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Amenta, M.L., Vaccaro, F., Varriale, S., Sangaré, J.R., Defez, R., Mengoni, A., Bianco, C., 2024. Cereals can trap endophytic bacteria with potential beneficial traits when grown ex-situ in harsh soils. FEMS Microbiology Ecology 100(5): fiae041.
Bolla, P.K., Panozzo, A., Minozzi, E., Valente, F., Potestio, S., Visioli, G., Martinez-Sañudo, I., Vamerali, T., 2025. Effects of foliar-sprayed bio-fertilizer with N-fixing Methylobacterium symbioticum on morpho-physiological traits of maize under varying N fertilization rates. Frontiers in Plant Science 16: 1661290.
Bradáčová, K., Kandeler, E., Berger, N., Ludewig, U., Neumann, G., 2020. Microbial consortia inoculants stimulate early growth of maize depending on nitrogen and phosphorus supply. Plant, Soil and Environment 66(3): 105-112.
Cao, W., Yu, Z., Shi, Y., Zhang, Z., Zhang, Y., 2026. Photosynthetic performance of spring maize leaves and the development and formation of superior and inferior grains. Frontiers in Plant Science 16: 1732666.
Chowdhury, J., Milne, N., Wade, M., 2026. Amino acid biostimulant increases radiata pine photosynthetic efficiency and growth with shifts in mycobiome and nitrogen assimilation. Environmental Microbiome 21: 15.
Chuong, N.V., Trang, N.N.P., Dang P.T.H., Liem, T.T., 2026. Positive responses of nitrogen-fixing bacteria combined with vermicompost on farmland health and peanut yield. Journal of Global Innovations in Agricultural Sciences 14: 147-156.
Chuong, N.V., Vu, T.M., Tuan, L.M., Son, N.T.T., Tri, T.L.K., Thuan, N.V., Dang, P.T.H., Liem, T.T, Trang, N.N.P., 2025. Enhanced soil fertility and baby maize yield through Bacillus megaterium CM2 under reduced nitrogen input. Communications in Science and Technology 10(2): 411–421.
Chuong, N., 2024. The impact of Klebsiella quasipneumoniae inoculation with nitrogen fertilization on baby corn yield and cob quality. Eurasian Journal of Soil Science 13(2): 133-138.
Cirillo, V., Romano, I., Woo, S. L., Di Stasio, E., Lombardi, N., Comite, E., Pepe, O., Ventorino, V., Maggio, A., 2023. Inoculation with a microbial consortium increases soil microbial diversity and improves agronomic traits of tomato under water and nitrogen deficiency. Frontiers in Plant Science 14: 1304627.
Dang, P.T.H., Chuong, N.V., 2026. Priestia megaterium Thr45 reduces nitrogen and potassium fertilizer inputs while enhancing soil fertility and baby maize yield. Nitrogen 7(1): 32.
Etesami, H., Jeong, B.R., Glick, B.R., 2021. Contribution of Arbuscular Mycorrhizal fungi, phosphate–solubilizing bacteria, and silicon to P uptake by plant. Frontiers in Plant Science 12: 699618.
FAO. 2021. Standard operating Procedure for soil available phosphorus - Mehlich I method. Food and Agriculture Organization of United Nations. Rome, Italy. Available at [Access date: 05.01.2026]: https://openknowledge.fao.org/handle/20.500.14283/cb5427en
Foster, L.R., Yang, J., Riethoven, J.-J.M., Mukhtar, H., Schachtman, D.P., 2025. Inoculation frequency and maize genotype influence plant growth-promoting effects of soil bacteria under low nitrogen conditions. Frontiers in Plant Science 16: 1637156.
Habibi, N., Sharaf, Z., Fakoor, M.Y., Aryan, S., Mahmoodzada, A.B., Fakhri, A., Faqiri, S.M., 2025. Nitrogen matters: assessing the effects of nitrogen fertilization on maize growth and grain productivity. Nitrogen 6(4): 115.
Igiehon, B.C., Babalola, O.O., Hassen, A.I., 2024. Rhizosphere competence and applications of plant growth-promoting rhizobacteria in food production:A review. Scientific African 23: e02081.
Inostroza, L., Hirzel, J., Salazar, F., Noushahi, H.A., Monzón, G., 2026. Phosphorus use efficiency and canopy spectral reflectance of alfalfa fertilized with aquaculture-derived bio-based fertilizers in an andisol. Agronomy 16(3): 348.
