine to phosphocholine (PCho), and all of them showed plasma membrane localization. Overexpression (OE) of OsNPC6 produced plants with shorter mesocotyls compared to those of Nipponbare and npc6 mutants. Although the mesocotyl growth of npc6 mutants was not much affected without gibberellic acid (GA)3, it was obviously elongated by treatment with GA. Upon GA3 treatment, SLENDER RICE1 (SLR1), the DELLA protein of GA signaling, was drastically increased in OE plants; by contrast, the level of SLR1 was found decreased in npc6 mutants. The GA-enhanced mesocotyl elongation and the GA-impaired SLR1 level in npc6 mutants were attenuated by the supplementation of PCho. Further analysis indicated that the GA-induced expression of phospho-base N-methyltransferase 1 in npc6 mutants was significantly weakened by the addition of PCho. In summary, our results suggest that OsNPC6 is involved in mesocotyl development via modulation of PCho in rice.
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