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共生固氮调节中的时间滞后

Time lags in the regulation of symbiotic nitrogen fixation.

作者信息

Bytnerowicz Thomas A, Griffin Kevin L, Menge Duncan N L

机构信息

Department of Ecology, Evolution and Environmental Biology, Columbia University, New York, NY, 10027, USA.

Department of Integrative Biology, University of Texas at Austin, Austin, TX, 78712, USA.

出版信息

New Phytol. 2025 Aug;247(4):1680-1693. doi: 10.1111/nph.70295. Epub 2025 Jun 11.

Abstract

Theory has shown that time lags in the regulation of symbiotic nitrogen (N) fixation (SNF) can be important to the competitive dynamics and ecosystem consequences of N-fixing trees, but measurements of these time lags are lacking. Here, we used a novel method to measure SNF in seedlings of four N-fixing tree species that represent tropical and temperate origins and actinorhizal and rhizobial symbiotic associations, each grown under warm and cold temperature regimes. We added N to previously N-poor pots to induce downregulation and flushed N out of previously N-rich pots to induce upregulation. It took 31-51 d for SNF to decline by 95%, with faster downregulation in temperate species and at warm temperatures. Upregulation by 95% took 108-138 d in total, including 21-57 d after SNF was first detectable. SNF started earlier in rhizobial symbioses, but increased faster once it started in actinorhizal symbioses. These results suggest that time lags in regulating SNF represent a significant constraint on facultative SNF and can lead to large losses of available N from ecosystems, providing a resolution to the paradox of sustained N richness.

摘要

理论表明,共生固氮(SNF)调节中的时间滞后对于固氮树木的竞争动态和生态系统后果可能很重要,但目前缺乏对这些时间滞后的测量。在此,我们使用一种新方法来测量四种固氮树种幼苗中的SNF,这些树种代表热带和温带起源以及放线菌根和根瘤菌共生关系,每种树种都在温暖和寒冷温度条件下生长。我们向先前缺氮的花盆中添加氮以诱导下调,并将氮从先前富氮的花盆中冲洗掉以诱导上调。SNF下降95%需要31 - 51天,温带树种和在温暖温度下的下调速度更快。上调95%总共需要108 - 138天,包括SNF首次可检测到后的21 - 57天。SNF在根瘤菌共生中开始得更早,但一旦在放线菌根共生中开始,增加速度更快。这些结果表明,调节SNF的时间滞后对兼性SNF构成了重大限制,并可能导致生态系统中可利用氮的大量损失,为持续氮丰富的悖论提供了解决方案。

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