Which Has a Greater Impact on Plant Functional Traits: Plant Source or Environment?

Author:

Xian Ling1,Yang Jiao2,Muthui Samuel Wamburu134ORCID,Ochieng Wyckliffe Ayoma134ORCID,Linda Elive Limunga5,Yu Junshuang6ORCID

Affiliation:

1. Core Botanical Gardens/Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan 430074, China

2. School of Life Sciences, Hubei University, Wuhan 430062, China

3. Sino-Africa Joint Research Centre, Chinese Academy of Sciences, Wuhan 430074, China

4. University of the Chinese Academy of Sciences, Beijing 101408, China

5. School of Resources and Environmental Science, Hubei University, Wuhan 430062, China

6. Changjiang Water Resources and Hydropower Development Group Co., Ltd., Wuhan 430010, China

Abstract

The deterioration of water quality caused by human activities has triggered significant impacts on aquatic ecosystems. Submerged macrophytes play an important role in freshwater ecosystem restoration. Understanding the relative contributions of the sources and environment to the adaptive strategies of submerged macrophytes is crucial for freshwater restoration and protection. In this study, the perennial submerged macrophyte Myriophyllum spicatum was chosen as the experimental material due to its high adaptability to a variable environment. Through conducting reciprocal transplant experiments in two different artificial environments (oligotrophic and eutrophic), combined with trait network and redundancy analysis, the characteristics of the plant functional traits were examined. Furthermore, the adaptive strategies of M. spicatum to the environment were analyzed. The results revealed that the plant source mainly influenced the operational pattern among the traits, and the phenotypic traits were significantly affected by environmental factors. The plants cultured in high-nutrient water exhibited a higher plant height, longer leaves, and more branches and leaves. However, their physiological functions were not significantly affected by the environment. Therefore, the adaptation strategy of M. spicatum to the environment mainly relies on its phenotypic plasticity to ensure the moderate acquisition of resources in the environment, thereby ensuring the stable and efficient operation of plant physiological traits. The results not only offered compelling evidence on the adaptation strategies of M. spicatum in variable environments but also provided theoretical support for the conservation of biodiversity and sustainable development.

Funder

National Natural Science Foundation of China

Scientific Research Project of South-to-North Water Diversion Central Water Source Co., Ltd.

Publisher

MDPI AG

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