General Information of Factor (ID: FP104)
  Factor Name Minimal Medium
  Factor Type Environmental Conditions
  Factor Description
Each microbial strain has the potential to produce multiple compounds, but only subsets of these compounds are made under specific growth conditions. Therefore, variations in cultivation parameters can elicit the production and discovery of new secondary metabolites by changing cultivation parameters such as media composition, various nutrients, trace elements, physical parameters (i.e., pH, temperature), and chemical elicitors (i.e., sub-lethal concentrations of antibiotics, communication molecules). Moreover, the co-cultivation of microbes and the addition of factors affecting epigenetic control can also be framed within the OSMAC principle.
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 The Content Variation of Natural Product Induced by This Factor
      Species Name: Nocardiopsis lucentensis strain mhce0814
          Species Info Click to show the detail information of this Factor
          Experiment Detail
Rhizospheric soil samples and roots from 3-month-old Triticum aestivum (wheat var. Lokwan) plants (five plants each from ten fields) grown in the Mehsana region of Gujarat, India (latitude 23° 42′ N and longitude 72° 33′ E), were collected in sterile polyvinyl bags separately by following the composite sampling method and transported under ice-cold conditions. The cultures that inhibited fungal growth were quantified for chitinase production on minimal medium containing (20 g/L) colloidal chitin (Hsu & Lockwood, 1975). The organic acid responsible for the phosphate solubilization of the two most effective solubilizers was determined as follows. The cultures were grown on minimal medium [0.2 g (NH4)2SO4 /L, 0.06 g MgSO4.7H2O /L, 50 g PEG 6000 /L] supplemented with glucose (20 g/L), 1 ml trace salts solution (1.0 g ZnSO4.7H20 /L, 1.0 g MnCl2.4H2O /L, 1.0 g CaCl2 /L) for 7 days.
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          Mechanism
The gene expression of IDH, ICL and MS was monitored using specifically designed primers during the exponential phase (third day) and the malate-producing stationary phase (seventh day). The qRT-PCR analysis showed no significant change in IDH expression during the malate-producing stationary phase (seventh day) in either mhcr0816 or mhce0811, as compared to the growth phase (third day). A several fold increase in expression of ICL and MS in the stationary phase of mhcr0816 correlated with high malate production (50-55 mM, pH 2.9) and phosphate solubilization (1916 mg/L). Expression of ICL and MS in mhce0811 did not alter drastically during the acid-production phase; The enzymes assays correlated with the gene expression studies of IDH, ICL and MS in both the test (mhcr0816) and control (mhce0811) isolates. The IDH activity lacked significant alteration in both the cultures before (third day) and during acid production (seventh day). However, significantly elevated level of ICL (fourfold) and MS (tenfold) explained the malic acid overproduction and high phosphate solubilization in mhcr0816 as compared to mhce0811.
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            Chitinase [1]
               Factor Link Part Location NP Content
 
Minimal medium containing (20 g/l) colloidal chitin
   NP Info    Rhizospheric soil samples and roots Mehsana region of Gujarat, India
NP Content: 4.32±0.03 U/ml
      Species Name: Rhodococcus rhodochrous strain mhcr0825
          Species Info Click to show the detail information of this Factor
          Experiment Detail
Rhizospheric soil samples and roots from 3-month-old Triticum aestivum (wheat var. Lokwan) plants (five plants each from ten fields) grown in the Mehsana region of Gujarat, India (latitude 23° 42′ N and longitude 72° 33′ E), were collected in sterile polyvinyl bags separately by following the composite sampling method and transported under ice-cold conditions. The cultures that inhibited fungal growth were quantified for chitinase production on minimal medium containing (20 g/L) colloidal chitin (Hsu & Lockwood, 1975). The organic acid responsible for the phosphate solubilization of the two most effective solubilizers was determined as follows. The cultures were grown on minimal medium [0.2 g (NH4)2SO4 /L, 0.06 g MgSO4.7H2O /L, 50 g PEG 6000 /L] supplemented with glucose (20 g/L), 1 ml trace salts solution (1.0 g ZnSO4.7H20 /L, 1.0 g MnCl2.4H2O /L, 1.0 g CaCl2 /L) for 7 days.
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          Mechanism
The gene expression of IDH, ICL and MS was monitored using specifically designed primers during the exponential phase (third day) and the malate-producing stationary phase (seventh day). The qRT-PCR analysis showed no significant change in IDH expression during the malate-producing stationary phase (seventh day) in either mhcr0816 or mhce0811, as compared to the growth phase (third day). A several fold increase in expression of ICL and MS in the stationary phase of mhcr0816 correlated with high malate production (50-55 mM, pH 2.9) and phosphate solubilization (1916 mg/L). Expression of ICL and MS in mhce0811 did not alter drastically during the acid-production phase; The enzymes assays correlated with the gene expression studies of IDH, ICL and MS in both the test (mhcr0816) and control (mhce0811) isolates. The IDH activity lacked significant alteration in both the cultures before (third day) and during acid production (seventh day). However, significantly elevated level of ICL (fourfold) and MS (tenfold) explained the malic acid overproduction and high phosphate solubilization in mhcr0816 as compared to mhce0811.
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            Chitinase [1]
               Factor Link Part Location NP Content
 
