对提高的大气的 CO2 集中,增加的温度和改变的降水的植物根动力学回答能在土壤有机物和生态系统碳平衡是在植物生长和长期的变化之间的一个关键连接。这篇论文考察在这个区域开发的一些实验和假设,它主要包括对提高的 CO2 和全球气候的动力学回答改变的植物罚款根生长,根周转,根呼吸和另外的根。学习根系的一些最近的新方法也被讨论并且总结。它此处认为到提高的大气的 CO2 和全球气候变迁的根周转模式,根呼吸和另外的动态回答的信息的集合能帮助更好理解并且探索一些新研究区域。在这篇论文,一些在全球气候期间在对提高的 CO2 和另外的环境因素的植物根回答研究挑战变化也被表明。
Plant roots dynamics responses to elevated atmospheric CO2 concentration, increased temperature and changed precipitation can be a key link between plant growth and long-term changes in soil organic matter and ecosystem carbon balance. This paper reviews some experiments and hypotheses developed in this area, which mainly include plant fine roots growth, root turnover, root respiration and other root dynamics responses to elevated CO2 and global climate change. Some recent new methods of studying root systems were also discussed and summarized. It holds herein that the assemblage of information about root turnover patterns, root respiration and other dynamic responses to elevated atmospheric CO2 and global climatic change can help to better understand and explore some new research areas. In this paper, some research challenges in the plant root responses to the elevated CO2 and other environmental factors during global climate change were also demonstrated.