| Literature DB >> 26544181 |
Jilagamazhi Fu1, Parveen Sharma1, Vic Spicer2, Oleg V Krokhin2, Xiangli Zhang3, Brian Fristensky3, Nazim Cicek1, Richard Sparling4, David B Levin1.
Abstract
Transcriptomes and proteomes of Pseudomonas putida LS46 cultured with biodiesel-derived waste glycerol or waste free fatty acids, as sole carbon sources, were compared under conditions that were either permissive or non-permissive for synthesis of medium chain length polyhydroxyalkanoates (mcl-PHA). The objectives of this study were to elucidate mechanisms that influence activation of biopolymer synthesis, intra-cellular accumulation, and monomer composition, and determine if these were physiologically specific to the carbon sources used for growth of P. putida LS46. Active mcl-PHA synthesis by P. putida LS46 was associated with high expression levels of key mcl-PHA biosynthesis genes and/or gene products including monomer-supplying proteins, PHA synthases, and granule-associated proteins. 'Omics data suggested that expression of these genes were regulated by different genetic mechanisms in P. putida LS46 cells in different physiological states, when cultured on the two waste carbon sources. Optimal polymer production by P. putida LS46 was primarily limited by less efficient glycerol metabolism during mcl-PHA synthesis on waste glycerol. Mapping the 'Omics data to the mcl-PHA biosynthetic pathway revealed significant variations in gene expression, primarily involved in: 1) glycerol transportation; 2) enzymatic reactions that recycle reducing equivalents and produce key mcl-PHA biosynthesis pathway intermediates (e.g. NADH/NADPH, acetyl-CoA). Active synthesis of mcl-PHAs was observed during exponential phase in cultures with waste free fatty acids, and was associated with the fatty acid beta-oxidation pathway. A putative Thioesterase in the beta-oxidation pathway that may regulate the level of fatty acid beta-oxidation intermediates, and thus carbon flux to mcl-PHA biosynthesis, was highly up-regulated. Finally, the data suggested that differences in expression of selected fatty acid metabolism and mcl-PHA monomer-supplying enzymes may play a role in determining the monomer composition of mcl-PHA polymers. Understanding the relationships between genome content, gene and gene product expression, and how these factors influence polymer synthesis, will aid in optimization of mcl-PHA production by P. putida LS46 using biodiesel waste streams.Entities:
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Year: 2015 PMID: 26544181 PMCID: PMC4636370 DOI: 10.1371/journal.pone.0142322
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Expression values of key mcl-PHA biosynthesis genes under three experimental conditions .
| WG | WFA vs WG | ||||||
|---|---|---|---|---|---|---|---|
| (Sta vs Exp) | (Exp) | ||||||
| Locus-tag (PPUTLS46_) | Gene symbol | Expression abundance | Differential expression | Differential expression | |||
| RNA | Protein | Rnet | Pnet | Rnet | Pnet | ||
| 005596 |
| 10.1 | - |
| + |
| + |
| 005601 |
| 12.7 | 21.5 |
|
|
|
|
| 005606 |
| 9.7 | - | -0.53 | - | 0.07 | - |
| 005611 |
| 11.3 | 17.0 | -0.17 |
| 0.72 |
|
| 005616 |
| 10.6 | - | 0.1 | - | - | - |
| 005621 |
| 12.1 | 19.0 | 0.83 |
|
|
|
| 013888 |
| 13.1 | - |
| + |
| - |
| 021056 |
| 10.5 | 17.4 | - | - | 0.46 | 0.03 |
| 006576 |
| 11.4 | - | 0.79 | + | 0.94 | + |
a Exponential versus stationary growth phase in waste glycerol versus exponential growth phase in waste free fatty acids
b Log2 expression abundance of gene products (mRNA and Protein) of P. putida LS46 grown under mid-log phase of waste glycerol culture (non-mcl-PHA synthesis condition). Values were averaged from two biological replicates
c Differential expression values (see details in the Materials and Method section) of gene products under the specific comparing conditions: Sta, Stationary phase; Exp, Exponential phase; Significantly up and/or down-regulated proteins are indicated in bold
d a “-” symbol means not detected mRNA and/or protein expression under mid-log phase of WG culture and/or two tested mcl-PHA synthesis condition(s)
e a “+” symbol means protein expression of the gene was detectable under the specific mcl-PHA synthesis conditions: stationary culture of WG and/or exponential culture of WFA, respectively (e.g. protein expression abundance of PhaI: 22.9 and 23.5; PhaG: 17.1 under stationary culture of WG; PhaJ4: 19.1 and 18.9)
* symbol indicates proteins (if detected) with S/N (signal to noise) ratio less than 2.8, and thus having FDR greater than 10%.
