Insights into microbial community structure and diversity in oil palm waste compost

被引:8
作者
Abd Khalid, Nurshafika [1 ]
Rajandas, Heera [2 ]
Parimannan, Sivachandran [2 ]
Croft, Laurence J. [3 ]
Loke, Stella [4 ]
Chong, Chun Shiong [1 ]
Bruce, Neil C. [5 ]
Yahya, Adibah [1 ]
机构
[1] Univ Teknol Malaysia, Fac Sci, Biorefinery Technol Lab, Dept Biosci, Johor Baharu 81310, Malaysia
[2] AIMST Univ, Fac Appl Sci, Ctr Excellence Omics Driven Computat Biodiscovery, Bedong 08100, Kedah, Malaysia
[3] Deakin Univ, Sch Life & Environm Sci, Ctr Integrat Ecol, Geelong, Vic 3220, Australia
[4] Deakin Univ, Sch Life & Environm Sci, Burwood Campus,Bldg M,221 Burwood Hwy, Burwood, Vic 3125, Australia
[5] Univ York, Dept Biol, Ctr Novel Agr Prod, Wentworth Way, York YO10 5DD, N Yorkshire, England
基金
英国生物技术与生命科学研究理事会;
关键词
Oil palm empty fruit bunch; Palm oil mill effluent; Compost; Metagenomics; Microbial diversity; GEN; NOV; METAGENOMIC ANALYSIS; SOIL; BACTERIUM; RNA; ANAEROLINEAE; IMPACT; DNA;
D O I
10.1007/s13205-019-1892-4
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Empty fruit bunch (EFB) and palm oil mill effluent (POME) are the major wastes generated by the oil palm industry in Malaysia. The practice of EFB and POME digester sludge co-composting has shown positive results, both in mitigating otherwise environmentally damaging waste streams and producing a useful product (compost) from these streams. In this study, the bacterial ecosystems of 12-week-old EFB-POME co-compost and POME biogas sludge from Felda Maokil, Johor were analysed using 16S metagenome sequencing. Over ten phyla were detected, with Chloroflexi being the predominant phylum, representing approximately 53% of compost and 23% of the POME microbiome reads. The main bacterial lineage found in the compost and POME was Anaerolinaceae (Chloroflexi) with 30% and 18% of the total gene fragments, respectively. The significant differences between compost and POME communities were abundances of Syntrophobacter, Sulfuricurvum and Coprococcus. No methanogens were identified due to the bias in general 16S primers to eubacteria. The preponderance of anaerobic species in the compost and high abundance of secondary metabolite fermenting bacteria is due to an extended composting time, with anaerobic collapse of the pile due to the tropical heat. Predictive functional profiles of the metagenomes using 16S rRNA marker genes suggest that the presence of enzymes involved in degradation of polysaccharides such as glucoamylase, endoglucanase and arabinofuranosidase, all of which were strongly active in POME. Eubacterial species associated with cellulytic methanogenesis were present in both samples.
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页数:11
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