[1] |
Food and Agriculture Organization (FAO). 2022. The State of Food and Agriculture 2022. https://openknowledge.fao.org/handle/20.500.14283/cb9479en |
[2] |
Xu C, Ji L, Li F, Feng J, Fang F. 2022. Situation and strategies of rice industry development in China. Journal of Huazhong Agricultural University 41(1):21−27 doi: 10.13300/j.cnki.hnlkxb.2022.01.002 |
[3] |
Xu C, Ji L, Chen Z, Fang F. 2021. Historical review and prospect of China's rice production, market and import and export trade. China Rice 27(4):17−21 doi: 10.3969/j.issn.1006-8082.2021.04.005 |
[4] |
Scutarasu EC, Trincă LC. 2023. Heavy metals in foods and beverages: global situation, health risks and reduction methods. Foods 12:3340 doi: 10.3390/foods12183340 |
[5] |
Zhang Y, Gao Y, Zheng Z, Meng X, Cai Y, et al. 2020. A microbial ecosystem: agricultural Jiaosu achieves effective and lasting antifungal activity against Botrytis cinerea. AMB Express 10:216 doi: 10.1186/s13568-020-01156-7 |
[6] |
Zhang Y, Wang X. 2019. Ecological Effect of Plant Enzymes for Agriculture in Organic Agricultural Production. Journal of Poyang Lake 2019(1):70−74 doi: 10.3969/j.issn.1674-6848.2019.01.009 |
[7] |
Zhang Y, Zhao Y, Cai Y, Liu X, Hu Y, et al. 2020. Ecological effects of plant Jiaosu for agriculture: a review. Journal of China Agricultural University 25(3):25−35 doi: 10.11841/j.issn.1007-4333.2020.03.04 |
[8] |
Li F, Yang Q, Yang R, Du B, Wang Y, et al. 2016. Effects of garbage enzyme hydrolysis of nitrogen, total nitrogen and organic matter on the soil improvement. Journal of Yuxi Normal University 32(4):42−47 doi: 10.3969/j.issn.1009-9506.2016.04.008 |
[9] |
Han J, Liu Z, Zhang L, Li Y, Jiang Q, et al. 2019. Effects of Biochar and Environmental Enzymes on the Characteristics of Salinized Soil. Ecology and Environment Sciences 28(5):1029−36 doi: 10.16258/j.cnki.1674-5906.2019.05.021 |
[10] |
Gu G, Hu Y, Yang Y, Meng X, Bu H, et al. 2021. Effects of apple enzymes on physicochemical properties of apple seedlings and soil nutrients. Heilongjiang Agricultural Sciences 2021(11):31−34 doi: 10.11942/j.issn1002-2767.2021.11.0031 |
[11] |
Grumbine RE, Xu J, Ma L. 2021. An overview of the problems and prospects for circular agriculture in sustainable food systems in the anthropocene. Circular Agricultural Systems 1:3 doi: 10.48130/cas-2021-0003 |
[12] |
Liu W. 2020. Application effect of agricultural plant enzyme on rice. Heilongjiang Agricultural Sciences 2020(12):58−60 doi: 10.11942/j.issn1002-2767.2020.12.0058 |
[13] |
Liao X, Wang R, Zhang Y, Chen C, Ma W, et al. 2023. Influences of combined application of enzyme bacteria and onganic fertilizer on rice yield, quality and soil nutrient. Jiangsu Agricultural Sciences 51(14):95−101 doi: 10.15889/j.issn.1002-1302.2023.14.013 |
[14] |
Wang W. 2016. Rice growth simulation under climate change scenariosin the Yichun area. Thesis. Nanchang University, China. |
[15] |
Pang M, Zuo Q, Song D, Gao L, Liu D, et al. 2019. Applied research progress on agricultural plant enzyme nutrition solution. Journal of Northern Agriculture 47(5):60−64 doi: 10.3969/j.issn.2096-1197.2019.05.11 |
[16] |