Kjeldahl, J., 1883. Neue Methode zur Bestimmung des Stickstoffs in organischen Körpern. Zeitschrift für analytische Chemie 22(1): 366-382.
Kruščić, K., Jelušić, A., Hladnik, M., Janakiev, T., Anđelković, J., Bandelj, D., Dimkić, I., 2025. The influence of bacterial inoculants and biofertilizers on maize cultivation and the associated shift in bacteriobiota during the growing season. Plants 14(12): 1753.
Li, H., Qi, P., Yin, X., Wang, X., Gan, R., Xue, J., Han, Y., Lu, M., Liang, G., Li, H., 2025. Long-term nitrogen addition promotes microbial mineralization of organic phosphorus supporting phosphorus uptake in spring wheat. Agronomy 15(11): 2632.
Lopez-Arredondo, E.J., Rodríguez-Zaragoza, S., Cabirol, N., Perales-Vela, H.V., Ledesma-Medina, K.Y., 2025. Nitrogen-fixing bacterial inoculation: a meta-analysis of its effects on crop productivity and methodological considerations. Cogent Food & Agriculture 11(1): 2575883.
Muhammad, F.J., Waqas, L., Muhammad, T.A., Muhammad, D.A., Asia, M., Faheem, S.B., Ming, L., 2025. Next-generation strategies for nitrogen-efficient maize production for a greener tomorrow. Field Crops Research 333: 110084.
Mun, B.-G., Hussain, A., Park, Y.-G., Kang, S.-M., Lee, I.-J., Yun, B.-W., 2024. The PGPR Bacillus aryabhattai promotes soybean growth via nutrient and chlorophyll maintenance and the production of butanoic acid. Frontiers in Plant Science 15: 1341993.
Nguyen, C.V., Nguyen, T.N.P., Tran, V.M., Le, T.M., Tran, T.L.K., Tran, L.T., Phan, D.T.H., 2026b. Utilization of native microbes to improve peanut productivity and minimize nitrogen fertilizer application. Journal of Applied Biology and Biotechnology 14(3): 75-85.
Nguyen, V.C., Nguyen, N.P.T., Tran, L.K.T., Tran, T.L., 2026c. Isolation and molecular characterization of Bacillus megaterium ATCC 14581 and its effect on nitrogen fertilizer use reduction, growth and yield of baby corn. Plant Science Today 13(1): 1-10.
Nguyen, V.C., Tran, L.K.T., Tran, M.V., Le, M.T., Tran, T.L., Nguyen, N.P.T., 2025. Isolation and identification of Bacillus aryabhattai M2C: its effects with vermicompost on yield and nutrients of peanut (Arachis hypogaea L.). International Journal of Microbiology Article ID 9923279.
Nguyen, V.C., Tran, L.K.T., Tran, T.L., Trinh, V.T.E., Nguyen, N.P.T., 2026a. Integrated application of Bacillus vireti and sawdust biochar enhances soybean productivity and mitigates arsenic uptake. Journal of Agriculture and Food Research 27: 102865.
Oliveira, A.L.P., Santos, J.P., Silva, G.F., Putti, F.F., 2026. Bacillus aryabhattai improves agronomic performance and water use efficiency of common bean under deficit irrigation levels. Crops 6(2): 38.
Oubohssaine, M., Sbabou, L., Aurag, J., 2025. Enhancing ecosystem restoration and soil productivity through PGPR: a sustainable approach to bioremediation and biofertilization. Discover Applied Sciences 7: 1379.
Ramírez-López, M., Bautista-Cruz, A., Toledo-López, A., Aquino-Bolaños, T., 2025. Rhizospheric and endophytic plant growth-promoting bacteria associated with Coffea arabica L. and Coffea canephora Pierre ex Froehner: A review of their agronomic potential. Microorganisms 13(11): 2567.
Sawant, S.S., Park, H.-Y., Sim, E.-Y., Kim, H.-S., Choi, H.-S., 2025. Microbial fermentation in food: impact on functional properties and nutritional enhancement- a review of recent developments. Fermentation 11(1): 15.
Shaaban, M., Younas, A., Mehmood, M. A., Shi, Z., Wang, X., 2025. Enhancing N use efficiency, increasing wheat yield and reducing chemical fertilizer dependence via beneficial bacteria. Rice 18: 85.
