Department of Soil, Water, and Climate, BioTechnology Institute, University of Minnesota, St Paul, Minnesota 55108, USA.
Microbes Environ. 2013;28(2):217-27. doi: 10.1264/jsme2.me12190. Epub 2013 May 11.
Elevated atmospheric CO2 can influence the structure and function of rhizoplane and rhizosphere microorganisms by altering root growth and the quality and quantity of compounds released into the rhizoplane and rhizosphere via root exudation. In these studies we investigated the transcriptional responses of Bradyrhizobium japonicum cells growing in the rhizoplane of soybean plants exposed to elevated atmospheric CO2. The results of microarray analyses indicated that elevated atmospheric CO2 concentration indirectly influenced the expression of a large number of genes in Bradyrhizobium attached to soybean roots. In addition, relative to plants and bacteria grown under ambient CO2 growth conditions, genes involved in C1 metabolism, denitrification and FixK2-associated genes, including those involved in nitrogen fixation, microaerobic respiration, respiratory nitrite reductase, and heme biosynthesis, were significantly up-regulated under conditions of elevated CO2 in the rhizosphere. The expression profile of genes involved in lipochitooligosaccharide Nod factor biosynthesis and negative transcriptional regulators of nodulation genes, nolA and nodD2, were also influenced by plant growth under conditions of elevated CO2. Taken together, the results of these studies indicate that the growth of soybeans under conditions of elevated atmospheric CO2 influences gene expressions in B. japonicum in the soybean rhizoplane, resulting in changes to carbon/nitrogen metabolism, respiration, and nodulation efficiency.
大气中 CO2 浓度升高会通过改变根系生长和根系分泌物的质量和数量,影响根际和根际微生物的结构和功能。在这些研究中,我们研究了在大气 CO2 浓度升高的条件下,生长在大豆根际的根瘤菌细胞的转录响应。微阵列分析的结果表明,大气 CO2 浓度的升高间接影响了大量与附着在大豆根系上的根瘤菌相关基因的表达。此外,与在大气 CO2 生长条件下生长的植物和细菌相比,在根际 CO2 升高的条件下,与 C1 代谢、反硝化和 FixK2 相关基因(包括固氮、微好氧呼吸、呼吸亚硝酸盐还原酶和血红素生物合成相关基因)相关的基因的表达显著上调。参与脂寡糖 Nod 因子生物合成和nod 基因负转录调控因子nolA 和 nodD2 的基因的表达谱也受到 CO2 升高条件下植物生长的影响。总之,这些研究的结果表明,大气 CO2 浓度升高条件下大豆的生长会影响大豆根际中根瘤菌的基因表达,从而导致碳/氮代谢、呼吸和结瘤效率的变化。