[1]罗杰,李艳华,胡佳,等.食用菌菌渣生物处理与资源化利用研究概况[J].食用菌,2020,42(3):4‑6.
LUO J,LI Y H,HU J,et al.Research progress on biological treatment and resource utilization of edible fungi residue[J].Edible Fungi,2020,42(3):4‑6.
[2]薛芳.中国食用菌出口国际竞争力定量测算[J].中国食用菌,2019,38(8):95‑98.
XUE F.Quantitative measurement of international competitiveness of Chinese edible fungi export[J].Edible Fungi of China,2019,38(8):95‑98.
[3]景全荣.我国食用菌机械化生产现状及发展趋势[J].中国农机监理,2020(9):23‑24.
JING Q R.Present situation and development trend of mechanized production of edible fungi in China[J].China Agricultural Machinery Safety Supervision,2020 (9):23‑24.
[4]中国食用菌协会. 2022年度全国食用菌统计调查结果分析[J].中国食用菌,2024,43(1):118‑126.
China Edible Fungi Association.Analysis of the results of the national edible fungi statistical survey in 2022[J].Edible Fungi of China,2024,43(1):118‑126.
[5]郭远,宋爽,高琪,等.食用菌菌渣资源化利用进展[J].食用菌学报,2022,29(2):103‑114.
GUO Y,SONG S,GAO Q,et al.Progress in utilization of spent mushroom substrate[J].Acta Edulis Fungi,2022,29(2):103‑114.
[6]陶治东,何艳慧,邓子禾,等.香菇菌渣高效纤维素降解菌的筛选及产酶优化[J].生物技术通报,2021,37 (11):158‑165.
TAO Z D,HE Y H,DENG Z H,et al.Screening of high‑efficiency cellulose‑degrading microorganism from spent Lentinula edodes substrate and optimization of its enzyme production[J].Biotechnology Bulletin,2021,37 (11):158‑165.
[7]徐杰,许修宏.Streptomyces griseorubens C-5对堆肥木质纤维素降解及微生物群落代谢的影响[J].太阳能学报,2018,39(2):285‑291.
XU J,XU X H.Effect of Streptomyces griseorubens C‑5 on lignocellulose degradation and microbial community metabolic of compost[J].Acta Energiae Solaris Sinica,2018,39(2):285‑291.
[8]李豪,杨衡,张敏琪,等.纤维素降解菌C-19的筛选鉴定、产酶优化及生物强化研究[J].农业生物技术学报,2023,31(11):2377‑2386.
LI H,YANG H,ZHANG M Q,et al.Screening,identification,optimization of its enzyme production and research on bioaugmentation of cellulose‑degrading bacteria C‑19[J].Journal of Agricultural Biotechnology,2023,31(11):2377‑2386.
[9]顾欣,黄凯悦,田彦梅,等.耐高温沼渣降解菌的筛选及复合菌剂降解效果研究[J].微生物学杂志,2023,43 (4):90‑100.
GU X,HUANG K Y,TIAN Y M,et al. Screening of bacteria resistant to high temperature biogas residue degradation and degradation effect of compound bacterial preparation[J].Journal of Microbiology,2023,43(4):90‑100.
[10]武肖莎,李再兴,黄亚丽,等.高温木质纤维素降解菌的筛选鉴定及其堆肥应用[J].安徽农业科学,2021,49(20):68‑71.
WU X S,LI Z X,HUANG Y L,et al.Screening,identification and its composting application of high‑temperature strain for degrading lignocellulose[J].Journal of Anhui Agricultural Sciences,2021,49 (20):68‑71.
[11]刘晓飞,宋洁,马京求,等.产纤维素酶放线菌的筛选鉴定及其对玉米秸秆的降解[J].精细化工,2020,37 (8):1657‑1664.
LIU X F,SONG J,MA J Q,et al.Screening and identification of a cellulase‑producing actinomycete and its degradation of corn straw[J].Fine Chemicals,2020,37(8):1657‑1664.
[12]诸葛荣夏.腐浆中木质纤维降解菌的筛选及复合菌系构建[D].南京:南京林业大学,2020.
ZHUGE R X.Screening of wood fiber degrading bacteria in sapropelic pulp and construction of composite bacteria system[D].Nanjing:Nanjing Forestry University,2020.
[13]卢月霞,吕志伟,袁红莉,等.纤维素降解菌的筛选及其混合发酵研究[J].安徽农业科学,2008,36(10):3952‑3953.
LU Y X,LÜ Z W,YUAN H L,et al.Research on the screening and mixed fermentation of cellulose‑decomposing microorganisms[J].Journal of Anhui Agricultural Sciences, 2008, 36 (10) :3952‑3953.
[14]伊国云,程亮.纤维素降解菌株的筛选、鉴定及其酶活力的测定[J].青海农林科技,2022(4):13‑18.