Shahzad, M., Hayat, R., Mujtaba, G., 2025. Biofertilizers in sustainable agriculture: mechanisms, applications, and future prospects. Discover Agriculture 3: 224.
Siyuan, C., Xu, Z., Xiaoyuan, Y., 2025. Towards precise nitrogen fertilizer management for sustainable agriculture. Earth Critical Zone 2: 100026.
Thepbandit, W., Athinuwat, D., 2024. Rhizosphere microorganisms supply availability of soil nutrients and induce plant defense. Microorganisms 12(3): 558.
Tran, L.T., Nguyen, C.V., 2026. Nitrogen-fixing and phosphate-solubilizing Bacillus stercoris CMB2 from baby maize roots. Nitrogen 7(2): 38.
Trang, N., Chuong, N., 2025. The enhancement of soil fertility and baby maize output by Streptomyces panayensis and vermicompost. Eurasian Journal of Soil Science 14(2): 140-148.
Uddin, M.K., Nahian, S., Habiba, U., Yeasmin, S., Saha, B.K., 2023. Improvement of nutritional quality of baby corn (zea mays l.) by peat soil based organo-mineral nitrogen fertilizer. Journal of Bangladesh Agricultural University 21(2): 152-160.
Van Chuong, N., Tri, T.L.K., Vu, T.M., Tuan, L.M., Liem, T.T., Trang, N.N.P., 2025. Isolation and identification of Bacillus aryabhattai M2C: its effects with vermicompost on yield and nutrients of peanut (Arachis hypogaea L.). International Journal of Microbiology Article ID: 9923279.
Walkley, A., Black, I.A., 1934. An examination of Degtjareff method for determining soil organic matter and proposed modification of chromic acid titration method. Soil Science 37: 29-37.
Wang, F., Jin, F., Lin, X., Jia, F., Song, K., Liang, J., Zhang, J., Zhang, J., 2024. Priestia aryabhattai improves soil environment and promotes alfalfa growth by enhancing rhizosphere microbial carbon sequestration capacity under greenhouse conditions. Current Microbiology 81: 420.
Wankhade, A., Wilkinson, E., Britt, D.W., Kaundal, A., 2025. A review of plant–microbe interactions in the rhizosphere and the role of root exudates in microbiome engineering. Applied Sciences 15(13): 7127.
Woodward, L.P., Sible, C.N., Seebauer, J.R., Below, F.E., 2025. Soil inoculation with nitrogen-fixing bacteria to supplement maize fertilizer need. Agronomy Journal 117(1): e21729.
Xing, Y., Xie, Y., Wang, X., 2025. Enhancing soil health through balanced fertilization: a pathway to sustainable agriculture and food security. Frontiers in Microbiology 16: 1536524.
Yang, S., Ning, Y., Li, H., Zhu, Y., 2024. Effects of Priestia aryabhattai on phosphorus fraction and implications for ecoremediating cd-contaminated farmland with plant–microbe technology. Plants 13(2): 268.
You, L., Ros, G.H., Chen, Y., Shao, Q., Young, M.D., Zhang, F., de Vries, W., 2023. Global mean nitrogen recovery efficiency in croplands can be enhanced by optimal nutrient, crop and soil management practices. Nature Communications 14: 5747.
Zhuang, H., Tang, X., Ning, Z., Zhou, C., Zhao, Q., Wang, H., Xing, Y., Zhang, A., 2025. The impact of reduced nitrogen fertilizer application and Arbuscular mycorrhizal fungi inoculation on nitrogen utilization in intercropped Areca catechu L. and vanilla planifolia andrews. Plants 14(20): 3207.
Abstract
Excessive reliance on mineral nitrogen (N) fertilizers in baby maize production raises concerns about soil degradation, low nitrogen use efficiency, and environmental sustainability. This study evaluated the effectiveness of the indigenous rhizobacterium Priestia aryabhattai strain NVC-CMB3 as a bio-input for improving soil fertility and crop performance under field conditions. A two-factor factorial experiment was conducted with bacterial inoculation, with and without strain NVC-CMB3, and four N fertilizer rates: 0, 175, 262.5, and 350 kg ha⁻¹. Soil chemical properties, agronomic traits, yield components, and nutrient composition of edible cobs were assessed. Inoculation with strain NVC-CMB3 significantly increased soil organic matter, total nitrogen, available phosphorus, and exchangeable potassium compared with non-inoculated treatments. Improvements in plant height and chlorophyll content were also observed, indicating positive effects on crop growth. However, nitrogen fertilizer rate remained the dominant factor influencing biomass accumulation, yield components, and nutritional quality, with higher nitrogen inputs consistently producing the highest values. Bacterial inoculation moderately improved some yield-related traits but had limited effects on nutritional composition. Overall, the results indicate that strain NVC-CMB3 can support soil fertility and crop performance and may serve as a complementary input in integrated nutrient management strategies, rather than as a substitute for mineral nitrogen fertilizer in baby maize production systems.
