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020 _aTHE0008188(Local)
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040 _aUMP
_beng
_cUMP
_erda
090 _aFIST .S84 2019 r Thesis
100 0 _aSufihana Yusof,
_eauthor.
245 1 0 _aScreening and identification of fungi associated with natural and artificially induced agarwood from aquilaria malaccensis /
_cSufihana Yusof
264 1 _aKuantan, Pahang :
_bUMP,
_c2019
264 4 _c© 2019
300 _axv, 90 pages :
_billustrations ;
_c30 cm. +
_e1 CD-ROM
336 _atext
_2rdacontent
336 _atext
_2rdacontent
337 _aunmediated
_2rdamedia
337 _acomputer
_2rdamedia
338 _avolume
_2rdacarrier
338 _acomputer disc
_2rdacarrier
347 _atext file
_bPDF
_2rda
500 _aFaculty of Industrial Sciences and Technology
502 _aThesis (Master of Science) -- Universiti Malaysia Pahang – 2019
504 _aIncludes bibliographical references
520 3 _aAquilaria malaccensis is a tropical tree which produces expensive resinous heartwood (agarwood) through naturally or artificially-induced injury or fungal infection. Fungi are commonly observed as the main microbial component responsible for agarwood formation. Until now, an effective formulation containing fungi-producing agarwood is not reported yet. The difference that exists between natural and artificially induced agarwood may be due to the different fungi diversity. Thus, a comparison between these two samples in terms of agarwood quality and fungi diversity is inevitable in order to determine effective agarwood inducers. Moreover, the comparison may show the quality of artificially induced agarwood to be potentially equal to natural agarwood based on fungal infection. This study focused on the analysis of agarwood volatile compounds from natural and artificially induced agarwood, as well as the isolation, screening, and identification of the fungi species associated with agarwood from both sources. The best inoculant performance was screened based on GCFID analysis of four months induced agarwood with respective commercial inoculant. Inoculant, Ino A, was proven to stimulate production of benzaldehyde, 4-phenyl-2-butanone, β selinene, and agarospirol. One year artificially induced agarwood (M1 and M2) showed competent sesquiterpene production such as agarospirol (4.31% and 0.301%), β-selinene (0.769% and 0.643%), aromadendrene (none and 1.976%), and β-agarofuran (none and 0.176%) compared to high-quality natural agarwood. Agarospirol was detected in all agarwood samples but higher in artificially induced agarwood. Artificially induced agarwood exhibited more fungi isolates compared to natural agarwood samples. Meanwhile, isolation of fungi from healthy wood as control enabled to grow the most of six isolates from each respective agarwood samples. Macroscopic observation and microscopic examination enabled isolated fungi to be group into ten. It was anticipated that eight groups of fungi isolated were identified in both natural and artificially induced agarwood associated with agarwood formation using culturing and sequencing of ITS regions of the fungi isolated from wood samples. In this study, fungi isolated were identified from Lasiodiplodia sp., Aspergillus sp., Fusarium sp., Schizophyllum sp. and Polypolares Order. Phanerochaete chrysosporum and Schizophyllum commune were discovered as new fungi associated with Aquilaria malaccensis agarwood. From the phylogenetic analysis, five clades of taxa were formed based on 1000 bootstrap values which supported previous genomic identifications.
610 2 0 _aFaculty of Industrial Sciences and Technology
_xDissertations
650 0 _aUniversities and colleges
_xDisertations
650 0 _aTheses
942 _2lcc
_cTHESIS