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首页> 外文期刊>Journal of Experimental Botany >Contribution of omega-3 fatty acid desaturase and 3-ketoacyl-ACP synthase II (KASII) genes in the modulation of glycerolipid fatty acid composition during cold acclimation in birch leaves
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Contribution of omega-3 fatty acid desaturase and 3-ketoacyl-ACP synthase II (KASII) genes in the modulation of glycerolipid fatty acid composition during cold acclimation in birch leaves

机译:白桦叶片冷驯化过程中ω-3脂肪酸去饱和酶和3-酮酰基-ACP合酶II(KASII)基因对甘油脂脂肪酸组成的调节作用

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Temperate and boreal tree species respond to low positive temperatures (LT) or a shortening of the photoperiod (SD) by inducing cold acclimation. One of the metabolic consequences of cold acclimation is an increase in fatty acid (FA) desaturation in membrane lipids, which allows functional membrane fluidity to be maintained at LT. The molecular mechanisms of FA desaturation were investigated in leaves of birch seedlings (Betula pendula) during cold acclimation. Four genes involved in FA biosynthesis were isolated: a 3-ketoacyl-ACP synthase II gene (BpKASII) involved in the elongation of palmitoyl-ACP to stearoyl-ACP, and three omega-3 FA desaturase genes (BpFAD3, BpFAD7, and BpFAD8) involved in the desaturation of linoleic acid (18:2) to alpha-linolenic acid (18:3). BpFAD7 was the main omega-3 FAD gene expressed in birch leaves, and it was down-regulated by LT under SD conditions. LT induced the expression of BpFAD3 and BpFAD8 and a synchronous increase in 18:3 occurred in glycerolipids. Changes in the photoperiod did not affect the LT-induced increase in 18:3 in chloroplast lipids (MGDG, DGDG, PG), but it modulated the LT response detected in extra-chloroplastic lipids (PC, PE, PI, PS). A decrease in the proportion of the 16-carbon FAs in lipids occurred at LT, possibly in relation to the regulation of BpKASII expression at LT. These results suggest that LT affects the whole FA biosynthesis pathway. They support a co-ordinated action of microsomal (BpFAD3) and chloroplast enzymes (BpFAD7, BpFAD8) in determining the level of 18:3 in extra-chloroplastic membranes, and they highlight the importance of dynamic lipid trafficking.
机译:温带和北方树种通过诱导冷驯化对低正温度(LT)或光周期缩短(SD)作出响应。冷驯化的代谢后果之一是增加膜脂质中脂肪酸(FA)的不饱和度,从而使LT的功能膜流动性得以维持。研究了白桦幼苗冷驯化过程中叶片FA脱饱和的分子机理。分离出四个与FA生物合成有关的基因:一个与棕榈酰-ACP延伸为硬脂酰-ACP的3-酮酰基-ACP合酶II基因(BpKASII),和三个omega-3 FA去饱和酶基因(BpFAD3,BpFAD7和BpFAD8)。参与将亚油酸(18:2)脱饱和为α-亚麻酸(18:3)。 BpFAD7是桦树叶片中表达的主要omega-3 FAD基因,在SD条件下被LT下调。 LT诱导BpFAD3和BpFAD8的表达,甘油脂中18:3同步增加。光周期的变化不会影响LT诱导的叶绿体脂质(MGDG,DGDG,PG)中18:3的增加,但会调节在超叶绿体脂质(PC,PE,PI,PS)中检测到的LT反应。 LT中脂质中16碳FA的比例降低,这可能与LT中BpKASII表达的调节有关。这些结果表明LT影响了整个FA生物合成途径。它们支持微粒体(BpFAD3)和叶绿体酶(BpFAD7,BpFAD8)在确定叶绿体增生膜中18:3的水平方面的协同作用,并且强调了动态脂质运输的重要性。

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