Minimal medium containing (20 g/l) colloidal chitin
   NP Info    Rhizospheric soil samples and roots Mehsana region of Gujarat, India
NP Content: 0.91±0.01 U/ml
      Species Name: Streptomyces cellulosae strain mhcr0816
          Species Info Click to show the detail information of this Factor
          Experiment Detail
Rhizospheric soil samples and roots from 3-month-old Triticum aestivum (wheat var. Lokwan) plants (five plants each from ten fields) grown in the Mehsana region of Gujarat, India (latitude 23° 42′ N and longitude 72° 33′ E), were collected in sterile polyvinyl bags separately by following the composite sampling method and transported under ice-cold conditions. The cultures that inhibited fungal growth were quantified for chitinase production on minimal medium containing (20 g/L) colloidal chitin (Hsu & Lockwood, 1975). The organic acid responsible for the phosphate solubilization of the two most effective solubilizers was determined as follows. The cultures were grown on minimal medium [0.2 g (NH4)2SO4 /L, 0.06 g MgSO4.7H2O /L, 50 g PEG 6000 /L] supplemented with glucose (20 g/L), 1 ml trace salts solution (1.0 g ZnSO4.7H20 /L, 1.0 g MnCl2.4H2O /L, 1.0 g CaCl2 /L) for 7 days.
Click to Show/Hide
          Mechanism
The gene expression of IDH, ICL and MS was monitored using specifically designed primers during the exponential phase (third day) and the malate-producing stationary phase (seventh day). The qRT-PCR analysis showed no significant change in IDH expression during the malate-producing stationary phase (seventh day) in either mhcr0816 or mhce0811, as compared to the growth phase (third day). A several fold increase in expression of ICL and MS in the stationary phase of mhcr0816 correlated with high malate production (50-55 mM, pH 2.9) and phosphate solubilization (1916 mg/L). Expression of ICL and MS in mhce0811 did not alter drastically during the acid-production phase; The enzymes assays correlated with the gene expression studies of IDH, ICL and MS in both the test (mhcr0816) and control (mhce0811) isolates. The IDH activity lacked significant alteration in both the cultures before (third day) and during acid production (seventh day). However, significantly elevated level of ICL (fourfold) and MS (tenfold) explained the malic acid overproduction and high phosphate solubilization in mhcr0816 as compared to mhce0811.
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            Chitinase [1]
               Factor Link Part Location NP Content
 