YI G Y,CHENG L.Screening and identification of cellulose degradation strain and determination of enzyme activity[J]. Science and Technology of Qinghai Agriculture and Forestry,2022(4):13‑18.
[15]韩月颖,张喜庆,曲云鹏,等.一株低温木质素降解菌的筛选、产酶优化及酶学性质[J].微生物学通报,2021,48(10):3700‑3713.
HAN Y Y,ZHANG X Q,QU Y P,et al.Screening,enzyme‑production optimization and enzymatic properties of a low‑temperature lignin‑degrading bacteria[J].Microbiology China,2021,48(10):3700‑3713.
[16]陈建军,刘梁涛,曹香林.高效木质素降解菌的筛选及产漆酶条件的研究[J].甘肃农业大学学报,2018,53(4):130‑136.
CHEN J J,LIU L T,CAO X L.Study on screening of efficient lignin degrading bacteria and the conditions for laccase production[J].Journal of Gansu Agricultural University,2018,53(4):130‑136.
[17]于昊.木质素降解菌的筛选及其产酶条件的优化[D].扬州:扬州大学,2022.
YU H.Screening of lignin‑degrading bacteria and optimization of enzyme production conditions[D].Yangzhou:Yangzhou University,2022.
[18]张瑞景.固态发酵木薯渣生产漆酶脱色苯胺蓝[D].无锡:江南大学,2014.
ZHANG R J.Production of decolorized aniline blue by laccase from cassava residue by solid‑state fermentation[D].Wuxi:Jiangnan University,2014.
[19]全国食品工业标准化技术委员会工业发酵分技术委员会.纤维素酶制剂:QB/T 2583—2003[S].北京:中国轻工业出版社,2004.
Industrial Fermentation Technical Committee of National Food Industry Standardization Technical Committee. Cellulase preparation:QB/T 2583—2003[S].Beijing:China Light Industry Press,2004.
[20]殷中伟.秸秆纤维素高效降解菌株的筛选及对秸秆降解效果初步研究[D].北京:中国农业科学院,2010.
YIN Z W.Screening of strains for efficient degradation of straw cellulose and preliminary study on its degradation effect on straw[D].Beijing:Chinese Academy of Agricultural Sciences,2010.
[21]戚业强.木质素降解菌株的筛选及其降解秸秆木质素的研究[D].哈尔滨:东北农业大学,2021.
QI Y Q.Screening of lignin degrading strains and study on lignin degradation of straw[D].Harbin:Northeast Agricultural University,2021.
[22]张红玉.碳氮比对厨余垃圾堆肥腐熟度的影响[J].环境工程,2013,31(2):87‑91.
ZHANG H Y.Effects of c/n ratio on the maturity during kitchen waste composting[J].Environmental Engineering,2013,31(2):87‑91.
[23]中华人民共和国生态环境部.固体废物有机质的测定灼烧减量法:HJ 761—2015[S].北京:中国标准出版社,2015.
Ministry of Ecology and Environment of the People’s Republic of China.Determination of organic matter in solid waste by burning reduction method:HJ 761—2015[S].Beijing:China Standard Press,2015.
[24]康跃.园林绿化废弃物分解菌的筛选和复合菌剂配比研究[D].北京:北京林业大学,2020.
KANG Y.Screening of decomposing bacteria for landscaping waste and study on the ratio of compound microbial agents[D].Beijing:Beijing Forestry University,2020.
[25]中华人民共和国农业农村部. 有机肥料:NY/T 525—2021[S].北京:中国农业出版社,2021.
Ministry of Agricultural and Rural Affairs of the People’s Republic of China.Organic fertilizer:NY/T 525—2021[S].Beijing:China Agriculture Press,2021.
[26]WANG J Q,LIU Z P,XIA J S,et al.Effect of microbial inoculation on physicochemical properties and bacterial community structure of Citrus peel composting [J]. Bioresource Technology,2019,291:121843.
[27]SUN C Y,WEI Y B,KOU J N,et al.Improve spent mushroom substrate decomposition,bacterial community and mature compost quality by adding cellulase during composting[J].Journal of Cleaner Production,2021,299:126928.
[28]谢伟,冯镥童,李晨斌,等.纤维素降解复合菌系的产酶条件优化[J].中国植保导刊,2022,42(2):5‑10.
XIE W,FENG L T,LI C B,et al.Optimization of enzyme production conditions of cellulose‑degrading fungal consortium[J].China Plant Protection,2022,42 (2):5‑10.
[29]何艳玲,孙向阳,李素艳,等.一株木质素降解菌高温驯化及酶学性质的测定[J].微生物学通报,2023,50 (1):163‑174.
HE Y L,SUN X Y,LI S Y,et al.High temperature acclimation and enzymatic properties of a lignin‑degrading strain[J].Microbiology China,2023,50(1):163‑174.