Keywords: Baby maize, Priestia aryabhattai, biofertilizer, nitrogen use efficiency, soil fertility, sustainable agriculture.
References
Amenta, M.L., Vaccaro, F., Varriale, S., Sangaré, J.R., Defez, R., Mengoni, A., Bianco, C., 2024. Cereals can trap endophytic bacteria with potential beneficial traits when grown ex-situ in harsh soils. FEMS Microbiology Ecology 100(5): fiae041.
Bolla, P.K., Panozzo, A., Minozzi, E., Valente, F., Potestio, S., Visioli, G., Martinez-Sañudo, I., Vamerali, T., 2025. Effects of foliar-sprayed bio-fertilizer with N-fixing Methylobacterium symbioticum on morpho-physiological traits of maize under varying N fertilization rates. Frontiers in Plant Science 16: 1661290.
Bradáčová, K., Kandeler, E., Berger, N., Ludewig, U., Neumann, G., 2020. Microbial consortia inoculants stimulate early growth of maize depending on nitrogen and phosphorus supply. Plant, Soil and Environment 66(3): 105-112.
Cao, W., Yu, Z., Shi, Y., Zhang, Z., Zhang, Y., 2026. Photosynthetic performance of spring maize leaves and the development and formation of superior and inferior grains. Frontiers in Plant Science 16: 1732666.
Chowdhury, J., Milne, N., Wade, M., 2026. Amino acid biostimulant increases radiata pine photosynthetic efficiency and growth with shifts in mycobiome and nitrogen assimilation. Environmental Microbiome 21: 15.
Chuong, N.V., Trang, N.N.P., Dang P.T.H., Liem, T.T., 2026. Positive responses of nitrogen-fixing bacteria combined with vermicompost on farmland health and peanut yield. Journal of Global Innovations in Agricultural Sciences 14: 147-156.
Chuong, N.V., Vu, T.M., Tuan, L.M., Son, N.T.T., Tri, T.L.K., Thuan, N.V., Dang, P.T.H., Liem, T.T, Trang, N.N.P., 2025. Enhanced soil fertility and baby maize yield through Bacillus megaterium CM2 under reduced nitrogen input. Communications in Science and Technology 10(2): 411–421.
Chuong, N., 2024. The impact of Klebsiella quasipneumoniae inoculation with nitrogen fertilization on baby corn yield and cob quality. Eurasian Journal of Soil Science 13(2): 133-138.
Cirillo, V., Romano, I., Woo, S. L., Di Stasio, E., Lombardi, N., Comite, E., Pepe, O., Ventorino, V., Maggio, A., 2023. Inoculation with a microbial consortium increases soil microbial diversity and improves agronomic traits of tomato under water and nitrogen deficiency. Frontiers in Plant Science 14: 1304627.
Dang, P.T.H., Chuong, N.V., 2026. Priestia megaterium Thr45 reduces nitrogen and potassium fertilizer inputs while enhancing soil fertility and baby maize yield. Nitrogen 7(1): 32.
Etesami, H., Jeong, B.R., Glick, B.R., 2021. Contribution of Arbuscular Mycorrhizal fungi, phosphate–solubilizing bacteria, and silicon to P uptake by plant. Frontiers in Plant Science 12: 699618.
FAO. 2021. Standard operating Procedure for soil available phosphorus - Mehlich I method. Food and Agriculture Organization of United Nations. Rome, Italy. Available at [Access date: 05.01.2026]: https://openknowledge.fao.org/handle/20.500.14283/cb5427en
Foster, L.R., Yang, J., Riethoven, J.-J.M., Mukhtar, H., Schachtman, D.P., 2025. Inoculation frequency and maize genotype influence plant growth-promoting effects of soil bacteria under low nitrogen conditions. Frontiers in Plant Science 16: 1637156.
