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  <controlfield tag="008">220228s2019    th ar  |||    000 | eng d</controlfield>
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    <subfield code="a">AIT Diss. no.AQ-19-01  </subfield>
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    <subfield code="a">Kamble, Manoj  </subfield>
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    <subfield code="a">Application of phytobiotic supplementation to improve disease resistance of Nile Tilapia (Oreochromis Niloticus)</subfield>
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    <subfield code="a">Bangkok :</subfield>
    <subfield code="b">Asian Institute of Technology,</subfield>
    <subfield code="c">2019</subfield>
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    <subfield code="a">123 leaves :</subfield>
    <subfield code="b">ill.</subfield>
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    <subfield code="a">Dissertation ;</subfield>
    <subfield code="v">no. AQ-19-01</subfield>
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    <subfield code="a">A dissertation submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy in Aquaculture and Aquatic Resources Management</subfield>
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    <subfield code="a">Thesis (Ph.D.) - Asian Institute of Technology, 2019</subfield>
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    <subfield code="a">The effects of selected plant extracts, guava (Psidium guajava; PGLE), star gooseberry  (Phyllanthus acidus PALE), and the mixture of PGLE and PALE on the gastrointestinal  microflora, immuno-hematological responses and disease resistance of Nile tilapia  (Oreochromis niloticus) challenged with Aeromonas hydrophila and Streptococcus  agalactiae were investigated in this study. The plant extracts, hereafter termed  phytobiotics, were added to commercial tilapia feed (Charoen Pokphand (CP)-771O) at  the rate of 5 and 109 kg" respectively.  The first part of the study dealt with evaluating the phytochemical and total phenolic  content (TPC) , antioxidant [DPPH (1, 1-diphenyl-2-picryl hydrazyl), ABTS: 2,2'-azino-  bis (3-ethylbenzothiazoline-6-sulphonic acid) and FRAP (Ferric reducing antioxidant  power assay)] and antimicrobial activities of different solvent leaf extracts of PGLE,  PALE and a mixture of PGLE &amp; PALE (Mixed). The phytochemical screening of  aqueous (AQ) leaf extract of phytobiotics revealed the presence of alkaloids, flavonoids,  phenolics, saponins, and tannins. The AQ extract showed high total phenolic content  (TPC) in PGLE (173.4.&#xB1;9.4 mg GAE g-l), PALE (322.1&#xB1;17.9 mg GAE g-l), and mixed  (140.2&#xB1;7.5 mg GAE g-l) phytobiotics. The methanol (ME) extract of PGLE had  significantly lower (p&lt;0.05) ICso value of DPPH (194.83&#xB1;13.22 ug mL-1) compared to L-  ascorbic acid (299.83&#xB1;5.13 ug mL-1). The AQ &amp; ethanol (ET) extracts of PALE  demonstrated significantly lowest (p&lt;0.05) ICso value of ABTS (165.2&#xB1;2.0 &amp;  177.40&#xB1;6.58 ug mL-1) compared to quercetin (308.37&#xB1;19.08 ug mL-1). The AQ, ET and  ME extracts of PGLE demonstrated significantly higher (p&lt;0.05) FRAP values  (306.30&#xB1;O.97, 291.49&#xB1;3.39 and 388.49&#xB1;25.82 J.lM FeS04 g-\ respectively) in comparison  to L-ascorbic acid (281.51&#xB1;2.66 J.lM FeS04 g-l). The phytobiotic extracts also  demonstrated considerable antimicrobial activity against S. agalactiae and A. hydrophila.  AQ leaf extracts of phytobiotics showed bactericidal activity against both bacteria with  MIC and MBC values lower than 100 ug mL-1 whereas, AQ extracts of mixed phytobiotic  exhibited a strong synergistic impact against S. agalactiae and a nearly additive effect  against A. hydrophila, respectively.  The in vitro results revealed the presence of alkaloids, flavonoids, phenolics, saponins  and tannins in the AQ extracts of PGLE, PALE and mixed phytobiotics. These extracts  also demonstrated higher total phenolic content, most potent antioxidant activities and  higher antimicrobial and bactericidal activities. Hence, they were chosen for the 'in vivo  experiments using Nile tilapia.  The second study was based on investigating the effects of dietary supplementation of  phytobiotics on gut (distal) microbiota of Nile tilapia. Growth and feed utilization  parameters were also monitored to evaluate whether the supplementation of phytobiotics  had any adverse effect on them. The results showed that the highest total viable count of  the digesta sample was observed in PALE-5 treatment. DGGE DNA fingerprinting  patterns extracted from the control and phytobiotic treatment-groups of digesta of tilapia  after 0 (Initial) and 12 weeks of feeding were clustered into six major groups at 58 %  similarity. The total number of phyla and genera from each treatment ranged from 1 to 3  and 4 to 12, respectively. The most diverse intestinal bacterial community was observed  in the fish fed diet supplemented with mixed-IO phytobiotics treatment with 12 genera.  