Hasil Pencarian  ::  Simpan CSV :: Kembali

Hasil Pencarian

Ditemukan 150000 dokumen yang sesuai dengan query
cover
"Penelitian bertujuan untuk memperoleh informasi keanekaragaman khamir dari
bunga Jatropha integerrima Jacq. di kampus Universitas Indonesia, Depok.
Khamir diisolasi dari 30 bunga (15 bunga jantan dan 15 bunga betina). Hasil
elektroforesis menunjukkan terdapat polimorfisme panjang (300--700 pb) daerah
ITS rDNA 26 isolat khamir representatif yang mengindikasikan adanya
keragaman genetik di antara isolat tersebut. Berdasarkan data sequence, 26 isolat
khamir representatif tersebut secara taksonomi beragam, yaitu terdiri dari 13
species yang berasal dari phylum Ascomycota (class Hemiascomycetes
(Candida)) dan dari phylum Basidiomycota (class Urediniomycetes
(Sporidiobolus), Ustilaginomycetes (Pseudozyma & Ustilago), dan
Hymenomycetes (Bullera & Cryptococcus))."
Universitas Indonesia, 2010
S31632
UI - Skripsi Membership  Universitas Indonesia Library
cover
cover
Siti Apia
"ABSTRAK
Telah dilakukan penelitian yaitu mengisolasi dan mengidentifikasi khamir dari beberapa jenis buah tropis yang berasal dari Bogor, Cibinong, Pasar Kebayoran Lama, Kebayoran Baru, dan Pasar Minggu. Buah yang digunakan dalam penelitian mi adalah: alpukat, belimbing, ceremei, cempedak, duku, gohok, kecapi, kesemek, lengkeng, manggis, markisa, menteng, pala, dan sawo. Isolasi dilakukan pada medium Yeast-extract Malt-extract Agar (YMA) dan identifikasi yang dilakukan meliputi hidrolisis urea, pertumbuhan pada medium cair, pertumbuhan pada medium padat, pembentukan miselium, pembentukan askospora, fermentasi, dan asimilasi karbon, serta asimilasi nitrogen. Hasil penelitian ini adalah: Hansenula beijerinckii van der Walt dari kesemek, H. anomala var. schneggii (Weber) Wickerham dari cempedak, H. subpelliculosa Bedford dari markisa, Pichia acaciae van der Walt dari duku dan menteng, P. besseyi Kurtzman et Wickerham dari sawo, P. burtonii Boidin, Pignal, Lehodey, Vey et Abadle dari pala, P. delftensis Beech dari manggis, P. kluyveri Bedford dari belimbing dan ceremai, P. ohmeri (Etchells et Bell) Kreger-van Rij dari markisa, kecapi, dan manggis, P. rhodanensis (Ramirez et Boidin) Phaff dari manggis, P. terricola van der Walt dari kesemek dan gohok, P. toletana (Socias,
Ramirez et Pelaez) Kreger-van Rij dari cempedak, Pstrasburgensis (Ramirez et Boidin) Phaff dari lengkeng, P. norvegensis Leask et Yarrow dan sawo. Saccharomyces cerevisiae Hansen dari pala, sawo, dan duku, Sacch. Italicus Castelli dari markisa, Sacch. kluyveri Phaff, Miller et Shifrine dari alpukat dan sawo, Trichosporon eriense Hedrick et Dupont dari alpukat. Sebagian besar khamir yang ditemukan berasal dari kelas Ascomycetes dan marga Pichia paling banyak ditemukan, yaitu pada 13 sampel buah dari 14 sampet buah yang diteliti."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam. Universitas Indonesia, 1998
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Lindah
"Khamir dapat hidup dan bahkan ban yak ditemukan pada beberapa
kultivar buah pisang. Penelitian ini bertujuan untuk mengisolasi dan
mengidentifikasi khamir dari kelas Ascomycetes yang terdapat pada
beberapa kultivar buah pi sang berdasarkan kunci identifikasi Lodder (1971)
dan Kreger-van Rij (1984). !dentifikasi yang dilakukan meliputi produksi
urease, pengamatan sel dan koloni khamir, pembentukan miselium palsu,
pembentukan askospora, kemampuan fermentasi gula, dan asimi!asi C dan
N. Hasii penelitian menunjukkan bahwa dari 21 buah pisang yang terdiri atas
17 kultivar, diperoleh 4 marga khamir, yaitu Hanseniaspora, K/uyveromyces,
Pichia, dan Sacch.a. romyces, yarg terdiri dari 11 jenis khamir yang meliput1
25 isolat. Pada pisang costa ditemukan H'spora uvarum (Niehaus) Shehata,
