Enhancing lucerne (Medicago sativa) yield and nutritional quality: a meta-analysis of fertilization types and environmental factors in China
Zhang, Jiachang; Mao, Yanting; Wang, Gang; Luo, Dong; Cao, Quan; Siddique, Kadambot H. M.; Mirzaei, Morad; Saunders, Matthew; Aghamir, Fateme; Radicetti, Emanuele; Xiang, Yangzhou; Zhang, Qingping; Li, Yuan; Shen, Yuying (2024)
Zhang, Jiachang
Mao, Yanting
Wang, Gang
Luo, Dong
Cao, Quan
Siddique, Kadambot H. M.
Mirzaei, Morad
Saunders, Matthew
Aghamir, Fateme
Radicetti, Emanuele
Xiang, Yangzhou
Zhang, Qingping
Li, Yuan
Shen, Yuying
Julkaisusarja
Frontiers in plant science
Volyymi
15
Sivut
13 p.
Frontiers Media S.A.
2024
How to cite: Zhang J., Mao Y., Wang G., Luo D., Cao Q., Siddique K.H.M., Mirzaei M., Saunders M., Aghamir F., Radicetti E., Xiang Y., Zhang Q., Li Y. and Shen Y. (2024) Enhancing lucerne (Medicago sativa) yield and nutritional quality: a meta-analysis of fertilization types and environmental factors in China. Front. Plant Sci. 15:1405180. doi: 10.3389/fpls.2024.1405180
Julkaisun pysyvä osoite on
http://urn.fi/URN:NBN:fi-fe2024090368398
http://urn.fi/URN:NBN:fi-fe2024090368398
Tiivistelmä
Introduction: Lucerne (Medicago sativa), is a cornerstone of China’s livestock industry, however, due to the backward agronomic strategies and technology, lucerne in China faces cultivation challenges that result in lower productivity and quality than global standards. Therefore, we undertook a meta-analysis to evaluate the impact of five distinct fertilization types on lucerne yield and nutritional quality in various locations in China. The fertilizer practices included manure application, combined mineral fertilizer and manure application (FM), biological fertilizer application, unbalanced application of two or more mineral fertilizer types, and balanced mineral fertilizer application. Furthermore, we investigate influential factors of yield and quality of lucerne under fertilization, including climatic variables (mean annual precipitation, mean annual temperature), initial soil properties (soil organic carbon; total nitrogen, pH), and agronomic factors (seeding rate, harvest frequency, and lucerne stand age).
Methods: Our study analyzed 53 published papers to discern the most beneficial fertilizer for enhancing lucerne yield and nutritional quality.
Results and discussion: The results showed that the fertilizer practices, on average, significantly improved yield by 31.72% and crude protein content by 11.29%, with FM emerging as the most effective, this is because mineral fertilizers provide available nutrients for lucerne, manure provides essential organic matter for microorganisms and improve soil properties. In addition, the fertilizer practices significantly reduced neutral and acid detergent fiber contents by 6.28% and 8.50%, respectively, while increasing ash content and relative feeding value. Furthermore, climatic variables, soil properties, and planting system factors such as sowing date and harvest frequency significantly affected yield and nutritional quality. The practical implications of our results emphasize the need for balanced and strategic fertilizer application to optimize lucerne production and highlight the potential to adjust cultivation practices according to environmental conditions. Balanced and strategic fertilizer application can simultaneously improve soil properties, enhance soil carbon sequestration, and reduce the emission of greenhouse gases from the soil, which is a vital measure for realizing sustainable agricultural development.
Methods: Our study analyzed 53 published papers to discern the most beneficial fertilizer for enhancing lucerne yield and nutritional quality.
Results and discussion: The results showed that the fertilizer practices, on average, significantly improved yield by 31.72% and crude protein content by 11.29%, with FM emerging as the most effective, this is because mineral fertilizers provide available nutrients for lucerne, manure provides essential organic matter for microorganisms and improve soil properties. In addition, the fertilizer practices significantly reduced neutral and acid detergent fiber contents by 6.28% and 8.50%, respectively, while increasing ash content and relative feeding value. Furthermore, climatic variables, soil properties, and planting system factors such as sowing date and harvest frequency significantly affected yield and nutritional quality. The practical implications of our results emphasize the need for balanced and strategic fertilizer application to optimize lucerne production and highlight the potential to adjust cultivation practices according to environmental conditions. Balanced and strategic fertilizer application can simultaneously improve soil properties, enhance soil carbon sequestration, and reduce the emission of greenhouse gases from the soil, which is a vital measure for realizing sustainable agricultural development.
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