Microbial diversity and community structure in co-composted bamboo powder and tea leaves based on carbon substrate utilization patterns of the BIOLOG EcoPlate method

被引:1
作者
Morita, Nobuki [1 ]
Toma, Yo [2 ]
Ueno, Hideto [3 ]
机构
[1] Kochi Agr Res Ctr, 1100 Hataeda, Nankoku, Kochi 7830023, Japan
[2] Hokkaido Univ, Res Fac Agr, Res Grp Biosci & Chem, Kita 9,Nishi 9,Kita Ku, Sapporo, Hokkaido 0608589, Japan
[3] Ehime Univ, Grad Sch Agr, 3-5-7 Tarumi, Matsuyama, Ehime 7908566, Japan
来源
ADVANCES IN BAMBOO SCIENCE | 2024年 / 8卷
关键词
Compost; BIOLOG EcoPlate; Carbon substrate utilization; Microbial diversity; Microbial community structure; Bamboo; FUNCTIONAL DIVERSITY; TEMPERATURE; RESPONSES; BACTERIA;
D O I
10.1016/j.bamboo.2024.100101
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
This study clarified the functional characteristics of microorganisms during the co-composting of bamboo powder and tea leaves. Three treatments were established for 14 weeks of composting: B100 (600 kg bamboo powder), B40 (240 kg bamboo powder and 360 kg tea leaves), and B20 (120 kg bamboo powder and 480 kg tea leaves), with two replicates each. The functional characteristics of the microorganisms were analyzed using a BIOLOG EcoPlate for carbon substrate utilization patterns using kinetic parameters, microbial diversity analysis by calculating diversity indices, and microbial community structure analysis via principal component analysis of kinetic parameters. When bamboo powder was composted alone, the microbial diversity was high in the early composting stage because of the utilization of the rich and complicated carbon substrates. However, in the late composting stage, the microbial diversity was low because of the utilization of poor and simple carbon substrates. In contrast, when bamboo powder and tea leaves were combined, carbon substrate utilization and microbial diversity were low during the early composting stage. In the middle and late stages of composting, abundant carbon substrates became available, and microbial diversity increased. Differences in carbon substrate utilization patterns can be separated by microbial community structure analysis, especially at the end of composting. The communities were divided according to the proportions of bamboo powder and tea leaves. In the early stage of co-composting bamboo powder and tea leaves, microbial activity decreased because of the lower compost temperature and higher tea polyphenol content. However, in the middle and late stages, microbial activity may increase owing to the supply of tea-derived soluble sugars and amino acids. The co-composting of bamboo powder and tea leaves may enhance microbial activity, diversity, and carbon substrate utilization during the middle and late composting stages.
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页数:12
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共 67 条
  • [1] Functional changes in culturable microbial communities during a co-composting process: Carbon source utilization and co-metabolism
    Albrecht, Remy
    Perissol, Claude
    Ruaudel, Florence
    Le Petit, Jean
    Terrom, Gerard
    [J]. WASTE MANAGEMENT, 2010, 30 (05) : 764 - 770
  • [2] Biological and anti-microbial activity of irradiated green tea polyphenols
    An, BJ
    Kwak, JH
    Son, JH
    Park, JM
    Lee, JY
    Jo, C
    Byun, MW
    [J]. FOOD CHEMISTRY, 2004, 88 (04) : 549 - 555
  • [3] Microbial community structure and dynamics in thermophilic composting viewed through metagenomics and metatranscriptomics
    Antunes, Luciana Principal
    Martins, Layla Farage
    Pereira, Roberta Verciano
    Thomas, Andrew Maltez
    Barbosa, Deibs
    Lemos, Leandro Nascimento
    Machado Silva, Gianluca Major
    Silva Moura, Livia Maria
    Condomitti Epamino, George Willian
    Digiampietri, Luciano Antonio
    Lombardi, Karen Cristina
    Ramos, Patricia Locosque
    Quaggio, Ronaldo Bento
    Franco de Oliveira, Julio Cezar
    Pascon, Renata Castiglioni
    da Cruz, Joao Batista
    da Silva, Aline Maria
    Setubal, Joao Carlos
    [J]. SCIENTIFIC REPORTS, 2016, 6
  • [4] Microbial community dynamics in the mesophilic and thermophilic phases of textile waste composting identified through next-generation sequencing
    Biyada, Saloua
    Merzouki, Mohammed
    Demcenko, Taisija
    Vasiliauskiene, Dovile
    Ivanec-Goranina, Ruta
    Urbonavicius, Jaunius
    Marciulaitiene, Egle
    Vasarevicius, Saulius
    Benlemlih, Mohamed
    [J]. SCIENTIFIC REPORTS, 2021, 11 (01)
  • [5] The microbial community in a green turtle nesting beach in the Mediterranean: application of the Biolog EcoPlate approach for beach pollution
    Candan, Esra Deniz
    Idil, Neslihan
    Candan, Onur
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2021, 28 (36) : 49685 - 49696
  • [6] The tea leaf microbiome shows specific responses to chemical pesticides and biocontrol applications
    Cernava, Tomislav
    Chen, Xiaoyulong
    Krug, Lisa
    Li, Haoxi
    Yang, Maofa
    Berg, Gabriele
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 667 : 33 - 40
  • [7] Assessment of Biolog EcoplateTM method for functional metabolic diversity of aerotolerant pig fecal microbiota
    Checcucci, A.
    Luise, D.
    Modesto, M.
    Correa, F.
    Bosi, P.
    Mattarelli, P.
    Trevisi, Paolo
    [J]. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2021, 105 (14-15) : 6033 - 6045
  • [8] Chojniak J, 2015, INT J ENVIRON RES, V9, P785
  • [9] Bacterial diversity and community structure of a sub-surface aquifer exposed to realistic low herbicide concentrations
    de Lipthay, JR
    Johnsen, K
    Albrechtsen, HJ
    Rosenberg, P
    Aamand, J
    [J]. FEMS MICROBIOLOGY ECOLOGY, 2004, 49 (01) : 59 - 69
  • [10] Potential and sustainable utilization of tea waste: A review on present status and future trends
    Debnath, Banhisikha
    Haldar, Dibyajyoti
    Purkait, Mihir Kumar
    [J]. JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2021, 9 (05):