Mrak et Phaff: pad a pi sang mas ditemukan K. wikenii van Der Walt, Ne! et
van Kerken; pada pisang raja ditemukan P. amethionina Starmer, Phaff,
Miranda et Miller var. amethionina; pada pisang ambon, nangka, uli, sereh,
dan tanduk ditemukan P. besseyi Kurtzman et Wickerham; pada pisang
ambon lumut ditemukan P. farinosa (Lindner) Hansen; pada pisang siem dan
'
rabek ditemukan P. kuyveri Bedford; pada pisang lampung, kepok, uli, mas,
angleng, dan kepok bangkok ditemukan P. membranaefaciens Hansen; pada
pisang gebyar dan mas ditemukan Sacch. bayanus Saccardo; pada pisang
-
mas ditemukan Sacch.bisporus (Naganishi) Lodder et Kreger-van Rij; pada"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 1998
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Washila Nurlaila
"ABSTRACT
Isolasi dan penapisan kapang dan khamir dari lima jenis ragi tapai asal beberapa kota di Jawa Barat telah dilakukan. Berdasarkan hasil isolasi, didapatkan tiga belas isolat kapang dan tujuh isolat khamir. Penapisan kapang amilolitik dilakukan secara kualitatif menggunakan uji iodin. Uji kualitatif dilakukan dengan mengukur zona bening pada medium starch agar yang telah ditumbuhi kapang dan kemudian ditetesi iodin. Hasil uji menunjukkan isolat (ZC1, ZC2, ZGJ2) memiliki diameter zona bening sebesar (69,95 mm, 58,73 mm, 56,85 mm). Aktivitas amilase ketiga isolat kapang terpilih diukur menggunakan metode DNS (Dinitrosalicylic Acid). Hasil uji menunjukkan bahwa isolat ZGJ2 merupakan isolat kapang dengan aktivitas tertinggi (6,30 U/mL) sedangkan isolat kapang dengan aktivitas terendah (3,03 U/mL) dihasilkan oleh isolat ZC2. Penapisan khamir penghasil alkohol dilakukan berdasarkan pertumbuhan sel dan gas  yang terperangkap dalam tabung Durham, dalam medium PDB yang ditambah glukosa 5%, 10%, dan 15%. Ketiga isolat mampu tumbuh dengan baik pada medium dengan konsentrasi glukosa 15%. Namun pembentukan gas  hanya terjadi pada penambahan 10% glukosa oleh isolat YC1 (4+) dan YC3 (3+)  serta penambahan 5% glukosa oleh isolat YC2 (2+). Hasil pengamatan karakter makroskopis dan mikroskopis isolat ZC1 dan ZGJ2  diduga merupakan genus Rhizopus, sedangkan isolat ZC2 masuk ke dalam genus Mucor. Isolat khamir terpilih diduga termasuk ke dalam filum Ascomycota berdasarkan karakter morfologi dan fisiologi.

ABSTRACT
Isolation and screening of molds and yeasts from five types of ragi tapai from several cities in West Java had been done. Based on the results of isolation, thirteen mold isolates and seven yeast isolates were obtained. Screening of amylolytic mold was done by qualitative assay using iodine. Iodine assay was done by measuring clear zones on starch agar medium which had been grown with mold and then flooded with iodine. The results of iodine assay showed that three isolates (ZC1, ZC2, ZGJ3) formed clear zones diameter (69.95, 58.73, 56.85). Amylase activity of the three selected mold isolates were measured using the DNS (Dinitrosalicylic Acid) method. The results showed that ZGJ2 had highest activity (6.30 U / mL) meanwhile the mold isolate with the lowest activity (3.03 U / mL) was ZC2. Alcohol-producing yeasts were screened based on cell growth and  trapped in Durham tubes, in the medium of PDB added with glucose 5%, 10%, and 15%. The best three isolates were able to grow in a medium with 15% glucose concentration. However the formation of  only occurs in the addition of 10% glucose by YC1 (4+) and YC3 (3+) and the addition of 5%  glucose by YC2 (2+). Based on observation of the macroscopic and microscopic characters, ZC1 and ZGJ2 assumed belong to the Rhizopus genus, meanwhile ZC2 belongs to the Mucor genus.The selected yeasts are assumed to belong to the Ascomycota phylum based on morphological and physiological characters."
