Combined Utilization of Chinese Milk Vetch, Rice Straw, and Lime Reduces Soil Available Cd and Cd Accumulation in Rice Grains

Author:

Fang Changyu12,Gao Yajie2,Zhang Jianglin2,Lu Yanhong2,Liao Yulin2,Xie Xue23,Xiao Jian24ORCID,Yu Zhenyu12,Liu Fangxi12,Yuan Haoliang24,Tu Naimei1,Nie Jun234

Affiliation:

1. College of Agronomy, Hunan Agricultural University, Changsha 410128, China

2. Soil and Fertilizer Institute of Hunan Province, Hunan Academy of Agricultural Sciences, Changsha 410125, China

3. College of Resources, Hunan Agricultural University, Changsha 410128, China

4. Longping Branch, College of Biology, Hunan University, Changsha 410125, China

Abstract

Cadmium (Cd) pollution poses a growing threat to rice production in acidic paddies. In south China, a common agricultural practice involves the combined utilization of Chinese milk vetch (M) and rice straw (R). However, it is unclear how the addition of lime to these amendments affects Cd bioavailability and accumulation in soil. Control (CK), chemical fertilizer (F), Chinese milk vetch + rice straw + chemical fertilizer (MRF), and Chinese milk vetch + rice straw + chemical fertilizer + lime (MRFL) treatments were applied to develop a kind of green, efficient, and practical amendment for acidic paddies. We conducted a microplot experiment to explore Cd immobilization in paddy soil and the Cd content in rice grains with these treatments. The results showed that compared with F, the rice Cd in the MRF and MRFL treatments were significantly decreased by 51.7% and 65.2% in early rice and 23.0% and 43.3% in late rice, respectively. Both the MRF and MRFL treatments significantly reduced soil available Cd and weak acid-extractable cadmium (Aci-Cd) concentrations and increased soil organic matter (SOM), exchangeable cation concentrations, and pH, which converted Cd into a stable form in soil. In addition, the MRF and MRFL treatments increased soil pH value by reducing soil exchangeable hydrogen ion concentration (E-H). Additionally, recombination of Cd forms was the primary factor in the reduction in available Cd concentration according to partial least squares path modeling (PLS-PM) analysis. The Cd concentration of rice grains was primarily associated with soil available Cd, soil pH value, and SOM. Overall, these results provide useful data and novel insights into reducing rice grain Cd in south China.

Funder

National Key R&D Program of China

National Natural Science Foundation of China

CARS-Green manure

Hunan Agricultural Science and Technology Innovation Fund Project

Publisher

MDPI AG

Subject

Agronomy and Crop Science

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