首页> 外文OA文献 >Nonsymbiotic Hemoglobin-2 Leads to an Elevated Energy State and to a Combined Increase in Polyunsaturated Fatty Acids and Total Oil Content When Overexpressed in Developing Seeds of Transgenic Arabidopsis Plants1[OA]
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Nonsymbiotic Hemoglobin-2 Leads to an Elevated Energy State and to a Combined Increase in Polyunsaturated Fatty Acids and Total Oil Content When Overexpressed in Developing Seeds of Transgenic Arabidopsis Plants1[OA]

机译:当在转基因拟南芥植物的发育种子中过表达时,非共生血红蛋白2导致能量状态升高并导致多不饱和脂肪酸和总油含量的共同增加1。

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摘要

Nonsymbiotic hemoglobins are ubiquitously expressed in plants and divided into two different classes based on gene expression pattern and oxygen-binding properties. Most of the published research has been on the function of class 1 hemoglobins. To investigate the role of class 2 hemoglobins, transgenic Arabidopsis (Arabidopsis thaliana) plants were generated overexpressing Arabidopsis hemoglobin-2 (AHb2) under the control of a seed-specific promoter. Overexpression of AHb2 led to a 40% increase in the total fatty acid content of developing and mature seeds in three subsequent generations. This was mainly due to an increase in the polyunsaturated C18:2 (ω-6) linoleic and C18:3 (ω-3) α-linolenic acids. Moreover, AHb2 overexpression led to an increase in the C18:2/C18:1 and C18:3/C18:2 ratios as well as in the C18:3 content in mol % of total fatty acids and in the unsaturation/saturation index of total seed lipids. The increase in fatty acid content was mainly due to a stimulation of the rate of triacylglycerol synthesis, which was attributable to a 3-fold higher energy state and a 2-fold higher sucrose content of the seeds. Under low external oxygen, AHb2 overexpression maintained an up to 5-fold higher energy state and prevented fermentation. This is consistent with AHb2 overexpression results in improved oxygen availability within developing seeds. In contrast to this, overexpression of class 1 hemoglobin did not lead to any significant increase in the metabolic performance of the seeds. These results provide evidence for a specific function of class 2 hemoglobin in seed oil production and in promoting the accumulation of polyunsaturated fatty acids by facilitating oxygen supply in developing seeds.
机译:非共生血红蛋白在植物中普遍表达,并根据基因表达模式和氧结合特性分为两类。大部分已发表的研究都涉及1类血红蛋白的功能。为了研究2类血红蛋白的作用,在种子特异性启动子的控制下,产生了过表达拟南芥血红蛋白2(AHb2)的转基因拟南芥(Arabidopsis thaliana)植物。 AHb2的过表达导致在随后的三代中发育中和成熟种子的总脂肪酸含量增加了40%。这主要是由于多不饱和C18:2(ω-6)亚油酸和C18:3(ω-3)α-亚麻酸的增加。此外,AHb2的过表达导致C18:2 / C18:1和C18:3 / C18:2的比率增加,以及导致C18:3的含量(以总脂肪酸的mol%计)和不饱和/饱和指数的增加。总种子脂质。脂肪酸含量的增加主要归因于三酰基甘油合成速率的提高,这归因于种子的能量状态高3倍,而蔗糖含量高2倍。在低外部氧气下,AHb2的过量表达维持高达5倍的高能态并阻止发酵。这与AHb2过表达导致发育中的种子中的氧气利用率提高相一致。与此相反,1类血红蛋白的过表达并没有导致种子代谢性能的任何显着提高。这些结果为第2类血红蛋白在种子油生产中的特定功能提供了证据,并通过促进发育中的种子中的氧气供应促进了多不饱和脂肪酸的积累。

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