2019
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Sekar Larashati
Depok: Universitas Indonesia, 2000
S31220
UI - Skripsi Membership  Universitas Indonesia Library
cover
Suwarti
"Oxydoreductases are enzymes which catalyze oxidation-reduction reaction of their corresponding substrates. Oxydoreductase enzymes from many microorganisms had become major focus of research during last decades. This reaction had been utilized in biosensor (Yuhashi et al. 2005), biotransformation and biofuel (Zu et al. 2006). In the field of biosensor, glucose dehydrogenase application as self-blood glucose monitoring had evolved through several generation to enhance its sensitivity and specificity (Witarto et al. 1997).
Oxydoreductase involve cofactor in their active sites. According to Anthony (1996) among several known cofactors such nicotinamide, flavonoid, and quinone, Pyrollo Quinoline Qinone (PQQ) as the member group of quinon is one of the latest known-cofactors. PQQ differs from other cofactor since it is not covalently bond to its enzyme (Oubrie et al. 1999). PQQ ubiquitously found in all organisms from prokaryote to eukaryote (Bishop et al. 1998). Bacteria is the largest group of PQQ-oxydoreductase producing microorganisms. They successfully isolated from many habitats such: soil, water (Toyama et al. 1995), fruits (Adachi et al. 2003), plants, and in human mouth (Anesti et al. 2005). However, study on PQQ-oxydoreductase producing bacteria isolation had never been reported in Indonesia.
PQQ-Oxydoreductase bacteria are able to utilize organic substrates such glucose, ethanol, methanol, up to polyvinyl alcohol (Ameyama et al. 1985). One of the habitats which provides such organic substrates is Situ Agathis located in University of Indonesia Depok. Situ Agathis contain humic substances that could be degraded in to glucose, ethanol, methanol, also quinone.
In this study, isolation of oxydoreductase-producing bacteria from Situ Agathis University of Indonesia, Depok and characterization of oxydroreductases of selected isolates were performed. The objectives of this research are: to investigate the presence of oxydoreductase-producing bacteria, to isolate the oxydoreductases -producing bacteria, and to partially characterize oxydoreductases from Situ Agathis University of Indonesia Depok. This is the first study on bacteria isolation performed in Situ Agathis UI, Depok. Hence, this study can provide information about the oxydoreductases- producing bacteria from Situ Agathis, which located in UI, Depok. The study consists of two part: first part describe the isolation of oxydoreductase-producing bacteria from Situ Agathis. Second part describe the partial characterization of oxydoreductases which covers enzyme activity, molecular weight, and PQQ effects on the enzymes activity.
The research was carried out at the Protein Engineering Laboratory, Biotechnology Research Centre, Indonesian Institute of Science, Cibinong and the Laboratory of Microbiology, Department of Biology, University of Indonesia, Depok during February ? September 2007. The isolation of bacteria was conducted in three methods i.e : dilution, filtration using filter paper Milipore membran (0.2 μm) based on Cappucino and Sherman (2002). Isolation of oxydoreductase-producing bacteria was carried out by using selective media based on Toyama et al. (1995). The assay of oxydoreductases was performed by using Native-PAGE based on Khodijah (2002).
The result showed that 83 isolates were obtained from Situ Agathis which we assumed could produce oxydoreductase enzymes. Among those isolates, 15 isolates were randomly selected for further study e.g : five isolates which could grow in glucose as sole carbon sources by producing glucose dehdyrogenase, six isolates which could grow on ethanol as sole carbon sources by producing ethanol dehydrogenase and four isolates which could grow on methanol as sole carbon sources by producing methanol dehydrogenase. The selected isolates showed various morphotypes indicating no specific morphological character in oxydoreductase-producing bacteria.