Transcription levels of the two P. putida LS46 PHA Synthases under three experimental conditions , as determined by RT-qPCR.
| Locus-tag | Gene symbol | RT-qPCR | ||
|---|---|---|---|---|
| (PPUTLS46_) | (cDNA ng x 10) | |||
| WG (Exp) | WG (Sta) | WFA (Exp) | ||
| 005611 |
| 0.19 ± 0.02 | 0.13 ± 0.06 | 0.20 ± 0.09 |
| 005621 |
| 0.36 ± 0.09 | 0.49 ± 0.18 | 0.89 ± 0.15 |
a Exponential versus stationary growth phase in waste glycerol versus exponential growth phase in waste free fatty acids
b cDNA values of each gene from10 ng total cDNA input for RT-qPCR under three studied experimental conditions
c Analysis of the qPCR data by a Two-tail T-test revealed that abundance of phaC1 transcripts in the WFA culture were significantly different from the abundance of phaC1 transcripts in theWG cultures (P = 0.04, where the threshold was P = 0.05), whereas all the others were not significant from each other.
Expression values of gene clusters putatively involved in trehalose biosynthesis and polyphosphate degradation in P. putida LS46 under mcl-PHA permissive vs non-permissive conditions in WG cultures.
| WG | ||||||
|---|---|---|---|---|---|---|
| (Sta vs Exp) | ||||||
| Locus-tag | Gene symbol | Gene product | Expression abundance | Differential expression | ||
| (PPUTLS46_) | ||||||
| RNA | Protein | Rnet | Pnet | |||
| 012110 |
| glycogen synthase | - | - | - | - |
| 012115 |
| Malto-oligosyltrehalose trehalohydrolase | - | - | - | - |
| 012120 |
| 4-alpha-glucanotransferase | 9.94 | 19.10 | -0.07 |
|
| 012125 |
| maltooligosyl trehalose synthase | - | - | - | - |
| 012130 |
| protein of unknown function | 8.98 | 20.04 | -0.07 | 0.06 |
| 012135 |
| glycogen debranching protein | - | - | - | - |
| 012140 | hypothetical protein | 9.07 | - | -0.44 | - | |
| 012145 | outer membrane autotransporter | 7.34 | - | 0.99 | - | |
| 012150 |
| glycogen branching enzyme | 11.34 | 19.80 | -0.42 | 1.21 |
| 012155 |
| trehalose synthase | 9.95 | 21.02 | -0.59 |
|
| 012160 | alpha amylase family protein | 10.19 | 20.09 | -0.9 | 1.28 | |
| 002907 |
| trehalose synthase ( | 7.66 | - | 0.11 | - |
| 005431 |
| glycogen phosphorylase | 11.14 | 22.36 | -0.47 |
|
a Log2 expression abundance of gene products (mRNA and Protein) of P. putida LS46 grown under mid-log phase of waste glycerol culture (non-mcl-PHA synthesis condition). Values were averaged from two biological replicates
b Differential expression value of gene products under the specific comparing conditions: Sta, Stationary phase; Exp, Exponential phase; Significantly up-regulated proteins are indicated in bold
c a “-” symbol means not detected mRNA and/or protein expression under mid-log phase of WG culture and stationary culture of WG culture
* symbol indicates proteins (if detected) with S/N (signal to noise) ratio less than 2.8, and thus having FDR greater than 10%.