首页> 外文期刊>New Forests >Mycorrhizal dependency and growth responses of Acacia nilotica and Albizzia lebbeck to inoculation by indigenous AM fungi as influenced by available soil P levels in a semi-arid Alfisol wasteland
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Mycorrhizal dependency and growth responses of Acacia nilotica and Albizzia lebbeck to inoculation by indigenous AM fungi as influenced by available soil P levels in a semi-arid Alfisol wasteland

机译:在半干旱Alfisol荒地中可用土壤P含量的影响下,金合欢和Albizzia lebbeck对本地AM真菌接种的菌根依赖性和生长反应

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A series of available phosphorus (Olsen) levels ranging from 10 to 40 ppm were achieved in a semi-arid soil. The influence of the levels of phosphorus on the symbiotic interaction between two subtropical tree species, Acacia nilotica and Albizzia lebbeck, and a mixed inoculum of indigenous arbuscular mycorrhizal (AM) fungi was evaluated in a greenhouse study. The extent to which the plant species depended on AM fungi for dry matter production decreased as the levels of soil P increased, but the degree of this decrease differed in the two species tested. Acacia nilotica colonized by AM fungi showed a significant increase in shoot P and dry matter at a soil P level of 10 ppm whereas in Albizzia lebbeck, such increase occurred at 20 ppm. Mycorrhizal inoculation response disappeared beyond soil P levels of 25 ppm in Acacia nilotica and 30 ppm in Albizzia lebbeck. Levels of soil P greater than 25 ppm suppressed AM fungus colonization in both species. Soil P levels of 30 and 40 ppm and 40 ppm caused negative mycorrhizal dependencies (MD) in Acacia nilotica and Albizzia lebbeck respectively. Values of MD for both species were negatively correlated with soil P levels. Based on the MD values, regression equations were developed to predict MD for given levels of available P.
机译:在半干旱土壤中获得了一系列的有效磷(Olsen),浓度范围为10至40 ppm。在温室研究中,评估了磷水平对两种亚热带树种(金合欢和Albizzia lebbeck)以及本地接种的丛枝菌根(AM)真菌混合接种物之间共生相互作用的影响。随着土壤P含量的增加,植物物种对AM真菌的依赖程度达到了干物质生产的程度,但在两种受试物种中,这种降低的程度有所不同。在土壤磷水平为10 ppm时,由AM真菌定植的金合欢树显示出茎P和干物质的显着增加,而在Albizzia lebbeck,这种增加发生在20 ppm时。菌根接种反应在尼古丁相思的土壤P水平超过25 ppm且在Albizzia lebbeck达到30 ppm时消失。土壤P的含量大于25 ppm会抑制AM真菌在两个物种中的定殖。土壤磷含量分别为30 ppm和40 ppm和40 ppm会导致尼古拉相思树和Albizzia lebbeck菌根的负依赖性(MD)。两种物种的MD值均与土壤P水平呈负相关。基于MD值,开发了回归方程来预测给定水平的可用P的MD。

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