Also, PGLE-IO phytobiotic treatment had the highest Margalefs Species richness,  Shannon-Wiener index, and evenness (5.06, 2.08, and 2.08). The highest Simpson index   of diversity was observed in mixed-lO phytobiotics treatment. Seven phyla of bacteria  including Actinobacteria, Bacteroidetes, Firmicutes, Fusobacteria, Planctomycetes,  Proteobacteria and Verrucomicrobia were represented in the sequences. The most  dominant phylum was Fusobacteria accounting for -78.3% (224 clones) of the total  clones, and it was the only phylum found in all experimental treatments. Cetobacterium  spp. was the most dominant genera observed among all the experimental treatments. The  disappearance in the abundance of phylum Verrucomicrobia &amp; Bacteroidetes and also an  emergence of phylum Actinobacteria were observed in the phytobiotic treatment-groups  when compared to the control. The gut bacterial community from PGLE-I0 was found  significantly (Cs &lt;0.60) different (Cs = 0.45) and PALE-lO &amp; Mixed-lO were found  marginally (0.60 :S Cs &lt; 0.85) different (Cs = 0.84 and 0.66) in comparison to the control.  It was also observed that the inclusion of plant extracts in fish feeds did not have any  detrimental effect on the growth performance and feed utilization efficiency of fish.  The third study was conducted to investigate the efficacy of aqueous extract of  phytobiotics supplemented diets consisting of leaf-extracts of Psidium guajava (PGLE),  Phyllanthus acidus (PALE), and the mixture of PGLE and PALE at the rates of 5 and 10  g kg" of the feed of Nile tilapia (Oreochromis niloticus), respectively. Following 12  weeks of feeding, the fish were challenged with Streptococcus agalactiae for 15 days.  Immuno-hematological parameters were measured before and after the challenge. The  results showed significantly (p&lt;0.05) enhanced innate immune parameters after  administration of the plant extracts. Innate immunity parameters were 2 to 3 times higher  than the control; PGLE-I0 showed the highest values. The fish fed PGLE-I0 had the  highest post-challenge WBC, RBC, Hb, and Hct values compared to the control. The  dietary supplementation of plant extracts had a higher survival percentage compared to  the control.  The fourth study investigated the protective effects of dietary supplementation of the  phytobiotics and their potential for enhanced immune response and disease resistance of  Nile tilapia against A. hydrophila infection. The results showed that dietary  supplementation of PGLE-l 0 activated the immuno-hematological responses and altered  the serological parameters of Nile tilapia. A significantly higher survival was observed in  the fish fed diet supplemented with phytobiotics treatment-groups than the control group  (p&lt;0.05 by log-rank test). The highest relative percentage survival was found in PALE-lO  (87.4%) followed by PGLE-5 (83.7%), PGLE-lO, PALE-5, Mixed-lO (78.9%) and  Mixed-5 (74.7%), respectively.  In conclusion, the in vitro AQ extracts of PGLE, PALE and mixed plants revealed the  presence of flavonoids, phenolics, saponins and tannins, higher total phenolic content,  most potent antioxidant, higher antimicrobial and bactericidal activities, and a strong  synergism against A. hydrophila and S. agalactiae. In vivo trials also proved that the diet  enriched with plant extracts had comparatively higher relative percent survival of Nile  tilapia against the A. hydrophila and S. agalactiae infection. Addition of 10 g kg-l of  guava leaves (PGLE-I0) improved the hematological and immunological parameters of  Nile tilapia. The inclusion of plant extracts to fish feeds demonstrated no detrimental  effect on growth performance and feed utilization efficiency of tilapia. The most diverse  intestinal bacterial community was observed in the fish fed diet supplemented with  mixed-lO phytobiotics treatment with 12 genera. The gut bacterial community from  PGLE-lO was significantly different, and P ALE-lO and Mixed-lO were marginally  different compared to the control. Since the present study showed the positive effects of   phytobiotics on the resistance of fish against pathogenic A. hydrophila and S. agalactiae,  it reveals their potential to be used efficiently as an alternative prophylactic and  antimicrobial agent in Nile tilapia farming. </subfield>
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    <subfield code="a">Phytochemicals</subfield>
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    <subfield code="a">Fishes</subfield>
    <subfield code="x">Diseases</subfield>
    <subfield code="x">Prevention</subfield>
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    <subfield code="a">Nile Tilapia</subfield>
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    <subfield code="a">Salin, Krishna R.,</subfield>
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    <subfield code="a">Yakupitiyage, Amararatne,</subfield>
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    <subfield code="a">Anal, Anil Kumar,</subfield>
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    <subfield code="a">Loc Thai Nguyen,</subfield>
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    <subfield code="a">Maharashtra State Social Welfare Development India,,</subfield>
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    <subfield code="a">Asian Institute of Technology,</subfield>
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