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Above- and below-ground biomass relationships of Leucaena leucocephala (Lam.) de Wit in different plant stands

机译:不同植物林中白桦(Leucaena leucocephala(Lam。)de Wit)的地下和地下生物量关系

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摘要

The above and below–ground biomass (AGB and BGB) relationship is often used to assess the impact of biotic and abiotic effects on the growth and development of individual plants. The AGB and BGB relationship of the same tree species in different habitats can change significantly because of environmental stress. To investigate how the tree size, the biomass allocation and BGB/AGB ratio of Leucaena leucocephala (Lam.) de Wit varied according to spacing and mixed plant patterns in a valley–type savanna of southwest China, we examined the growth of L. leucocephala, and sampled 23 individuals for biomass measurement in each of four treatments (close/wide spacing of Leucaena leucocephala monocultures, mixed plantation of Leucaena leucocephala and Eucalyptus camaldulensis, and mixed plantation of Leucaena leucocephala and Eucalyptus citriodora), and then determined the regression relationships between AGB and BGB of L. leucocephala in different plant stands. Our results indicated that mixed planting significantly reduced all growth metrics for the tree sizes of L. leucocephala and increased the value of BGB/AGB. Changing plant spacing in monocultures had a significant impact on AGB and TB (Total Biomass) of L. leucocephala, but it had no significant effect on the other metrics. Within mixed plant schemes, L. leucocephala significantly reduced the biomass allocation to leaves and small roots and increased the allocation to coarse root biomass. There were no significant differences in tree size and biomass allocation of L. leucocephala between different spacing regimes in monocultures or between different mixtures in mixed plant stands. The correlation between BGB and AGB of L. leucocephala in all plant stands was consistent with the model of allometric growth, and AGB can be used to accurately estimate BGB. Interestingly, the correlations were not exactly the same. BGB and AGB in monoculture showed isometric growth, and their values in mixed plant stands showed allometric growth. BGB also increased faster than AGB. The findings indicated that L. leucocephala allocated more biomass to the root system when it was planted with Eucalyptus.
机译:地上和地下生物量(AGB和BGB)的关系通常用于评估生物和非生物效应对单个植物生长和发育的影响。由于环境压力,同一树种在不同生境中的AGB和BGB关系可能发生显着变化。为了研究中国西南山谷型稀树草原中白桦(Leucaena leucocephala(Lam。)de Wit)的树木大小,生物量分配和BGB / AGB比率如何根据间隔和混合植物模式的变化而变化,我们研究了白桦(L. leucocephala)的生长。 ,并在四种处理(白云杉单培养的近/宽间距,白云杉和桉树混合种植以及白云杉和柠檬桉的混合种植)的每种处理中分别采样了23个人进行生物量测量,然后确定了两者之间的回归关系不同植物种的白头参的AGB和BGB。我们的结果表明,混合种植显着降低了白头参树的所有生长指标,并增加了BGB / AGB的价值。单一栽培中改变植物间距对白头参的AGB和TB(总生物量)有显着影响,但对其他指标没有显着影响。在混合植物方案中,白头粉虱显着减少了对叶片和小根生物量的分配,并增加了对粗根生物量的分配。 L 的树木大小和生物量分配没有显着差异。在单一栽培中不同间隔方式之间或在混合植物林中不同混合物之间的 leucocephala 。 Bem与 L 的AGB之间的相关性。所有植株的 leucocephala 与异速生长模型一致,AGB可用于准确估算BGB。有趣的是,相关性并不完全相同。单培养中的BGB和AGB显示等长增长,而在混合植物林中它们的值显示等长增长。 BGB的增长也快于AGB。结果表明 L leucocephala 种植 Eucalyptus 后,可为根系分配更多的生物量。

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