间作米茜草对幼年橡胶园土壤特性和微生物数量的影响

IF 1.2 4区 化学 Q4 POLYMER SCIENCE
Dongling Qi, Fang Zhang, Zhixiang Wu, Xiaobo Yang, Guoyu Lan, Chuan Yang
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引用次数: 0

摘要

橡胶树是许多热带国家种植的重要经济树种。橡胶种植改善了种植者的生活,但也导致了土壤退化。然而,有关橡胶种植园土壤健康评估及其管理的系统研究却十分有限。本研究采用随机完全区组设计,探讨了橡胶种植园间作种植 Michelia macclurei(一种观赏性常绿树种)是否有助于保护土壤健康。单作和间作的橡胶树密度相同,但间作中增加了大叶紫薇。利用田间小块土壤取样分析了橡胶单作和橡胶间作两种不同种植模式对土壤特性和微生物群落的影响。该研究调查了两种橡胶种植模式下土壤物理结构、土壤水分、土壤养分、土壤微生物和酶活性的变化,即不种植间作作物的单株橡胶种植模式(RM)和种植大叶紫胶(Michelia macclurei)作为间作作物的橡胶种植模式(RAS)。上述研究结果表明,与不种植间作作物的单品种种植园相比,种植间作作物的种植园土壤有机碳(SOC)、全氮(TN)、铵态氮(AN)、可利用磷(AP)、硝酸盐氮(NN)和全钾(TK)均有所增加。与 RAS 的相应值相比,RAS 的细菌和微生物丰度总量分别平均增加了 75.51% 和 48.42%。此外,从橡胶单一种植过渡到橡胶农林业后,土壤中的 SOC、TN、AP、TK 养分和 pH 值的年平均值分别增加了 10.94%、4.25%、14.53%、1.34% 和 9.74%。土壤含水量、土壤容重和土壤孔隙度在 RM 和 RAS 处理之间没有显著差异。在 RAS 间作系统中,蔗糖酶活性和纤维素酶活性也有所提高。这些结果表明,间作能促进土壤有机质和微生物群落,提高土壤酶活性。这些研究结果表明,橡胶间作能创造有利于橡胶树生长的健康土壤环境,改善橡胶种植园生态系统的可持续性。更健康、更强壮的橡胶树可提高橡胶产量,并在未来实现种植园的可持续管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of Michelia macclurei intercropping on soil properties and microbial population in young rubber plantation

Effect of Michelia macclurei intercropping on soil properties and microbial population in young rubber plantation

The rubber tree is an economically important tree planted in many tropical countries. While rubber planting has improved the livelihoods of growers, it has also resulted in soil degradation. However, systematic studies on assessment of soil health and its management in rubber plantations are limited. The present study explored whether intercropping of Michelia macclurei (an ornamental evergreen tree) in rubber plantation could help conserve soil health compared to traditional monoculture practice with randomised complete block design. The rubber tree density was the same in monoculture and intercropping, with the addition of Michelia macclurei in intercropping. The effects of soil properties and microbial communities was used to analyse two different planting patterns of rubber monoculture and rubber intercropping using soil sampling from field plots. The study investigated variation in soil physical structure, soil moisture, soil nutrients, soil microbes, and enzyme activities in two types of rubber plantations viz. a monoclonal plantation without intercrop (RM) and a plantation with Michelia macclurei as an intercrop (RAS). The results from above study showed an increase in soil organic carbon (SOC), total nitrogen (TN), ammonium nitrogen (AN), available phosphorus (AP), nitrate nitrogen (NN) and total potassium (TK) in plantation with intercrop as compared to monoclonal plantation without intercrop. When comparing the corresponding values of RM to RAS, bacteria and total microbial abundance of RAS increased on average by 75.51% and 48.42%, respectively. In addition, after the transition from rubber monoculture to rubber agroforestry, the annual average of SOC, TN, AP, TK nutrients and pH in soil increased by 10.94%, 4.25%, 14.53%, 1.34% and 9.74%, respectively. Soil water content, soil bulk density and soil porosity were not significantly different between RM and RAS treatments. Sucrase activity and cellulase activity also increased in the RAS intercropping system. These results show that intercropping promotes soil organic matter and microbial communities and enhances soil enzyme activities. These findings indicate that rubber intercropping creates healthy soil environments conducive to tree growth and improves the ecosystem sustainability of rubber plantations. Healthier and stronger rubber trees may increase rubber production and provide sustainable management of plantations in the future.

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来源期刊
Journal of Rubber Research
Journal of Rubber Research 化学-高分子科学
自引率
15.40%
发文量
46
审稿时长
3 months
期刊介绍: The Journal of Rubber Research is devoted to both natural and synthetic rubbers, as well as to related disciplines. The scope of the journal encompasses all aspects of rubber from the core disciplines of biology, physics and chemistry, as well as economics. As a specialised field, rubber science includes within its niche a vast potential of innovative and value-added research areas yet to be explored. This peer reviewed publication focuses on the results of active experimental research and authoritative reviews on all aspects of rubber science. The Journal of Rubber Research welcomes research on: the upstream, including crop management, crop improvement and protection, and biotechnology; the midstream, including processing and effluent management; the downstream, including rubber engineering and product design, advanced rubber technology, latex science and technology, and chemistry and materials exploratory; economics, including the economics of rubber production, consumption, and market analysis. The Journal of Rubber Research serves to build a collective knowledge base while communicating information and validating the quality of research within the discipline, and bringing together work from experts in rubber science and related disciplines. Scientists in both academia and industry involved in researching and working with all aspects of rubber will find this journal to be both source of information and a gateway for their own publications.
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