Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection (Guangxi Normal University), Ministry of Education & Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin (Guangxi Normal University), Guilin, Guangxi 541006, China.
Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection (Guangxi Normal University), Ministry of Education & Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin (Guangxi Normal University), Guilin, Guangxi 541006, China.
Bioresour Technol. 2024 Oct;410:131291. doi: 10.1016/j.biortech.2024.131291. Epub 2024 Aug 15.
Overexpression of Dunaliella parva (D. parva) malic enzyme (ME) gene (DpME) significantly increased DpME expression and ME enzyme activity in transgenic D. parva. Nitrogen limitation had an inhibitory effect on protein content, and DpME overexpression could improve protein content. Nitrogen limitation increased carbohydrate content, and Dunaliella parva overexpressing malic enzyme gene under nitrogen limitation (DpME-N) group showed the lowest starch content among all groups. Dunaliella parva overexpressing malic enzyme gene under nitrogen sufficient condition (DpME) and DpME-N groups showed considerably high mRNA levels of DpME. ME activity was significantly enhanced by DpME overexpression, and nitrogen limitation caused a smaller increase. DpME overexpression and nitrogen limitation obviously enhanced lipid accumulation, and DpME overexpression had more obvious effect. Compared with control (wild type), lipid content (68.97%) obviously increased in DpME-N group. This study indicated that the combination of DpME overexpression and nitrogen limitation was favorable to the production of microalgae biodiesel.
小球藻(D. parva)苹果酸酶(ME)基因(DpME)的过表达显著提高了转基因小球藻中的 DpME 表达和 ME 酶活性。氮限制对蛋白质含量有抑制作用,而过表达 DpME 可以提高蛋白质含量。氮限制增加了碳水化合物含量,而在氮限制下过表达苹果酸酶基因的小球藻(DpME-N)组在所有组中表现出最低的淀粉含量。在氮充足条件下过表达苹果酸酶基因的小球藻(DpME)和 DpME-N 组显示出相当高的 DpME mRNA 水平。ME 活性通过 DpME 过表达显著增强,而氮限制导致的增强较小。DpME 过表达和氮限制明显促进了脂质积累,而过表达 DpME 的效果更为明显。与对照(野生型)相比,DpME-N 组的脂质含量(68.97%)明显增加。本研究表明,DpME 过表达和氮限制的结合有利于微藻生物柴油的生产。