过表达植物铁氧还蛋白可提高蝴蝶兰的光合效率和碳水化合物积累。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-12-01 Epub Date: 2023-10-18 DOI:10.1007/s11248-023-00370-w
Hsiang Chang, Yen-Ting Chen, Hsiang-En Huang, Mang-Jye Ger
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引用次数: 0

摘要

景天莲酸代谢(CAM)是光合作用中水分利用效率较高、光合效率较低的三种主要二氧化碳同化途径之一。先前的研究表明,甜椒植物铁氧还蛋白样蛋白(PFLP)基因与属于光合型Fd并参与光系统I的铁氧还素-1(Fd-1)家族具有高度同源性。推测在转基因植物中过表达PFLP可能通过电子传递链(ETC)提高光合效率。为了揭示PFLP在光合效率中的作用,产生了PFLP转基因蝴蝶兰(一种CAM植物)来分析光合标记。转基因植物的电子传输速率是野生型(WT)的1.2倍,在下午4点和10点的样品中,CO2同化率分别高达1.6倍和1.5倍。在转基因植物中,磷酸烯醇丙酮酸羧化酶(PEPC)的酶活性在第三阶段增加到5.9倍,NAD+连接的苹果酸酶(NAD+-ME)活性在第四阶段增加了1.4倍。分析了转基因植物和WT之间的光合作用产物。发现转基因植物的可溶性糖含量(如葡萄糖、果糖和蔗糖)显著增加到1.2、1.8和1.3倍。转基因植物中的淀粉粒积累量也是WT的1.4倍。这些结果表明,转基因植物中过表达pflp通过增强光合作用过程中的电子传输流来增加碳水化合物的积累。这是PFLP在CAM植物中发挥作用的第一个证据。总之,我们认为pflp是一种适用于农业应用的基因,可以提高光合作用过程中的电子传输链效率。
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Overexpressing plant ferredoxin-like protein enhances photosynthetic efficiency and carbohydrates accumulation in Phalaenopsis.

Crassulacean acid metabolism (CAM) is one of three major models of carbon dioxide assimilation pathway with better water-use efficiency and slower photosynthetic efficiency in photosynthesis. Previous studies indicated that the gene of sweet pepper plant ferredoxin-like protein (PFLP) shows high homology to the ferredoxin-1(Fd-1) family that belongs to photosynthetic type Fd and involves in photosystem I. It is speculated that overexpressing pflp in the transgenic plant may enhance photosynthetic efficiency through the electron transport chain (ETC). To reveal the function of PFLP in photosynthetic efficiency, pflp transgenic Phalaenopsis, a CAM plant, was generated to analyze photosynthetic markers. Transgenic plants exhibited 1.2-folds of electron transport rate than that of wild type (WT), and higher CO2 assimilation rates up to 1.6 and 1.5-folds samples at 4 pm and 10 pm respectively. Enzyme activity of phosphoenolpyruvate carboxylase (PEPC) was increased to 5.9-folds in Phase III, and NAD+-linked malic enzyme (NAD+-ME) activity increased 1.4-folds in Phase IV in transgenic plants. The photosynthesis products were analyzed between transgenic plants and WT. Soluble sugars contents such as glucose, fructose, and sucrose were found to significantly increase to 1.2, 1.8, and 1.3-folds higher in transgenic plants. The starch grains were also accumulated up to 1.4-folds in transgenic plants than that of WT. These results indicated that overexpressing pflp in transgenic plants increases carbohydrates accumulation by enhancing electron transport flow during photosynthesis. This is the first evidence for the PFLP function in CAM plants. Taken altogether, we suggest that pflp is an applicable gene for agriculture application that enhances electron transport chain efficiency during photosynthesis.

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ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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