Two oxydoreductases from selected isolates were selected to be analyzed further in second part this thesis. Those enzymes were examined for their possibility to have intracellular PQQ cofactor. Those enzymes were obtained from isolate G1H1D30 (glucose dehydrogenase) and isolate A1H2D60 (ethanol dehydrogenase). Native-PAGE result confirmed that crude extract fraction, dialyzed fraction and elution of open column chromatography of isolate G1H1D30 can produce glucose dehydrogenase and isolate A1H2D60 can produce ethanol dehdyrogenase. The molecular weight of glucose dehydrogenase subunit is about 46 kDa using SDS-PAGE.
SDS-PAGE of ethanol dehydrogenase did not show any protein band in acrylamide gel. We assumed that the amount of protein extracted from cell cytoplasm was not sufficient enough to be detected in SDS-PAGE. Cell of isolate A1H2D60 should be treated by other destruction method such as French pressure or ultrasonicator since this isolate is Gram positive bacteria which had thicker peptydoglycan layer than isolate G1H1D30 which is Gram negative bacteria.
Other characterization performed was addition of PQQ as the cofactor to investigate its effect on enzymes activity. Glucose dehydrogenase from isolate G1H1D30 was known to be PQQ dependent enzymes from its activity increased after addition of PQQ. The addition of PQQ raised the indicating no specific morphological character in oxydoreductase-producing bacteria.
Two oxydoreductases from selected isolates were selected to be analyzed further in second part this thesis. Those enzymes were examined for their possibility to have intracellular PQQ cofactor. Those enzymes were obtained from isolate G1H1D30 (glucose dehydrogenase) and isolate A1H2D60 (ethanol dehydrogenase). Native-PAGE result confirmed that crude extract fraction, dialyzed fraction and elution of open column chromatography of isolate G1H1D30 can produce glucose dehydrogenase and isolate A1H2D60 can produce ethanol dehdyrogenase. The molecular weight of glucose dehydrogenase subunit is about 46 kDa using SDS-PAGE.
SDS-PAGE of ethanol dehydrogenase did not show any protein band in acrylamide gel. We assumed that the amount of protein extracted from cell cytoplasm was not sufficient enough to be detected in SDS-PAGE. Cell of isolate A1H2D60 should be treated by other destruction method such as French pressure or ultrasonicator since this isolate is Gram positive bacteria which had thicker peptydoglycan layer than isolate G1H1D30 which is Gram negative bacteria.
Other characterization performed was addition of PQQ as the cofactor to investigate its effect on enzymes activity. Glucose dehydrogenase from isolate G1H1D30 was known to be PQQ dependent enzymes from its activity increased after addition of PQQ. The addition of PQQ raised theindicating no specific morphological character in oxydoreductase-producing bacteria.
Two oxydoreductases from selected isolates were selected to be analyzed further in second part this thesis. Those enzymes were examined for their possibility to have intracellular PQQ cofactor. Those enzymes were obtained from isolate G1H1D30 (glucose dehydrogenase) and isolate A1H2D60 (ethanol dehydrogenase). Native-PAGE result confirmed that crude extract fraction, dialyzed fraction and elution of open column chromatography of isolate G1H1D30 can produce glucose dehydrogenase and isolate A1H2D60 can produce ethanol dehdyrogenase. The molecular weight of glucose dehydrogenase subunit is about 46 kDa using SDS-PAGE.
SDS-PAGE of ethanol dehydrogenase did not show any protein band in acrylamide gel. We assumed that the amount of protein extracted from cell cytoplasm was not sufficient enough to be detected in SDS-PAGE. Cell of isolate A1H2D60 should be treated by other destruction method such as French pressure or ultrasonicator since this isolate is Gram positive bacteria which had thicker peptydoglycan layer than isolate G1H1D30 which is Gram negative bacteria.
Other characterization performed was addition of PQQ as the cofactor to investigate its effect on enzymes activity. Glucose dehydrogenase from isolate G1H1D30 was known to be PQQ dependent enzymes from its activity increased after addition of PQQ. The addition of PQQ raised theenzyme activity to eight fold from 0.102 U/mL to 0.94 U/mL of crude enzyme extract. In contrast, addition of PQQ did not give significant effect to EDH enzyme activity (activity of crude enzyme remain 0.082 U/mL in the presence and absence of PQQ). However, further study should be performed to analyze the real cofactor of EDH from isolate A1H2D60. EDH differs from GDH since it had disulphide ring which stabilize PQQ bound to its enzyme.
