首页> 外文期刊>Soil Biology & Biochemistry >Impact of allelochemical exuded from allelopathic rice on soil microbial community.
【24h】

Impact of allelochemical exuded from allelopathic rice on soil microbial community.

机译:化感水稻中渗出的化感物质对土壤微生物群落的影响。

获取原文
获取原文并翻译 | 示例
           

摘要

Allelopathic rice releases allelochemicals from its roots to paddy soils at early growth stages to inhibit neighboring weeds. However, little is currently known about the effects of allelochemicals on soil microbes. In this study, we show that allelopathic rice can have great impact on the population and community structure of soil microbes. Allelopathic rice PI312777 seedlings reduced the culturable microbial population and total PLFA when compared to non-allelopathic rice Liaojing-9. Similar results were observed when, instead of growing seedlings, soils were incubated with plant root exudates. This result demonstrates that the composition of root exudates from the rice varieties tested contributes to the soil microbial community. Further experiments showed that the microbial community was affected by the allelochemical 5,4'-dihydroxy-3',5'-dimethoxy-7-O- beta -glucopyranosylflavone exuded from allelopathic rice roots, through immediately hydrolyzing glucose with stimulation on soil bacteria and aglycone (5,7,4'-trihydroxy-3',5'-dimethoxyflavone) with inhibition on soil fungi. This result indicates that the flavone O-glycoside can provide carbon and interact with soil microbes. PC analysis of the fatty acid data clearly separated the allelopathic PI312777 and the non-allelopathic Liaojing-9 variety (PC1=46.4%, PC2=20.3%). Similarly, the first principal component (PC1=37.4%) together with the second principal component (PC2=17.3%) explained 54.7% of the variation between the allelopathic and non-allelopathic root exudates. Furthermore, the canonical correlation between allelopathic root exudates and the flavone O-glycoside was statistically significant (Canonical R=0.889, chi 2 (25)=69.72, p=0.0041). Although the data generated in this study were not completely consistent between culturable microbes and PLFA profile, it is a fact that variation in soil microbial populations and community structures could be distinguished by the allelopathic and non-allelopathic rice varieties tested. Our results suggest that individual components of rice root exudates, such as allelochemicals from allelopathic rice, can modify the soil microbial community.
机译:化感水稻在生长的早期从根部向水稻土释放化感物质,以抑制邻近的杂草。但是,目前关于化感物质对土壤微生物的影响知之甚少。在这项研究中,我们表明化感水稻可以对土壤微生物的种群和群落结构产生巨大影响。与非化感水稻辽粳9号相比,化感水稻PI312777幼苗减少了可培养的微生物种群和总PLFA。当土壤与植物根系分泌物一起孵育而不是种植幼苗时,观察到相似的结果。该结果表明,所测试的水稻品种的根系分泌物的组成有助于土壤微生物群落。进一步的实验表明,化感水稻根部分泌的化感化学物质5,4'-二羟基-3',5'-二甲氧基-7-O-β-吡喃葡萄糖基黄酮通过立即水解葡萄糖并刺激土壤细菌和细菌,从而影响了微生物群落。糖苷配基(5,7,4'-三羟基-3',5'-二甲氧基黄酮)对土壤真菌具有抑制作用。该结果表明黄酮O-糖苷可以提供碳并与土壤微生物相互作用。脂肪酸数据的PC分析清楚地区分了化感性PI312777和非化感性辽粳9号品种(PC1 = 46.4%,PC2 = 20.3%)。类似地,第一主成分(PC1 = 37.4%)和第二主成分(PC2 = 17.3%)解释了化感和非化感根系分泌物之间的变化的54.7%。此外,化感病根分泌物和黄酮O-糖苷之间的典范相关性在统计学上是显着的(典范R = 0.889,chi 2(25)= 69.72,p = 0.0041)。尽管本研究中产生的数据在可培养微生物和PLFA分布图之间并不完全一致,但这是一个事实,即通过测试的化感和非化感水稻品种可以区分土壤微生物种群和群落结构的差异。我们的结果表明,水稻根系分泌物的各个成分,例如化感水稻中的化感物质,都可以改变土壤微生物群落。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号