Minimal medium containing (20 g/l) colloidal chitin
   NP Info    Rhizospheric soil samples and roots Mehsana region of Gujarat, India
NP Content: 4.60±0.01 U/ml
      Species Name: Streptomyces cheonanensis strain mhcr0824
          Species Info Click to show the detail information of this Factor
          Experiment Detail
Rhizospheric soil samples and roots from 3-month-old Triticum aestivum (wheat var. Lokwan) plants (five plants each from ten fields) grown in the Mehsana region of Gujarat, India (latitude 23° 42′ N and longitude 72° 33′ E), were collected in sterile polyvinyl bags separately by following the composite sampling method and transported under ice-cold conditions. The cultures that inhibited fungal growth were quantified for chitinase production on minimal medium containing (20 g/L) colloidal chitin (Hsu & Lockwood, 1975). The organic acid responsible for the phosphate solubilization of the two most effective solubilizers was determined as follows. The cultures were grown on minimal medium [0.2 g (NH4)2SO4 /L, 0.06 g MgSO4.7H2O /L, 50 g PEG 6000 /L] supplemented with glucose (20 g/L), 1 ml trace salts solution (1.0 g ZnSO4.7H20 /L, 1.0 g MnCl2.4H2O /L, 1.0 g CaCl2 /L) for 7 days.
Click to Show/Hide
          Mechanism
The gene expression of IDH, ICL and MS was monitored using specifically designed primers during the exponential phase (third day) and the malate-producing stationary phase (seventh day). The qRT-PCR analysis showed no significant change in IDH expression during the malate-producing stationary phase (seventh day) in either mhcr0816 or mhce0811, as compared to the growth phase (third day). A several fold increase in expression of ICL and MS in the stationary phase of mhcr0816 correlated with high malate production (50-55 mM, pH 2.9) and phosphate solubilization (1916 mg/L). Expression of ICL and MS in mhce0811 did not alter drastically during the acid-production phase; The enzymes assays correlated with the gene expression studies of IDH, ICL and MS in both the test (mhcr0816) and control (mhce0811) isolates. The IDH activity lacked significant alteration in both the cultures before (third day) and during acid production (seventh day). However, significantly elevated level of ICL (fourfold) and MS (tenfold) explained the malic acid overproduction and high phosphate solubilization in mhcr0816 as compared to mhce0811.
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            Chitinase [1]
               Factor Link Part Location NP Content
 
Minimal medium containing (20 g/l) colloidal chitin
   NP Info    Rhizospheric soil samples and roots Mehsana region of Gujarat, India
NP Content: 4.53±0.03 U/ml
      Species Name: Streptomyces lomondensis strain mhcr0810
          Species Info Click to show the detail information of this Factor
          Experiment Detail
Rhizospheric soil samples and roots from 3-month-old Triticum aestivum (wheat var. Lokwan) plants (five plants each from ten fields) grown in the Mehsana region of Gujarat, India (latitude 23° 42′ N and longitude 72° 33′ E), were collected in sterile polyvinyl bags separately by following the composite sampling method and transported under ice-cold conditions. The cultures that inhibited fungal growth were quantified for chitinase production on minimal medium containing (20 g/L) colloidal chitin (Hsu & Lockwood, 1975). The organic acid responsible for the phosphate solubilization of the two most effective solubilizers was determined as follows. The cultures were grown on minimal medium [0.2 g (NH4)2SO4 /L, 0.06 g MgSO4.7H2O /L, 50 g PEG 6000 /L] supplemented with glucose (20 g/L), 1 ml trace salts solution (1.0 g ZnSO4.7H20 /L, 1.0 g MnCl2.4H2O /L, 1.0 g CaCl2 /L) for 7 days.
Click to Show/Hide
          Mechanism
The gene expression of IDH, ICL and MS was monitored using specifically designed primers during the exponential phase (third day) and the malate-producing stationary phase (seventh day). The qRT-PCR analysis showed no significant change in IDH expression during the malate-producing stationary phase (seventh day) in either mhcr0816 or mhce0811, as compared to the growth phase (third day). A several fold increase in expression of ICL and MS in the stationary phase of mhcr0816 correlated with high malate production (50-55 mM, pH 2.9) and phosphate solubilization (1916 mg/L). Expression of ICL and MS in mhce0811 did not alter drastically during the acid-production phase; The enzymes assays correlated with the gene expression studies of IDH, ICL and MS in both the test (mhcr0816) and control (mhce0811) isolates. The IDH activity lacked significant alteration in both the cultures before (third day) and during acid production (seventh day). However, significantly elevated level of ICL (fourfold) and MS (tenfold) explained the malic acid overproduction and high phosphate solubilization in mhcr0816 as compared to mhce0811.
Click to Show/Hide
            Chitinase [1]
               Factor Link Part Location NP Content
 
