中山大学环境科学与工程学院∥广东省环境污染控制与修复技术重点实验室,广东,广州,510275
纸质出版日期:2014,
网络出版日期:2014-9-25,
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刘玉, 李艳萍, 黄雄飞, 等. 六种红树植物原位根系及根际土酚酸总量比较分析[J]. 中山大学学报(自然科学版)(中英文), 2014,53(5):92-97.
LIU Yu, LI Yanping, HUANG Xiongfei, et al. Comparison Analysis of the Contents of Phenolic Acids in Roots and Rhizosphere Soils of Six Mangrove Plants In Situ[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2014,53(5):92-97.
刘玉, 李艳萍, 黄雄飞, 等. 六种红树植物原位根系及根际土酚酸总量比较分析[J]. 中山大学学报(自然科学版)(中英文), 2014,53(5):92-97. DOI:
LIU Yu, LI Yanping, HUANG Xiongfei, et al. Comparison Analysis of the Contents of Phenolic Acids in Roots and Rhizosphere Soils of Six Mangrove Plants In Situ[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2014,53(5):92-97. DOI:
植物根系分泌物中酚酸类物质具有较强化感活性,但对红树植物相关研究很少,特别是对原位状况的研究。本研究采集广东湛江国家级自然保护区内六种建群红树植物的根系、根际土与非根际土样品,采用铁氰化钾与三氯化铁显色法进行酚酸总量的测定,对结果进行比较:红海榄根系酚酸总量最高,平均值为8 837.28 μg/g。木榄根际土与非根际土酚酸总量平均值最高,分别为13.20 μg/g、20.12 μg/g。在18个样品中,只有8个样品根际土酚酸总量高于非根际土。根际土中酚酸含量有可能因微生物分解或土壤吸附及降解的综合作用而低于非根际土中含量。红树植物根系酚酸百分释放量很低,红海榄仅为00504%。该领域的研究对厘清红树林生态机制尤其是根系微生态的作用机制具有重要意义。
Phenolic acids in plant root exudates have stronger allelopathic activity
but fewer researches are focus on this area of mangrove plants
especially the status in situ-conditions. In this work
the roots
rhizosphere soil and non rhizosphere soil of six plants in Guangdong Zhanjiang National Nature Reserve of mangrove were sampled in situ. The total content of phenolic acids was measured using a potassium ferricyanide-ferric chloride colorimetric method. The results indicated that the content in roots was the highest in Rhizophora stylosa
the average value was 8 837.28 μg/g. The content of phenolic acids in rhizosphere soil and non rhizosphere soil were the highest in Bruguiera gymnorrhiza
the mean value were 13.20 μg/g and 20.12 μg/g
respectively. In total 18 samples
only 8 samples of the content in rhizosphere soils were higher than that of non rhizosphere soil. The content of phenolic acid in rhizosphere soil may be lower than that in non rhizosphere soil due to the comprehensive effect of microbial decomposition or soil adsorption and degradation. The release percent of phenolic acid from mangrove root was very low
only 0.050 4% in Rhizophora stylosa. These results are important meaning for clarifing the mangrove ecological mechanism especially the mechanism of root microecology.
红树植物酚酸根系分泌物根际土非根际土含量原位
mangrove plantsphenolic acidroot exudatesrhizosphere soilnonrhizosphere soilcontentin-situ
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