Zhao H, Sun L, Jia Y, Yu C, Fu J, et al. 2020. Effect of nitrogen, phosphorus and potassium fertilizer combined application on japonica rice growth and yield in cold areas. Journal of Northeast Agricultural University 51(12):1−13 doi: 10.3969/j.issn.1005-9369.2020.12.001 |
[17] |
Wei L, Cheng J, Li L, Wu J. 2012. Regulation of plant height by gibberellins biosynthesis and signal transduction. Chinese Journal of Biotechnology 28(2):144−53 |
[18] |
Sun H, Zhang Y, Ren T, Xue X, Cong R. 2014. Effects of citrate-soluble potassium fertilizer on crop biomass and potassium balance in crop-soil system. Soils 46(4):669−73 doi: 10.13758/j.cnki.tr.2014.04.014 |
[19] |
Jia Q, Hu M, Zhang Y, Meng Y, Li X, et al. 2015. Effects of potassium-silicon fertilizer application on lead and cadmium uptake by rice. Journal of Agro-Environment Science 34(12):2245−51 doi: 10.11654/jaes.2015.12.001 |
[20] |
Zhang Z, Chen J, Zhang Y. 2021. Effect of returning all wheat straw to field on soil fertility and rice growth in hilly land. South China Agriculture 15(7):43−46 |
[21] |
Zou C, Qin D, Xu M, Shen H, Wang B. 2002. Nitrogen, phosphorous and potassium uptake characteristics of rice and its relationship with grain yield. Journal of Nanjing Agricultural University 25(4):6−10 |
[22] |
Zhang L. 2023. Effect of Nitrogen, Phosphorous, Potassium Application Rrate on Fertilizer Use Efficiency and Yield of Yongyou 7850. Fujian Science and Technology of Rice and Wheat 41(4):32−36 doi: 10.3969/j.issn.1008-9799.2023.04.012 |
[23] |
Li C, Ye S, Chen Y, Ruan G, Huang F, et al. 2005. The study on yield component factors of high yielding japonica rice varieties. Acta Agriculturae Zhejiangensis 17(4):177−81 doi: 10.3969/j.issn.1004-1524.2005.04.001 |
[24] |
Li X, Liu Q, Rong X, Xie G, Zhang Y, et al. 2010. Effects of organic fertilizer on yield and yield composition factors of rice. Hunan Agricultural Science 2010(5):64−66 doi: 10.3969/j.issn.1006-060X.2010.05.021 |
[25] |
Guo S, Mou J, Zhai W, Wang S, Jia B, et al. 2022. Influences of equal replacement of chemical fertilizer by organic fertilizer on yield and dry matter accumulation of japonica rice. Jiangsu Agricultural Sciences 50(19):56−61 doi: 10.15889/j.issn.1002-1302.2022.19.008 |
[26] |
Xie H, Wu K, Liu W, Wei G, Lu X, et al. 2022. Effects of partial substitution of seaweed fertilizers and microbial inoculant for chemical fertilizer on rice yield and its components. Crop Journal 2022(1):161−66 doi: 10.16035/j.issn.1001-7283.2022.01.024 |
[27] |
Man J, Lin Y, Li J, Yuan K, Wu D, et al. 2021. Effects of kitchen waste compost on the yield and quality of rice and soil nutrient content. Journal of China Agricultural University 26(11):165−79 doi: 10.11841/j.issn.1007-4333.2021.11.17 |
[28] |
Tang L. 2021. Research on the optimum ratio of organic fertilizer replacing chemical fertilizer nitrogen and its effect. Thesis. Hunan Agricultural University, China. https://doi.org/10.27136/d.cnki.ghunu.2019.000623 |
[29] |
Ma G. 2004. Ecological organic fertilizers and sustainable development of agriculture. Chinese Journal of Eco-Agriculture 12(3):191−93 |
[30] |
Zhan Y, Feng Y. 2017. Advances on impact of straw returning on microorganisms in paddy soil. Chinese Journal of Soil Science 48(6):1530−36 doi: 10.19336/j.cnki.trtb.2017.06.36 |