Yang Bo, Ma Hai-Yan, Wang Xiao-Mi, Jia Yong, Hu Jing, Li Xia, Dai Chuan-Chao
Jiangsu Key Laboratory for Microbes and Functional Genomics, Jiangsu Engineering and Technology Research Center for Industrialization of Microbial Resources, College of Life Sciences, Nanjing Normal University, Nanjing 210023, China.
Jiangsu High Quality Rice Research and Development Center, Nanjing Branch of China National Center Rice Improvement, Institute of Food Crops, Institute of Food Crops, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.
Plant Physiol Biochem. 2014 Sep;82:172-82. doi: 10.1016/j.plaphy.2014.06.002. Epub 2014 Jun 13.
The fungal endophyte Phomopsis liquidambari can enhance nitrogen (N) uptake and metabolism of rice plants under hydroponic conditions. To investigate the effects of P. liquidambari on N accumulation and metabolism in rice (Oryza sativa L.) under field conditions during the entire growing season (S1, the seedling stage; S2, the tillering stage; S3, the heading stage; S4, the ripening stage), we utilized pot experiments to examine metabolic and physiological levels in both shoot and root tissues of rice, with endophyte (E+) and without endophyte (E-), in response to three different N levels. We found that under low-N treatment, P. liquidambari symbiosis increased the rice yield and N use efficiency by 12% and by 11.59%, respectively; that the total N contents in E+ rice plants at the four growth stages were separately increased by 29.05%, 14.65%, 21.06% and 18.38%, respectively; and that the activities of nitrate reductase and glutamine synthetase in E+ rice roots and shoots were significantly increased by fungal infection during the S1 to S3 stages. Moreover, P. liquidambari significantly increased the free NH4(+), NO3(-), amino acid and soluble protein contents in infected rice tissues under low-N treatment during the S1 to S3 stages. The obtained results offer novel data concerning the systemic changes induced by P. liquidambari in rice during the entire growth period and confirm the hypothesis that the rice-P. liquidambari interaction improved the N accumulation and metabolism of rice plants, consequently increasing rice N utilization in nutrient-limited soil.
内生真菌拟茎点霉在水培条件下可增强水稻植株对氮(N)的吸收和代谢。为了研究拟茎点霉在整个生长季节(S1,苗期;S2,分蘖期;S3,抽穗期;S4,成熟期)田间条件下对水稻(Oryza sativa L.)氮积累和代谢的影响,我们利用盆栽试验,研究了有内生真菌(E+)和无内生真菌(E-)的水稻地上部和根系组织在三种不同氮水平下的代谢和生理水平。我们发现,在低氮处理下,拟茎点霉共生分别使水稻产量和氮利用效率提高了12%和11.59%;E+水稻植株在四个生长阶段的总氮含量分别提高了29.05%、14.65%、21.06%和18.38%;在S1至S3阶段,真菌感染显著提高了E+水稻根和地上部的硝酸还原酶和谷氨酰胺合成酶活性。此外,在S1至S3阶段的低氮处理下,拟茎点霉显著提高了受感染水稻组织中的游离NH4(+)、NO3(-)、氨基酸和可溶性蛋白质含量。所得结果提供了关于拟茎点霉在水稻整个生长周期中引起的系统变化的新数据,并证实了水稻-拟茎点霉相互作用改善了水稻植株的氮积累和代谢,从而提高了养分受限土壤中水稻对氮的利用这一假设。