Responding to Future Earth's Biodiversity Goals: Implementing Ecological Services, Agricultural Diversity and Bioresource Sustainability of the Shallow Mountain Slope Ecosystem in Dongshan Distric

T. Chiang
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Abstract

Climate change and the resultant extreme weather events have disrupted agricultural ecosystems. In South Taiwan, serious droughts and unpredictable, heavy rainfall have caused slope sliding at lowland areas and led to significant agricultural and economic loss. A team of researchers led by Professor Tzen-Yuh Chiang, that includes Dr Tsai-Wen Hsu and Professor Yu-Chung Chiang, and is based at the University Social Responsibility, National Cheng Kung University, Taiwan, wants to drive change in farming practices in the Dong Shan district, Taiwan. In work supported by the Ministry of Science and Technology in Taiwan, the team is introducing a combination of natural and microbial farming practices. As such, the researchers have isolated and reformulated microbial fertilisers in the lab and applied them to enforce the health of crop roots. They have found that many insects and birds are now back on the farm, acting as biological control, which removes the need for pesticides. The overall goal of the project is to rebuild the vegetation and natural ecosystem along the slopes of lowlands. Key to this is stopping slope exploration, along with using microbial farming practices to enforce and ensure the health of crops. The project's success also relies on the use of microbial technology to culture microbes with sterile medium, which can then be used as fertilisers. This important work will help to integrate knowledge and policy about the agricultural environment and the agricultural economy.
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响应未来地球生物多样性目标:东山区浅坡生态系统的生态服务、农业多样性和生物资源可持续性
气候变化和由此产生的极端天气事件破坏了农业生态系统。在台湾南部,严重的干旱和不可预测的强降雨造成了低地地区的滑坡,造成了重大的农业和经济损失。在台湾国立成功大学社会责任学院,由蒋振宇教授领导的一个研究小组,包括徐再文博士和蒋育忠教授,希望推动台湾东山区农业实践的改变。在台湾科技部支持的工作中,该团队正在引入自然和微生物耕作方法的结合。因此,研究人员在实验室中分离并重新配制了微生物肥料,并应用它们来加强作物根系的健康。他们发现,许多昆虫和鸟类现在又回到了农场,起到了生物控制的作用,从而消除了对杀虫剂的需求。该项目的总体目标是重建低地斜坡上的植被和自然生态系统。解决这一问题的关键是停止对斜坡的勘探,同时使用微生物耕作方法来加强和确保作物的健康。该项目的成功还依赖于利用微生物技术用无菌培养基培养微生物,然后将其用作肥料。这项重要的工作将有助于整合有关农业环境和农业经济的知识和政策。
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