...
首页> 外文期刊>The Journal of Applied Ecology >Can intercropping with the world's three major beverage plants help improve the water use of rubber trees?
【24h】

Can intercropping with the world's three major beverage plants help improve the water use of rubber trees?

机译:间作能与世界三大吗饮料植物有助于提高水的使用橡胶树呢?

获取原文
获取原文并翻译 | 示例

摘要

The dramatic expansion of rubber plantations in mainland South-East Asia and south-west China has caused many eco-environmental problems, especially negative hydrological consequences. These problems have gradually worsened and pose formidable threats to rubber agriculture, especially in the light of increasingly frequent extreme weather events. Although rubber-based agroforestry systems are regarded as the best solution for improving the sustainability of rubber agriculture and environmental conservation, plant water use and related interactions have rarely been examined in such systems. We primarily used stable isotope (D, O-18 and C-13) methods to test whether intercropping could improve the water use and extreme weather tolerance (extreme cold and drought in our study) of rubber trees in three types of promising agroforestry systems (i.e. rubber with tea, coffee and cocoa) in Xishuangbanna, China. We found that the rubber tree is a drought-avoidance plant with strong plasticity with respect to water uptake. This characteristic is reflected by its ability to cope with serious seasonal drought, allowing it to avoid interspecific competition for water. The rubber trees showed wasteful water behaviour unless they were intercropped with tea or coffee. However, these intercropped species exhibited drought-tolerance strategies and maintained lower water use efficiencies to strengthen their competitive capacity for surface soil water. The stable C-13 values of the intercrop leaves indicated that all the agroforestry systems have stable internal microclimatic environments or higher resistance.Synthesis and applications. This study suggests that interspecific competition for water can enhance the water use efficiency of drought-avoidance plants (i.e. rubber trees) and lead to complementarity between the root distributions of plants in rubber agroforestry systems (i.e. rubber with tea, coffee and cocoa). All agroforestry systems have higher resistance, but tea was the most suitable intercrop in terms of water use because the interspecific competition for water was moderate and the agroforestry system retained much more soil water and improved the water use efficiency of the rubber tree. Considering the root characteristics of the tea trees, we suggest that the crops selected for intercropping with rubber trees should have a relatively fixed water use pattern, short lateral roots and a moderate amount of fine roots that overlap with the roots of the rubber trees in the shallow soil layer.
机译:橡胶种植园的急剧扩张东南亚和西南中国大陆导致许多生态环境问题,尤其是负面水文的后果。这些问题逐渐恶化和姿势强大的威胁橡胶农业、特别是在日益频繁的光极端天气事件。农林复合经营系统被认为是最好的改进的可持续性的解决方案橡胶农业和环境保护,植物水分利用和相关的在这样的互动很少检查系统。O-18和c13)方法来测试是否间作可以改善水的使用和极端天气宽容(极端寒冷和橡胶树的干旱在我们的研究中)3类型的有前途的农林复合经营系统(即。橡胶与茶、咖啡和可可)中中国西双版纳。树是一种drought-avoidance植物,强劲可塑性对水的吸收。特点是反映其能力应付严重的季节性干旱,允许它为了避免种间竞争对水。橡胶树显示浪费水的行为除非他们套种茶或咖啡。然而,这些套种物种展出抗旱策略和低维护加强他们的水分利用效率有竞争力的表层土壤水分的能力。稳定的间作作物的叶子c13值表明,所有的农林复合经营系统内部小气候环境或稳定更高的阻力。本研究表明,种间竞争可以提高水的使用drought-avoidance植物(即效率。橡皮树),导致之间的互补性植物的根分布在橡胶农林复合经营系统(即橡胶与茶,咖啡和可可)。更高的阻力,但茶是最合适的间作水使用,因为种间竞争对水是温和的和农林复合经营系统保留更多土壤水分,提高了水分利用效率橡胶树。茶叶树的特点,我们建议间作的作物选择橡胶树应该有一个相对固定的用水模式,短侧的根和温和重叠的细根的根橡胶树的浅土层。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号