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首页> 外文期刊>Plant and Soil >Evaluation of elemental allelopathy in Acroptilon repens (L.) DC. (Russian Knapweed).
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Evaluation of elemental allelopathy in Acroptilon repens (L.) DC. (Russian Knapweed).

机译:评价Acroptilon repens(L.)DC中的元素化感作用。 (俄罗斯象鼻草)。

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Although Acroptilon repens (L.) DC. (Russian knapweed) is known to concentrate zinc (Zn) in upper soil layers, the question of whether the elevated Zn has an allelopathic effect on restoration species has not been addressed. Experiments were conducted to investigate whether soils collected from within infestations of A. repens (high-Zn) inhibit the germination or growth and development of desirable restoration species, compared to soils collected adjacent to an A. repens infestation (low-Zn). Four bioassay species [Sporobolus airoides (Torrey) Torrey (alkali sacaton), Pseudoroegneria spicata (Pursh) A. Love (bluebunch wheatgrass), Psathyrostachys juncea (Fischer) Nevski (Russian wildrye) and A. repens] were germinated in a growth chamber and grown in a greenhouse in both soils and received treatments for the alleviation of Zn toxicity (P, Fe, Fe-oxide, and soil mixing) to isolate the effects of elevated soil Zn on plant performance. Percent germination, total plant biomass, tiller and stem number, inflorescence number, and tissue metal levels were compared among soil types and treatments for each species. There was no evidence from any of the indicators measured that high-Zn soils reduced plant performance, compared to low-Zn soils. Tissue Zn levels barely approached the lower range of phytotoxic levels established for native grasses. Older plants with longer exposure times may accumulate higher Zn concentrations. S. airoides and A. repens both had higher biomass in the high-Zn soil, most likely due to increased macro-nutrient (N and P) availability. As the Zn levels in the soils used in this study were much higher than any levels previously reported in soils associated with A. repens, it is unlikely that the elevation of soil Zn by A. repens will hinder germination or growth and development of desirable grasses during establishment..
机译:尽管Acroptilon依靠(L.)DC。众所周知,俄罗斯的Knapweed(俄罗斯藜)在上层土壤中富集锌(Zn),但尚未解决锌含量升高对恢复物种具有化感作用的问题。进行实验以调查与在白粉虱侵染(低锌)附近采集的土壤相比,从白粉虱侵染(高锌)内部采集的土壤是否抑制发芽或所需的恢复物种的生长和发育。四种生物测定物种[Sporobolus airoides(Torrey)Torrey(碱盐囊),Pseudoroegneria spicata(Pursh)A. Love(bluebunch Wheatgrass),Psathyrostachys juncea(Fischer)Nevski(Russian wildrye)和A. repens萌发)。可在两种土壤的温室中生长,并接受缓解锌毒性的处理(P,Fe,Fe-氧化物和土壤混合),以隔离升高的土壤Zn对植物生长的影响。比较了每种物种的土壤类型和处理方式的发芽率,植物总生物量,分er和茎数,花序数和组织金属含量。没有任何证据表明,与低锌土壤相比,高锌土壤会降低植物的生长性能。组织中的锌含量几乎未达到为天然草确定的较低的植物毒性水平。暴露时间较长的较老植物可能会积累较高的锌浓度。在高锌土壤中,S。airoides和A. repens均具有较高的生物量,这很可能是由于大量养分(N和P)的可利用性增加。由于本研究中所用土壤中的锌含量远高于先前与白僵菌相关的土壤中所报告的任何含量,因此白僵菌对土壤锌的升高不太可能会阻碍理想草的发芽或生长发育在建立过程中

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