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首页> 外文期刊>Soil & Tillage Research >Effects of soil compaction and arbuscular mycorrhiza on corn (Zea mays L.) nutrient uptake.
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Effects of soil compaction and arbuscular mycorrhiza on corn (Zea mays L.) nutrient uptake.

机译:土壤压实和丛枝菌根对玉米(Zea mays L.)养分吸收的影响。

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摘要

Soil compaction is of great importance, due to its adverse effects on plant growth and the environment. Mechanical methods to control soil compaction may not be economically and environmentally friendly. Hence, we designed experiments to test the hypothesis that use of plant symbiotic fungi, arbuscular mycorrhiza (AM) may alleviate the stressful effects of soil compaction on corn (Zea mays L.) growth through enhancing nutrient uptake. AM continuously interact with other soil microorganisms and its original diversity may also be important in determining the ability of the fungi to cope with the stresses. Hence, the objectives were: (1) to determine the effects of soil compaction on corn nutrient uptake in unsterilized (S1) and sterilized (S2) soils, and (2) to determine if inoculation of corn with different species of AM with different origins can enhance corn nutrient uptake in a compacted soil. Using 2 kg weights, soils (from the field topsoil) of 10 kg pots were compacted at three and four levels (C1, C2, C3 and C4) (C1=non-compacted control) in the first and second experiment, respectively. Corn (cv. 704) seeds were planted in each pot and were inoculated with different AM treatments including control (M1), Iranian Glomus mosseae (M2), Iranian G. etunicatum (M3), and Canadian G. mosseae, received from GINCO (Glomales In Vitro Collection), Canada (M4). Corn leaf nutrient uptake of N, P, K, Fe, Mn, Zn and Cu were determined. Higher levels of compaction reduced corn nutrient uptake, however different species of AM and soil sterilization significantly increased it. The highest increase in nutrient uptake was related to P (60%) and Fe (58%) due to treatment M4S2C3. Although it seems that M3 and M4 may be the most effective species on corn nutrient uptake in a compacted soil, M2 increased nutrient uptake under conditions (C3 and C4 in unsterilized soil) where the other species did not. Through increasing nutrient uptake AM can alleviate the stressful effects of soil compaction on corn growth.
机译:由于土壤压实对植物生长和环境具有不利影响,因此土壤压实非常重要。控制土壤压实的机械方法可能在经济和环境方面都不友好。因此,我们设计了实验来检验以下假设:使用植物共生真菌,丛枝菌根(AM)可以通过增加养分吸收来减轻土壤压实对玉米(Zea mays L.)生长的压力影响。 AM与其他土壤微生物持续相互作用,其原始多样性对于确定真菌应对压力的能力也很重要。因此,目标是:(1)确定土壤压实对未灭菌(S1)和灭菌(S2)土壤中玉米养分吸收的影响,以及(2)确定是否接种不同来源,不同来源的AM的玉米可以在密实的土壤中增加玉米养分的吸收。在第一个和第二个实验中,分别使用2 kg砝码将10 kg盆的土壤(来自田间表土)压实成三个和四个级别(C1,C2,C3和C4)(C1 =非压实对照)。将玉米(cv。704)种子种植在每个盆中,并用不同的AM处理接种,包括对照(M1),伊朗 Glomus mosseae (M2)和伊朗 G。牛肝菌(M3)和加拿大 G。 mosseae ,来自加拿大(M4)的GINCO(Glomales 体外馆藏)。测定玉米叶片对氮,磷,钾,铁,锰,锌和铜的养分吸收。较高的压实水平降低了玉米对养分的吸收,但是不同种类的AM和土壤灭菌显着增加了玉米的养分吸收。通过处理M4S2C3,最大的养分吸收与P(60%)和Fe(58%)有关。尽管看起来M3和M4可能是压实土壤中最有效的玉米养分吸收物种,但M2在其他物种没有的条件下(未灭菌土壤中的C3和C4)增加了养分吸收。通过增加养分吸收,AM可以减轻土壤压实对玉米生长的压力作用。

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