...
首页> 外文期刊>Plant and Soil >Phosphate fertiliser alters carboxylates and bacterial communities in sweet potato (Ipomoea batatas(L.) Lam.) rhizosheaths
【24h】

Phosphate fertiliser alters carboxylates and bacterial communities in sweet potato (Ipomoea batatas(L.) Lam.) rhizosheaths

机译:磷肥改变甘薯(Ipomoea Batatas(L.)林。)Rhizoshss的羧酸盐和细菌群落

获取原文
获取原文并翻译 | 示例

摘要

Aims This study aimed to determine the structure of the bacterial community inhabiting the roots and rhizosheath of sweet potato cultivars, and how these bacterial communities respond to P addition and subsequent changes in carboxylate exudation by sweet potato roots. Methods Five sweet potato cultivars were grown with and without P addition in a low P soil in a glasshouse: Beauregard and Northern Star (both international cultivars) and Whagi Besta, Maraso and Marasunda which originate from Papua New Guinea. Rhizosheath carboxylates were measured and the root/rhizosheath bacterial community analysed using 16S rRNA gene sequencing. Results Carboxylate amount per g root weight was reduced (citrate) or increased (malate and oxalate) with addition of P. Carboxylate amount also positively correlated (citrate, oxalate and shikimate) or negatively correlated (malate) to bacterial alpha diversity when no P was added. P addition decreased bacterial diversity, altered the structure of the bacterial community (taxa and predicted function) and led to an enrichment of bacteria related to known P-solubilising bacteria (BurkholderiaandMassilia) as well as to functions related to biosynthesis. Conclusion This study provides a first indication of types and putative roles of root/rhizosheath bacteria in sweet potato cultivars originating from a wide range of environments including marginal and P-impoverished soils and high-P agricultural systems.
机译:目的这项研究旨在确定栖息于甘薯品种根源和根瘤状的细菌群落的结构,以及这些细菌社区如何应对甘薯根系的羧酸盐渗出的Poaind和随后的变化。方法使用玻璃疗中心的低P土壤中生长五种甘薯品种,没有P添加,北部明星(国际品种)和Whagi Besta,Maraso和Marasunda,来自巴布亚新几内亚。测量了Rhizoheath羧酸盐,并使用16S rRNA基因测序分析的根/根窦细菌群体。结果每G根重量(柠檬酸盐)或增加(柠檬酸盐)或增加(苹果酸盐和草酸盐)的结果,添加P.羧酸盐量也与P是不存在的(柠檬酸盐,草酸盐和Shikim)或对细菌α多样性带来正相关添加。 P添加细菌多样性降低,改变了细菌群落(分类群和预测功能)的结构,并导致了与已知的P-溶解的细菌(BurkholderAnandmassilia)相关的细菌以及与生物合成相关的功能。结论本研究提供了源自广泛环境的红薯品种中根/根素岩细菌类型和推定作用的第一次指示,包括边缘和P贫困土壤和高P农业系统。

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