Litter removal increases the plant carbon input to soil in a Pinus massoniana plantation
Chengfu Zhang, Yinmei Cai, Tao Zhang, Tengbing He, Jie Li, Xinying Li, Qingxia Zhao
Abstract
Chengfu Zhang, Yinmei Cai, Tao Zhang, Tengbing He, Jie Li, Xinying Li, Qingxia Zhao
Abstract
Plants are the main sources of soil organic carbon in forest ecosystems. Photosynthetic C assimilated by plants enters the soil through litter, root litter, and root exudates. However, it remains unclear how litter changes affect the plant-C input. We aimed to quantify the responses of C inputs via the litter, root litter, and root exudates to litter alteration. We conducted a 2 years litter manipulation (litter removal, litter addition, and control) experiment in a Pinus massoniana plantation and studied its impacts on plant-C inputs via litter, fine root litter, and root exudates. The results show that litter removal significantly increases the litterfall in summer and autumn and reduces root-C exudation rates in spring but has no effect on the C input by fine roots. The annual C inputs by litter, fine roots, and root exudates in the control plots were 348.28, 42.39, and 17.44 g C m −2 , respectively, accounting for 85.34%, 10.39%, and 4.27% of the total C input, respectively. Litter removal increases the plant annual total C input by 24.55% due to the decrease in the root exudate-C input by 30.50% and increase in the litter-C input by 31.12%. In contrast, litter addition insignificantly affects the C input through litter, fine roots, or root exudates. Increasing the litter-C input and decreasing the root exudate-C input by litter removal are a plant strategy based on which forest growth can be maximized in the short term. The increased plant-C input due to litter removal mitigates the effects of litter alteration. This study is of great significance for understanding plant growth strategies.
OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Plants are the main sources of soil organic carbon in forest ecosystems. Photosynthetic C assimilated by plants enters the soil through litter, root litter, and root exudates. However, it remains unclear how litter changes affect the plant-C input. We aimed to quantify the responses of C inputs via the litter, root litter, and root exudates to litter alteration. We conducted a 2 years litter manipulation (litter removal, litter addition, and control) experiment in a Pinus massoniana plantation and studied its impacts on plant-C inputs via litter, fine root litter, and root exudates. The results show that litter removal significantly increases the litterfall in summer and autumn and reduces root-C exudation rates in spring but has no effect on the C input by fine roots. The annual C inputs by litter, fine roots, and root exudates in the control plots were 348.28, 42.39, and 17.44 g C m −2 , respectively, accounting for 85.34%, 10.39%, and 4.27% of the total C input, respectively. Litter removal increases the plant annual total C input by 24.55% due to the decrease in the root exudate-C input by 30.50% and increase in the litter-C input by 31.12%. In contrast, litter addition insignificantly affects the C input through litter, fine roots, or root exudates. Increasing the litter-C input and decreasing the root exudate-C input by litter removal are a plant strategy based on which forest growth can be maximized in the short term. The increased plant-C input due to litter removal mitigates the effects of litter alteration. This study is of great significance for understanding plant growth strategies.
Key concepts: Litter, Pinus massoniana, Plant litter, Exudate, Agronomy, Ecosystem, Soil carbon, Biology