Habibi, N., Sharaf, Z., Fakoor, M.Y., Aryan, S., Mahmoodzada, A.B., Fakhri, A., Faqiri, S.M., 2025. Nitrogen matters: assessing the effects of nitrogen fertilization on maize growth and grain productivity. Nitrogen 6(4): 115.
Igiehon, B.C., Babalola, O.O., Hassen, A.I., 2024. Rhizosphere competence and applications of plant growth-promoting rhizobacteria in food production:A review. Scientific African 23: e02081.
Inostroza, L., Hirzel, J., Salazar, F., Noushahi, H.A., Monzón, G., 2026. Phosphorus use efficiency and canopy spectral reflectance of alfalfa fertilized with aquaculture-derived bio-based fertilizers in an andisol. Agronomy 16(3): 348.
Kjeldahl, J., 1883. Neue Methode zur Bestimmung des Stickstoffs in organischen Körpern. Zeitschrift für analytische Chemie 22(1): 366-382.
Kruščić, K., Jelušić, A., Hladnik, M., Janakiev, T., Anđelković, J., Bandelj, D., Dimkić, I., 2025. The influence of bacterial inoculants and biofertilizers on maize cultivation and the associated shift in bacteriobiota during the growing season. Plants 14(12): 1753.
Li, H., Qi, P., Yin, X., Wang, X., Gan, R., Xue, J., Han, Y., Lu, M., Liang, G., Li, H., 2025. Long-term nitrogen addition promotes microbial mineralization of organic phosphorus supporting phosphorus uptake in spring wheat. Agronomy 15(11): 2632.
Lopez-Arredondo, E.J., Rodríguez-Zaragoza, S., Cabirol, N., Perales-Vela, H.V., Ledesma-Medina, K.Y., 2025. Nitrogen-fixing bacterial inoculation: a meta-analysis of its effects on crop productivity and methodological considerations. Cogent Food & Agriculture 11(1): 2575883.
Muhammad, F.J., Waqas, L., Muhammad, T.A., Muhammad, D.A., Asia, M., Faheem, S.B., Ming, L., 2025. Next-generation strategies for nitrogen-efficient maize production for a greener tomorrow. Field Crops Research 333: 110084.
Mun, B.-G., Hussain, A., Park, Y.-G., Kang, S.-M., Lee, I.-J., Yun, B.-W., 2024. The PGPR Bacillus aryabhattai promotes soybean growth via nutrient and chlorophyll maintenance and the production of butanoic acid. Frontiers in Plant Science 15: 1341993.
Nguyen, C.V., Nguyen, T.N.P., Tran, V.M., Le, T.M., Tran, T.L.K., Tran, L.T., Phan, D.T.H., 2026b. Utilization of native microbes to improve peanut productivity and minimize nitrogen fertilizer application. Journal of Applied Biology and Biotechnology 14(3): 75-85.
Nguyen, V.C., Nguyen, N.P.T., Tran, L.K.T., Tran, T.L., 2026c. Isolation and molecular characterization of Bacillus megaterium ATCC 14581 and its effect on nitrogen fertilizer use reduction, growth and yield of baby corn. Plant Science Today 13(1): 1-10.
Nguyen, V.C., Tran, L.K.T., Tran, M.V., Le, M.T., Tran, T.L., Nguyen, N.P.T., 2025. Isolation and identification of Bacillus aryabhattai M2C: its effects with vermicompost on yield and nutrients of peanut (Arachis hypogaea L.). International Journal of Microbiology Article ID 9923279.
Nguyen, V.C., Tran, L.K.T., Tran, T.L., Trinh, V.T.E., Nguyen, N.P.T., 2026a. Integrated application of Bacillus vireti and sawdust biochar enhances soybean productivity and mitigates arsenic uptake. Journal of Agriculture and Food Research 27: 102865.
Oliveira, A.L.P., Santos, J.P., Silva, G.F., Putti, F.F., 2026. Bacillus aryabhattai improves agronomic performance and water use efficiency of common bean under deficit irrigation levels. Crops 6(2): 38.
Oubohssaine, M., Sbabou, L., Aurag, J., 2025. Enhancing ecosystem restoration and soil productivity through PGPR: a sustainable approach to bioremediation and biofertilization. Discover Applied Sciences 7: 1379.
