Research on the Impact of Drought Environment on Plant Community Diversity Based on Differential Equation Models

Author:

Li Wang,Su Taorui,Yang Zhuoheng

Abstract

Plants play a crucial role in the influence of ecological environment. In order to predict the changes of plant communities in dry weather, this paper firstly collected monitoring data from a sample of grassland ecological stations from the China Biological Research Network (CERN), and constructed a linear model for the changes of plant communities under different climatic conditions, and since the linear correlation of this model was not strong, this paper then constructed a new non-linear correlation model. Firstly, the interspecific competition model of vegetation community was constructed from the interspecific competition model, and then the functional relationship between drought rate and plant growth rate was obtained using the logistic function, and the multi-species competition model was improved. Finally, data from ecological stations were used to visualise vegetation competition and development.

Publisher

Darcy & Roy Press Co. Ltd.

Reference10 articles.

1. Du Fuzhen. Response of plant community composition to extreme precipitation events in meadow steppe, Inner Mongolia [D]. Northwest agriculture and forestry university of science and technology, 2022.

2. Xue Chenyang, Li Xianghu, Tan Zhiqiang et al. Relationship between plant community stability and species diversity in a typical shoal wetland of Poyang Lake [J]. Ecological science, 2022, 9 (02) : 1-10.

3. Yan Ruirui, Chen Baorui, Zhang Baohui et al. A dataset of plant community characteristics of Leymus chinensis grassland in Hulunbuir (2009-2015)[J]. Journal of agricultural data, 2021, 3 (02) : 75-78.

4. Zhao Yudong. Regulation of plant diversity on soil fungal community response to drought and plant invasion [D]. Huazhong agricultural university, 2022.

5. PARK S E, and others. The Theory and Application of Plant Competition Models: An Agronomic Perspective[J]. Annals of Botany, 2013, 92(6): 741–748.

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