[30]TRAN Q N M,MIMOTO H,KOYAMA M,et al.Lactic acid bacteria modulate organic acid production during early stages of food waste composting[J].Science of the Total Environment,2019,687:341‑347.
[31]LIU W,WANG S T,ZHANG J,et al.Biochar influences the microbial community structure during tomato stalk composting with chicken manure[J].Bioresource Technology,2014,154:148‑154.
[32]吴婧,聂彩娥,朱媛媛,等.一株兼具产IAA能力纤维素降解菌的筛选、鉴定及条件优化[J].生物技术通报,2020,36(12):54‑63.
WU J,NIE C E,ZHU Y Y,et al.Isolation,identification of a cellulose‑degrading bacterium with IAA‑producing ability and optimization of its culture conditions[J].Biotechnology Bulletin,2020,36(12):54‑63.
[33]单建荣,全鑫,朱用哲,等.一株低温纤维素降解菌的筛选与产酶条件优化[J].生态学杂志,2021,40(4):1128‑1136.
SHAN J R,QUAN X,ZHU Y Z,et al.Screening of a low‑temperature cellulose‑degrading bacterium and optimization of cellulase production conditions[J].Chinese Journal of Ecology,2021,40(4):1128‑1136.
[34]于静,谷洁,王小娟,等.微生物菌剂对鸡粪堆肥过程中氨气排放和微生物群落的影响[J].西北农业学报,2019,28(11):1861‑1870.
YU J,GU J,WANG X J,et al.Effects of microbial agents on ammonia emission and microbial community during chicken manure composting[J].Acta Agriculturae Boreali‑Occidentalis Sinica,2019,28 (11):1861‑1870.
[35]YANG X,HUANG T L,ZHANG H H.Effects of seasonal thermal stratification on the functional diversity and composition of the microbial community in a drinking water reservoir[J].Water,2015,7(10):5525‑5546.
[36]JIANG J S,WANG Y,LIU J,et al.Exploring the mechanisms of organic matter degradation and methane emission during sewage sludge composting with added vesuvianite:Insights into the prediction of microbial metabolic function and enzymatic activity[J].Bioresource Technology,2019,286:121397.
[37]REN G M,XU X H,QU J J,et al.Evaluation of microbial population dynamics in the co‑composting of cow manure and rice straw using high throughput sequencing analysis[J].World Journal of Microbiology and Biotechnology,2016,32(6):101.
[38]GALPERIN M. Genome diversity of spore‑forming Firmicutes[J].Microbiology Spectrum,2013,1(2):1‑18.
[39]郭悦,万雨欣,徐伟慧,等.3种类型秸秆降解对黑土微生物群落及功能的影响[J].高师理科学刊,2023,43 (9):51‑58.
GUO Y,WAN Y X,XU W H,et al.Effects of degradation of three types of straw on microbial communities and functions in black soil[J].Journal of Science of Teachers’College and University,2023,43 (9):51‑58.
[40]LIN Y W,TUAN N N,HUANG S L.Metaproteomic analysis of the microbial community present in a
thermophilic swine manure digester to allow functional characterization:A case study[J].International Biodeterioration & Biodegradation,2016,115:64‑73.
[41]ZHU Y J,WANG Y Y,JIANG X X,et al.Microbial community compositional analysis for membrane bioreactor treating antibiotics containing wastewater[J].Chemical Engineering Journal, 2017, 325:300‑309.
[42]MARTIN M,BARBEYRON T,MARTIN R,et al.The cultivable surface microbiota of the brown Alga Ascophyllum nodosum is enriched in macroalgal‑polysaccharide‑degrading bacteria[J].Frontiers in Microbiology,2015,6:1487.
[43]敖静,李杨,刘晓辉,等.一株枯草芽孢杆菌GX7在鸡粪中的定殖及发酵作用的研究[J].云南农业大学学报(自然科学),2019,34(5):867‑873.
AO J,LI Y,LIU X H,et al.Study on the colonization and fermentation of Bacillus subtilis GX7 in chicken manure[J].Journal of Yunnan Agricultural University (Natural Science),2019,34(5):867‑873.
[44]江高飞,暴彦灼,杨天杰,等. 高温秸秆降解菌的筛选及其纤维素酶活性研究[J].农业环境科学学报,2020,39(10):2465‑2472.
JIANG G F,BAO Y Z,YANG T J,et al.Screening of thermophilic cellulolytic bacteria and investigation of cellulase thermostability[J].Journal of Agro‑Environment Science,2020,39(10):2465‑2472.
[45]沈丹青,于鑫,韩捷,等.芽孢杆菌固体菌剂对园林绿化废弃物堆肥的影响[J]. 西北农林科技大学学报(自然科学版),2024,52(1):127‑135.
