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首页> 外文期刊>Agricultural Water Management >Can intercropping with the Chinese medicinal herbs change the water use of the aged rubber trees?
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Can intercropping with the Chinese medicinal herbs change the water use of the aged rubber trees?

机译:可以与中药药草的间作改变橡胶树的用水吗?

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摘要

Intercropping the medicine herbs (i.e., Amomum villosum and Clerodendranthus spicatus ) with rubber tree in Xishuangbanna prefecture of southwestern China is regarded as a promising solution to reduce the negative hydrological effects which were caused by the monocultural cultivation of rubber tree and improve the sustainability of aged rubber plantation. However, the water-use characteristics of rubber tree in these agroforestry systems (AFSs) were still rarely reported, and our current understanding of the below-ground competition in such tree and herb AFSs is also insufficient. Therefore, we adopted the techniques of stable isotopes to study the water use efficiency (WUE; through leaf delta C-13) and the water-absorbing patterns (through delta H-2 and delta O-18) of the aged rubber trees and the intercropped herbs for the investigation of their water competition, and we also measured the contents of their leaf carbon (C), nitrogen (N) and phosphorus (P) to check the competition effects on the nutrient status of rubber tree. As the results of Bayesian mixing model (MixSIAR) suggested, the aged rubber trees in the rubber monoculture still absorbed the surface and shallow soil water (0-15 cm depths) mainly, same as the intercropped herbs in these AFSs, but rubber trees in the AFSs prefer to absorb the middle and deep soil water (below 15 cm depths). Such phenomenon verified that the water-absorbing patterns of these aged rubber trees were still flexible. However, the leaf delta C-13 of the rubber trees in these AFSs indicated their WUE was not improved through the intercropping, and thus the soil water content decreased in the AFSs. In short, intercropping the shallow roots medicine herbs (i.e., A. villosum and C. spicatus ) can help the aged rubber trees use deeper soil water, and thus help the rubber tree and intercrops form complementary water-absorbing patterns in the pronounced dry season, but there is no improvement in their WUE and the soil water conditions. In addition, the decreased leaf N of rubber trees in the AFSs suggests that the N absorption of rubber trees was limited. Therefore, intercropping the medicine herbs with rubber tree still need more consideration on the design of such AFSs, especially in terms of the soil water conservation and management.
机译:在中国西南西双版纳州的橡胶树中与橡胶树的药草(即amomum villosum和Clerodendranthus spicatus)被认为是减少橡胶树单覆栽培引起的负水文效应的有希望的解决方案,提高年龄的可持续性橡胶种植园。然而,这些制剂系统(AFSS)中的橡胶树的水性特性仍然很少报道,我们目前对这种树和草后AFS的以下地面竞争的理解也不足。因此,我们采用稳定同位素的技术来研究水使用效率(WUE;通过叶ΔC-13)和吸水模式(通过δH-2和Delta O-18)的老化橡胶树和用于调查他们的水竞争的中草药,我们还测量了叶碳(C),氮(N)和磷(P)的内容物,以检查竞争对橡胶树的营养状况的影响。随着贝叶斯混合模型(MixSiar)的结果,橡胶中的老化橡胶树仍然吸收了表面和浅土壤水(0-15cm深度),主要与这些AFS中的间作草药相同,但橡胶树AFSS更倾向于吸收中部和深水水(低于15厘米的深度)。这种现象证实,这些老年橡胶树的吸水图案仍然是柔性的。然而,这些AFS中的橡胶树的叶δc-13表明它们的WUE通过间作没有改善,因此土壤含水量在AFS中降低。简而言之,间作浅层药草(即villosum和C. spicatus)可以帮助老年橡胶树使用更深的土壤水,从而帮助橡胶树和跨互补的水吸收模式在明显的干燥季节中,但他们的WUE和土壤水条件没有改善。此外,AFS中的橡胶树的叶片N减小表明橡胶树的吸收有限。因此,用橡胶树将药草的间作仍然需要更多考虑这些AFS的设计,尤其是土壤水保和管理方面的设计。

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