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Nutrient Limitation of Native and Invasive N2-Fixing Plants in Northwest Prairies

机译:西北大草原天然和入侵性N2固定植物的营养限制

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摘要

Nutrient rich conditions often promote plant invasions, yet additions of non-nitrogen (N) nutrients may provide a novel approach for conserving native symbiotic N-fixing plants in otherwise N-limited ecosystems. Lupinus oreganus is a threatened N-fixing plant endemic to prairies in western Oregon and southwest Washington (USA). We tested the effect of non-N fertilizers on the growth, reproduction, tissue N content, and stable isotope δ15N composition of Lupinus at three sites that differed in soil phosphorus (P) and N availability. We also examined changes in other Fabaceae (primarily Vicia sativa and V. hirsuta) and cover of all plant species. Variation in background soil P and N availability shaped patterns of nutrient limitation across sites. Where soil P and N were low, P additions increased Lupinus tissue N and altered foliar δ15N, suggesting P limitation of N fixation. Where soil P was low but N was high, P addition stimulated growth and reproduction in Lupinus. At a third site, with higher soil P, only micro- and macronutrient fertilization without N and P increased Lupinus growth and tissue N. Lupinus foliar δ15N averaged −0.010‰ across all treatments and varied little with tissue N, suggesting consistent use of fixed N. In contrast, foliar δ15N of Vicia spp. shifted towards 0‰ as tissue N increased, suggesting that conditions fostering N fixation may benefit these exotic species. Fertilization increased cover, N fixation, and tissue N of non-target, exotic Fabaceae, but overall plant community structure shifted at only one site, and only after the dominant Lupinus was excluded from analyses. Our finding that non-N fertilization increased the performance of Lupinus with few community effects suggests a potential strategy to aid populations of threatened legume species. The increase in exotic Fabaceae species that occurred with fertilization further suggests that monitoring and adaptive management should accompany any large scale applications.
机译:营养丰富的条件通常会促进植物入侵,但是添加非氮(N)养分可能为在其他氮有限的生态系统中保护天然共生固氮植物提供一种新颖的方法。羽扇豆(Lupinus oreganus)是俄勒冈州西部和华盛顿西南部(美国)大草原特有的一种受威胁的固氮植物。我们在土壤磷(P)和氮有效性不同的三个位置上测试了非氮肥对羽扇豆生长,繁殖,组织氮含量和稳定同位素δ 15 N组成的影响。我们还检查了其他豆科(主要是豌豆和印度锦葵)的变化以及所有植物物种的覆盖率。背景土壤磷和氮有效性的变化塑造了各地间养分限制的模式。在土壤磷和氮较低的地方,磷的添加会增加羽扇豆组织中的氮,并改变叶面的δ 15 N,表明磷对固氮的限制。在土壤磷低但氮高的地方,磷的添加促进了羽扇豆的生长和繁殖。在第三个地点,土壤P较高,只有微量和常量营养素施肥而没有N和P时,会增加羽扇豆的生长和组织N。羽扇豆叶片δ 15 N在所有处理中平均为-0.010‰,随施肥量的变化很小组织N,暗示固定N的使用一致。相反,蚕豆的叶片δ 15 N。随着组织N的增加,向0‰的方向移动,这表明促进N固着的条件可能使这些外来物种受益。施肥增加了非目标外来豆科的覆盖,固氮和组织氮,但是整个植物群落结构仅在一个位置发生了变化,而且仅在分析中排除了优势羽扇豆之后。我们的发现非氮肥可提高羽扇豆的生长性能,而对社区的影响却很小,这表明一种潜在的策略可以帮助濒临灭绝的豆科植物种群。受精过程中外来的豆科植物物种的增加进一步表明,监测和适应性管理应伴随任何大规模应用。

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