SHEN D Q,YU X,HAN J,et al.Effect of Bacillus solid bacterial inocula on compost of green waste[J].Journal of Northwest A & F University(Natural Science Edition),2024,52(1):127‑135.
[46]YANG H Z,HE R Y,CUI Y,et al.Saprophytic Bacillus accelerates the release of effective components in agarwood by degrading cellulose[J].Molecules,2022,27(4):1428.
[47]曾敏.铜耐受芽孢杆菌的筛选及枯草芽孢杆菌Y3在堆肥发酵中的应用研究[D].雅安:四川农业大学,2022.
ZENG M.Screening of copper‑tolerant Bacillus and application of Bacillus subtilis Y3 in composting fermentation[D].Yaan: Sichuan Agricultural University,2022.
[48]YANG C X,YUE F F,CUI Y L,et al.Biodegradation of lignin by Pseudomonas sp.Q18 and the characterization of a novel bacterial DyP‑type peroxidase[J].Journal of Industrial Microbiology & Biotechnology,2018,45(10):913‑927.
[49]SUN S S,ZHANG Y T,LIU K R,et al.Insight into biodegradation of cellulose by psychrotrophic bacterium Pseudomonas sp.LKR‑1 from the cold region of China:Optimization of cold‑active cellulase production and the associated degradation pathways[J].Cellulose,2020,27(1):315‑333.
[50]刘晓梅.杏鲍菇菌渣纤维素降解菌的筛选、复合菌剂构建及应用[D].北京:中国农业科学院,2015.
LIU X M.Screening of cellulose degrading bacteria from Pleurotus eryngii residue, construction and application of compound fungi[D].Beijing:Chinese Academy of Agricultural Sciences,2015.
[51]刘悦,孙敬国,云月利,等.多肽肥对烟田土壤改良及烤烟生长发育的影响[J].山西农业科学,2024,52 (4):76‑83.
LIU Y,SUN J G,YUN Y L,et al.Effects of polypeptide fertilizers on soil improvement in tobacco fields and growth and development of flue‑cured tobacco[J].Journal of Shanxi Agricultural Sciences,2024,52(4):76‑83.
[52]黎妍妍,彭五星,张婷,等.万寿菊秸秆堆肥在缓解烟草连作障碍中的作用[J].南方农业学报,2022,53 (2):451‑459.
LI Y Y,PENG W X,ZHANG T,et al.Effects of marigold straw compost on alleviating continuous cropping obstacles of tobacco[J].Journal of Southern Agriculture,2022,53(2):451‑459.
[53]任元森,张海波,程红艳,等.pH值对猪粪与菌糠共发酵产酸特性及微生物群落的影响[J].河南农业科学,2023,52(5):110‑120.
REN Y S,ZHANG H B,CHENG H Y,et al.Effect of pH value on acid production characteristics and microbial community in co‑fermentation of pig manure and spent mushroom substrate[J].Journal of Henan Agricultural Sciences,2023,52(5):110‑120.
[54]陆肖宇,唐明凤,熊燕红,等.油橄榄果渣部分替代锯末糠壳对猪粪污异位发酵的影响[J].南方农业学报,2023,54(3):877‑886.
LU X Y,TANG M F,XIONG Y H,et al.Effects of partial replacement of sawdust and bran by olive pomace on ectopic fermentation of swine manure[J].Journal of Southern Agriculture,2023,54(3):877‑886.
[55]卢胜男,周岭,王龙杰,等.木醋液的制备及其在农业方面的应用研究进展[J].山西农业科学,2023,51 (2):225‑232.
LU S N,ZHOU L,WANG L J,et al.Research progress on preparation of wood vinegar and its application in agriculture[J].Journal of Shanxi Agricultural Sciences,2023,51(2):225‑232.
[56]赵辉,王喜英,谭智勇,等.改良剂对酸性植烟土壤固氮菌群落结构和丰度的影响[J].南方农业学报,2022,53(9):2435‑2443.
ZHAO H,WANG X Y,TAN Z Y,et al.Effects of amendment application on structure and abundance of nitrogen‑fixing microbial community in acidic tobacco‑planting soil[J].Journal of Southern Agriculture,2022,53(9):2435‑2443.
[57]李奇,王艳红,李义纯,等.不同类型调理剂对镉污染土壤修复效果和微生物群落的影响[J].南方农业学报,2022,53(7):1855‑1866.
LI Q,WANG Y H,LI Y C,et al.Effects of the different types of conditioners on remediation and microbial community in Cd‑contaminated soil[J].Journal of Southern Agriculture,2022,53(7) :1855‑1866.
[58]GUO H H,GU J,WANG X J,et al.Beneficial effects of bacterial agent/bentonite on nitrogen transformation and microbial community dynamics during aerobic composting of pig manure[J].Bioresource Technology,2020,298:122384.
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