Ramírez-López, M., Bautista-Cruz, A., Toledo-López, A., Aquino-Bolaños, T., 2025. Rhizospheric and endophytic plant growth-promoting bacteria associated with Coffea arabica L. and Coffea canephora Pierre ex Froehner: A review of their agronomic potential. Microorganisms 13(11): 2567.
Sawant, S.S., Park, H.-Y., Sim, E.-Y., Kim, H.-S., Choi, H.-S., 2025. Microbial fermentation in food: impact on functional properties and nutritional enhancement- a review of recent developments. Fermentation 11(1): 15.
Shaaban, M., Younas, A., Mehmood, M. A., Shi, Z., Wang, X., 2025. Enhancing N use efficiency, increasing wheat yield and reducing chemical fertilizer dependence via beneficial bacteria. Rice 18: 85.
Shahzad, M., Hayat, R., Mujtaba, G., 2025. Biofertilizers in sustainable agriculture: mechanisms, applications, and future prospects. Discover Agriculture 3: 224.
Siyuan, C., Xu, Z., Xiaoyuan, Y., 2025. Towards precise nitrogen fertilizer management for sustainable agriculture. Earth Critical Zone 2: 100026.
Thepbandit, W., Athinuwat, D., 2024. Rhizosphere microorganisms supply availability of soil nutrients and induce plant defense. Microorganisms 12(3): 558.
Tran, L.T., Nguyen, C.V., 2026. Nitrogen-fixing and phosphate-solubilizing Bacillus stercoris CMB2 from baby maize roots. Nitrogen 7(2): 38.
Trang, N., Chuong, N., 2025. The enhancement of soil fertility and baby maize output by Streptomyces panayensis and vermicompost. Eurasian Journal of Soil Science 14(2): 140-148.
Uddin, M.K., Nahian, S., Habiba, U., Yeasmin, S., Saha, B.K., 2023. Improvement of nutritional quality of baby corn (zea mays l.) by peat soil based organo-mineral nitrogen fertilizer. Journal of Bangladesh Agricultural University 21(2): 152-160.
Van Chuong, N., Tri, T.L.K., Vu, T.M., Tuan, L.M., Liem, T.T., Trang, N.N.P., 2025. Isolation and identification of Bacillus aryabhattai M2C: its effects with vermicompost on yield and nutrients of peanut (Arachis hypogaea L.). International Journal of Microbiology Article ID: 9923279.
Walkley, A., Black, I.A., 1934. An examination of Degtjareff method for determining soil organic matter and proposed modification of chromic acid titration method. Soil Science 37: 29-37.
Wang, F., Jin, F., Lin, X., Jia, F., Song, K., Liang, J., Zhang, J., Zhang, J., 2024. Priestia aryabhattai improves soil environment and promotes alfalfa growth by enhancing rhizosphere microbial carbon sequestration capacity under greenhouse conditions. Current Microbiology 81: 420.
Wankhade, A., Wilkinson, E., Britt, D.W., Kaundal, A., 2025. A review of plant–microbe interactions in the rhizosphere and the role of root exudates in microbiome engineering. Applied Sciences 15(13): 7127.
Woodward, L.P., Sible, C.N., Seebauer, J.R., Below, F.E., 2025. Soil inoculation with nitrogen-fixing bacteria to supplement maize fertilizer need. Agronomy Journal 117(1): e21729.
Xing, Y., Xie, Y., Wang, X., 2025. Enhancing soil health through balanced fertilization: a pathway to sustainable agriculture and food security. Frontiers in Microbiology 16: 1536524.
Yang, S., Ning, Y., Li, H., Zhu, Y., 2024. Effects of Priestia aryabhattai on phosphorus fraction and implications for ecoremediating cd-contaminated farmland with plant–microbe technology. Plants 13(2): 268.
You, L., Ros, G.H., Chen, Y., Shao, Q., Young, M.D., Zhang, F., de Vries, W., 2023. Global mean nitrogen recovery efficiency in croplands can be enhanced by optimal nutrient, crop and soil management practices. Nature Communications 14: 5747.
Zhuang, H., Tang, X., Ning, Z., Zhou, C., Zhao, Q., Wang, H., Xing, Y., Zhang, A., 2025. The impact of reduced nitrogen fertilizer application and Arbuscular mycorrhizal fungi inoculation on nitrogen utilization in intercropped Areca catechu L. and vanilla planifolia andrews. Plants 14(20): 3207.