Hence, PQQ could remain bound to EDH as purification procedure performed. PQQ-GDH do not have any disulphide ring which could stabilize PQQ bound. This fact implicated unstable PQQ bound to GDH while isolation and purification performed."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2008
T39491
UI - Tesis Open  Universitas Indonesia Library
cover
Alvin Natalius
"Penelitian bertujuan mengisolasi kapang manuskrip kuno kertas Eropa asal Perpustakaan Fakultas Ilmu Pengetahuan Budaya Universitas Indonesia, mengetahui kemampuan kapang-kapang tersebut tumbuh pada kertas Eropa dan kemampuan selulolitiknya, serta mengidentifikasinya. Hasil isolasi dan pemurnian pada medium DG 18 menghasilkan 11 isolat kapang. Penapisan isolatisolat menunjukkan 9 isolat memiliki kemampuan tumbuh pada substrat kertas Eropa. Penapisan menggunakan Carboxymethyl Cellulose (CMC) dan Congo red memberikan indikasi delapan isolat memiliki enzim selulase berupa endoglukanase.
Hasil identifikasi konvensional berdasarkan karakter morfologi menunjukkan kapang-kapang tersebut adalah Aspergillus E.FIB.UI.1.1.2, Aspergillus E.FIB.UI.1.2, Aspergillus E.FIB.UI.4.2, Aspergillus E.FIB.UI.5.3, Penicillium E.FIB.UI.2.1.1, Penicillium E.FIB.UI.2.1.2, Penicillium E.FIB.UI.2.8, mycelia sterilia E.FIB.UI.1.1.1, dan mycelia sterilia E.FIB.UI.3.3.

This research was to isolate fungi from the Library of Faculty of Humanities of Universitas Indonesia, to screen cellulolytic isolates that grow on old manuscripts of European papers and to identify the isolates. Eleven mould isolates were obtained on medium DG 18 Agar. Nine isolates were able to grow on European papers. Eight isolates were able to grow on Carboxymethyl Cellulose (CMC) and Congo red indicating they have endoglucanase.
Identification by conventional method showed that they were Aspergillus E.FIB.UI.1.1.2, Aspergillus E.FIB.UI.1.2, Aspergillus E.FIB.UI.4.2, Aspergillus E.FIB.UI.5.3, Penicillium E.FIB.UI.2.1.1, Penicillium E.FIB.UI.2.1.2, Penicillium E.FIB.UI.2.8, mycelia sterilia E.FIB.UI.1.1.1, and mycelia sterilia E.FIB.UI.3.3.
"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2012
S42963
UI - Skripsi Open  Universitas Indonesia Library
cover
Michelle
"Penelitian bertujuan untuk mengisolasi, mengidentifikasi, dan menguji kemampuan kapang selulolitik dari lima manuskrip daluang asal Perpustakaan FIB UI. Hasil isolasi pada medium PCA menghasilkan 19 isolat kapang, sedangkan isolasi pada medium DG18 menghasilkan 15 isolat kapang xerofilik. Sebanyak 15 isolat kapang memiliki kemampuan tumbuh pada kertas daluang, sedangkan 14 isolat dapat menggunakan CarboxyMethyl Cellulose (CMC) dan Congo red yang mengindikasikan dapat menghasilkan endoglukanase. Hasil identifikasi konvensional berdasarkan karakter morfologi menunjukkan 4 isolat merupakan genus Aspergillus, 8 isolat merupakan genus Penicillium, 1 isolat merupakan genus Fraseriella, dan 2 isolat merupakan mycelia sterilia.

This research was to isolate fungi from old daluang manuscripts from Library of Faculty of Humanities University of Indonesia, to investigate cellulolytic isolates and to identify the isolates. Nineteen mould isolates were obtained on medium PCA, whilst fifteen xerophilic mould isolates were obtained on medium DG18 agar. Fifteen isolates were able to grow on daluang paper. Fourteen isolates were able to grow on Carboxymethyl Cellulose (CMC) and Congo red indicating they have endoglucanase. Identification by conventional method showed that 4 isolates were Aspergillus, 8 isolates were Penicillium, 1 isolate were Fraseriella, and 2 isolates were mycelia sterilia."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2012
S43553
UI - Skripsi Open  Universitas Indonesia Library
cover
<<   1 2 3 4 5 6 7 8 9 10   >>