首页> 外文期刊>Plant and Soil >Dark septate root endophytic fungi increase growth of Scots pine seedlings under elevated CO through enhanced nitrogen use efficiency
【24h】

Dark septate root endophytic fungi increase growth of Scots pine seedlings under elevated CO through enhanced nitrogen use efficiency

机译:深色分隔根内生真菌通过提高氮素利用效率来提高CO胁迫下樟子松幼苗的生长

获取原文
获取原文并翻译 | 示例
           

摘要

Although increasing concentrations of atmospheric CO are predicted to have substantial impacts on plant growth and functioning of ecosystems, there is insufficient understanding of the responses of belowground processes to such increases. We investigated the effects of different dark septate root endophytic (DSE) fungi on growth and nutrient acquisition by Pinus sylvestris seedlings under conditions of N limitation and at ambient and elevated CO (350 or 700 o1 CO lp#). Each seedling was inoculated with one of the following species: Phialocephala fortinii (two strains), Cadophora finlandica, Chloridium paucisporum, Scytalidium vaccinii, Meliniomyces variabilis and M. vraolstadiae. The trial lasted 125 days. During the final 27 days, the seedlings were labeled with p#tCO and p#eNH . We measured extraradical hyphal length, internal colonization, plant biomass, p#tC allocation, and plant N and p#eN content. Under elevated CO, the biomass of seedlings inoculated with DSE fungi was on average 17% higher than in control seedlings. Simultaneously, below-ground respiration doubled or trebled, and as a consequence carbon use efficiency by the DSE fungi significantly decreased. Shoot N concentration decreased on average by 57% under elevated CO and was lowest in seedlings inoculated with S. vaccinii. Carbon gain by the seedlings despite reduced shoot N concentration indicates that DSE fungi increase plant nutrient use efficiency and are therefore more beneficial to the plant under elevated CO.
机译:尽管预计大气中CO浓度的增加会严重影响植物的生长和生态系统的功能,但对地下过程对这种增加的反应的了解还不够。我们研究了不同的深色分隔根内生(DSE)真菌对樟子松幼苗在N限制条件下以及环境和升高的CO(350或700 o1 CO lp#)下的生长和养分获取的影响。每棵幼苗接种以下物种之一:福氏疟原虫(两个菌株),芬兰无花果树,短孢子藻,盾状裂藻,变种和变种M. vraolstadiae。审判持续了125天。在最后的27天中,用p#tCO和p#eNH标记幼苗。我们测量了自由基的菌丝长度,内部定植,植物生物量,p#tC分配以及植物N和p#eN含量。在升高的CO下,接种DSE真菌的幼苗的生物量平均比对照幼苗高17%。同时,地下呼吸增加了一倍或三倍,因此DSE真菌的碳使用效率大大降低。在CO浓度升高的情况下,苗N浓度平均降低了57%,在接种链球菌的幼苗中最低。尽管降低了苗N浓度,但幼苗的碳吸收量表明DSE真菌提高了植物养分的利用效率,因此在CO升高的情况下对植物更有利。

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