Minimal medium containing (20 g/l) colloidal chitin
   NP Info    Rhizospheric soil samples and roots Mehsana region of Gujarat, India
NP Content: 3.20±0.02 U/ml
      Species Name: Streptomyces tricolor strain mhce0811
          Species Info Click to show the detail information of this Factor
          Experiment Detail
Rhizospheric soil samples and roots from 3-month-old Triticum aestivum (wheat var. Lokwan) plants (five plants each from ten fields) grown in the Mehsana region of Gujarat, India (latitude 23° 42′ N and longitude 72° 33′ E), were collected in sterile polyvinyl bags separately by following the composite sampling method and transported under ice-cold conditions. The cultures that inhibited fungal growth were quantified for chitinase production on minimal medium containing (20 g/L) colloidal chitin (Hsu & Lockwood, 1975). The organic acid responsible for the phosphate solubilization of the two most effective solubilizers was determined as follows. The cultures were grown on minimal medium [0.2 g (NH4)2SO4 /L, 0.06 g MgSO4.7H2O /L, 50 g PEG 6000 /L] supplemented with glucose (20 g/L), 1 ml trace salts solution (1.0 g ZnSO4.7H20 /L, 1.0 g MnCl2.4H2O /L, 1.0 g CaCl2 /L) for 7 days.
Click to Show/Hide
          Mechanism
The gene expression of IDH, ICL and MS was monitored using specifically designed primers during the exponential phase (third day) and the malate-producing stationary phase (seventh day). The qRT-PCR analysis showed no significant change in IDH expression during the malate-producing stationary phase (seventh day) in either mhcr0816 or mhce0811, as compared to the growth phase (third day). A several fold increase in expression of ICL and MS in the stationary phase of mhcr0816 correlated with high malate production (50-55 mM, pH 2.9) and phosphate solubilization (1916 mg/L). Expression of ICL and MS in mhce0811 did not alter drastically during the acid-production phase; The enzymes assays correlated with the gene expression studies of IDH, ICL and MS in both the test (mhcr0816) and control (mhce0811) isolates. The IDH activity lacked significant alteration in both the cultures before (third day) and during acid production (seventh day). However, significantly elevated level of ICL (fourfold) and MS (tenfold) explained the malic acid overproduction and high phosphate solubilization in mhcr0816 as compared to mhce0811.
Click to Show/Hide
            Chitinase [1]
               Factor Link Part Location NP Content
 
Minimal medium containing (20 g/l) colloidal chitin
   NP Info    Rhizospheric soil samples and roots Mehsana region of Gujarat, India
NP Content: 6.23±0.02 U/ml
      Species Name: Streptomyces werraensis strain mhcr0817
          Species Info Click to show the detail information of this Factor
          Experiment Detail
Rhizospheric soil samples and roots from 3-month-old Triticum aestivum (wheat var. Lokwan) plants (five plants each from ten fields) grown in the Mehsana region of Gujarat, India (latitude 23° 42′ N and longitude 72° 33′ E), were collected in sterile polyvinyl bags separately by following the composite sampling method and transported under ice-cold conditions. The cultures that inhibited fungal growth were quantified for chitinase production on minimal medium containing (20 g/L) colloidal chitin (Hsu & Lockwood, 1975). The organic acid responsible for the phosphate solubilization of the two most effective solubilizers was determined as follows. The cultures were grown on minimal medium [0.2 g (NH4)2SO4 /L, 0.06 g MgSO4.7H2O /L, 50 g PEG 6000 /L] supplemented with glucose (20 g/L), 1 ml trace salts solution (1.0 g ZnSO4.7H20 /L, 1.0 g MnCl2.4H2O /L, 1.0 g CaCl2 /L) for 7 days.
Click to Show/Hide
          Mechanism
The gene expression of IDH, ICL and MS was monitored using specifically designed primers during the exponential phase (third day) and the malate-producing stationary phase (seventh day). The qRT-PCR analysis showed no significant change in IDH expression during the malate-producing stationary phase (seventh day) in either mhcr0816 or mhce0811, as compared to the growth phase (third day). A several fold increase in expression of ICL and MS in the stationary phase of mhcr0816 correlated with high malate production (50-55 mM, pH 2.9) and phosphate solubilization (1916 mg/L). Expression of ICL and MS in mhce0811 did not alter drastically during the acid-production phase; The enzymes assays correlated with the gene expression studies of IDH, ICL and MS in both the test (mhcr0816) and control (mhce0811) isolates. The IDH activity lacked significant alteration in both the cultures before (third day) and during acid production (seventh day). However, significantly elevated level of ICL (fourfold) and MS (tenfold) explained the malic acid overproduction and high phosphate solubilization in mhcr0816 as compared to mhce0811.
Click to Show/Hide
            Chitinase [1]
               Factor Link Part Location NP Content
 
Minimal medium containing (20 g/l) colloidal chitin
   NP Info    Rhizospheric soil samples and roots Mehsana region of Gujarat, India
NP Content: 0.62±0.04 U/ml

References
1 Mechanism of phosphate solubilization and antifungal activity of Streptomyces spp. isolated from wheat roots and rhizosphere and their application in improving plant growth