School of Life Science and Biotechnology, Dalian University of Technology, Dalian, People's Republic of China.
Plant Cell Rep. 2012 Jan;31(1):49-56. doi: 10.1007/s00299-011-1138-3. Epub 2011 Aug 24.
Phosphorus (P) is an essential nutrient for plant growth and development, but is generally unavailable and inaccessible in soil, since applied P is mostly fixed to aluminium (Al) and ferrum (Fe) in acidic soils and to calcium (Ca) in alkaline soils. Increased organic acid excretion is thought to be one mechanism by which plants use to enhance P uptake. In this study, we overexpressed a mitochondrial malate dehydrogenase (MDH) gene from the mycorrhizal fungi Penicillium oxalicum in tobacco. The MDH activity of transgenic lines was significantly increased compared to that of wild type. Malate content in root exudation of transgenic lines induced in response to P deficiency was 1.3- to 2.9-fold greater than that of wild type under the same condition. Among the transgenic lines that were selected for analysis, one line (M1) showed the highest level of MDH activity and malate exudate. M1 showed a significant increase in growth over wild type, with 149.0, 128.5, and 127.9% increases in biomass, when grown in Al-phosphate, Fe-phosphate, and Ca-phosphate media, respectively. M1 also had better P uptake compared to wild type, with total P content increased by 287.3, 243.5, and 223.4% when grown in Al-phosphate, Fe-phosphate, and Ca-phosphate media, respectively. To our knowledge, this is the first study on improving the ability of a plant to utilize P from Al-phosphate, Fe-phosphate, and Ca-phosphate by manipulating the organic acid metabolism of the plant through genetic engineering.
磷(P)是植物生长和发育所必需的营养物质,但在土壤中通常是不可用和不可及的,因为施入的 P 大部分被固定在酸性土壤中的铝(Al)和铁(Fe)以及碱性土壤中的钙(Ca)中。人们认为,增加有机酸的分泌是植物增强 P 吸收的一种机制。在这项研究中,我们在烟草中过表达了一种来自共生真菌草酸青霉的线粒体苹果酸脱氢酶(MDH)基因。与野生型相比,转基因株系的 MDH 活性显著增加。在相同条件下,缺磷诱导的转基因株系根系分泌物中的苹果酸含量比野生型高 1.3-2.9 倍。在选择用于分析的转基因株系中,有一个株系(M1)表现出最高的 MDH 活性和苹果酸分泌量。与野生型相比,M1 的生长显著增加,在 Al-磷酸盐、Fe-磷酸盐和 Ca-磷酸盐培养基中分别增加了 149.0、128.5 和 127.9%的生物量。与野生型相比,M1 还具有更好的 P 吸收能力,在 Al-磷酸盐、Fe-磷酸盐和 Ca-磷酸盐培养基中,总 P 含量分别增加了 287.3、243.5 和 223.4%。据我们所知,这是通过遗传工程操纵植物的有机酸代谢来提高植物利用 Al-磷酸盐、Fe-磷酸盐和 Ca-磷酸盐中 P 的能力的第一项研究。