叶绿体
二酰甘油激酶
内质网
生物
拟南芥
拟南芥
质体
细胞生物学
分泌途径
代谢途径
未折叠蛋白反应
生物合成
生物化学
植物
生物物理学
信号转导
新陈代谢
酶
基因
突变体
高尔基体
蛋白激酶C
作者
Qiang Li,Qian Zheng,Wenyun Shen,Dustin Cram,Brian Fowler,Yangdou Wei,Jitao Zou
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2015-01-01
卷期号:27 (1): 86-103
被引量:175
标识
DOI:10.1105/tpc.114.134338
摘要
Abstract Glycerolipid biosynthesis in plants proceeds through two major pathways compartmentalized in the chloroplast and the endoplasmic reticulum (ER). The involvement of glycerolipid pathway interactions in modulating membrane desaturation under temperature stress has been suggested but not fully explored. We profiled glycerolipid changes as well as transcript dynamics under suboptimal temperature conditions in three plant species that are distinctively different in the mode of lipid pathway interactions. In Arabidopsis thaliana, a 16:3 plant, the chloroplast pathway is upregulated in response to low temperature, whereas high temperature promotes the eukaryotic pathway. Operating under a similar mechanistic framework, Atriplex lentiformis at high temperature drastically increases the contribution of the eukaryotic pathway and correspondingly suppresses the prokaryotic pathway, resulting in the switch of lipid profile from 16:3 to 18:3. In wheat (Triticum aestivum), an 18:3 plant, low temperature also influences the channeling of glycerolipids from the ER to chloroplast. Evidence of differential trafficking of diacylglycerol moieties from the ER to chloroplast was uncovered in three plant species as another layer of metabolic adaptation under temperature stress. We propose a model that highlights the predominance and prevalence of lipid pathway interactions in temperature-induced lipid compositional changes.
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