[树种组合对南亚热带种植园根瘤土壤中生物可利用磷成分的影响]。

Q3 Environmental Science
Jin-Feng Li, Hui Wang, Ye-Ming You, Jian Wang, Xiu-Li Tong, Jia-Jia Hu, An-Gang Ming, Lin Chen, Shi-Rong Liu
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引用次数: 0

摘要

通过树种选择和组合提高土壤磷(P)的供应量并促进树木生长是一个关键问题。我们采用随机区组实验设计在南亚热带地区进行了造林实验,树种丰富度分别为 1、2、4 和 6 种,包括 Massoniana Pinus、Mytilaria laosensis、Erythrophleum fordii、Castanopsis hystrix、Michelia macclurei、Manglietia glauca、Aquilaria sinensis 和 Dalbergia odorifera。我们测量了生物可利用磷的成分(CaCl2-P、柠檬酸-P、酶-P 和 HCl-P),并研究了不同树种组合对生物可利用磷成分和树木生长的影响。结果表明,与非固氮树种相比,固氮树种(E. fordii 和 D. odorifera)的混合能有效提高土壤水分、全氮、全磷和微生物生物量磷(MBP)的含量。混合固氮树种分别显著提高了 CaCl2-P 含量 46.2% 至 160.3%、微生物矿化产生的酶-P 含量 69.3% 至 688.2%、HCl-P 含量 31.5% 至 81.3%、MBP 含量 81.8% 至 149.4%、微生物生物量 N(MBN)88.1% 至 160.6%。冗余和相关分析结果表明,MBP、可利用磷、总磷、L-亮氨酸氨肽酶、纤维生物糖、酸性磷酸酶、MBN和土壤有机碳是导致根瘤土壤生物可利用磷变化的关键因素。在这项研究中,固氮树种的混合增加了根瘤土壤生物可利用钾的含量,从而促进了树木的生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Effects of tree species assembly on bioavailable P components in rhizosphere soil of southern subtropical plantation].

Improving the availability of soil phosphorus (P) and promoting tree growth through tree species selection and assembly are the critical issue. We conducted an afforestation experiment following randomized block experimental design with 1, 2, 4, and 6 tree species richness in south subtropics, including Pinus massoniana, Mytilaria laosensis, Erythrophleum fordii, Castanopsis hystrix, Michelia macclurei, Manglietia glauca, Aquilaria sinensis, and Dalbergia odorifera. We measured the bioavailable P components (CaCl2-P, citrate-P, enzyme-P and HCl-P) and examined the effects of different tree species assembly on bioavailable P components and tree growth. The results showed that, compared with non-nitrogen-fixing tree species, the mixing of nitrogen-fixing tree species (E. fordii and D. odorifera) effectively increased the contents of soil water, total nitrogen, total phosphorus, and microbial biomass P (MBP). The assembly of specific tree species improved the accumulation of bioavailable P. Mixing of nitrogen-fixing tree species significantly increased CaCl2-P content by 46.2% to 160.3%, the enzyme-P content produced by microbial mineralization by 69.3% to 688.2%, and HCl-P by 31.5% to 81.3%, increased MBP by 81.8% to 149.4%, and microbial biomass N (MBN) by 88.1% to 160.6%, respectively. Redundancy and correlation analysis results showed that MBP, available P, total phosphorus, L-leucine aminopeptidase, cellobiose, acid phosphatase, MBN and soil organic carbon were key factors driving the variation of rhizosphere soil bioavailable P. Mixing of nitrogen-fixing tree species increased enzyme-P and citrate-P, and the availability of which were positively correlated to tree basal area. In this study, mixing of nitrogen-fixing tree species increased the rhizosphere soil bioavailable P content, which facilitates tree growth.

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应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
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0.00%
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11393
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