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Table 1 Microbial production of ectoine and hydroxyectoine

From: Microbial production of ectoine and hydroxyectoine as high-value chemicals

Strain

Salinitya (M)

Titer (g/L)

Productivity (g/L/h)

Yield (g/g)

Carbon source

References

Ectoine

 H. elongata DSM142

2.57

7.4

0.22

0.11

Glucose

[30]

 B. epidermis DSM 20659

1.42

8

0.08

0.05

Monosodium glutamate

[31]

 H. salina DSM5928

1.81

14.86

0.32

0.14

Monosodium glutamate

[33]

 H. salina BCRC17875

2.47

13.96

0.29

NA

Monosodium glutamate

[42]

 H. hydrothermalis Y2

1.14

10.5

0.22

0.21b

Monosodium glutamate and glucose

[46]

 E. coli DH5α (pASK-ectABC)

0.08

6

0.04

NA

Glucose

[32]

 E. coli BW25113

0.4

25.1

1.04

NA

Glycerol and aspartate

[51]

 E. coli ECT05

0.03

25.1

0.84

0.11

Glucose

[34]

 E. coli DH5α (pASK_ectABCDm)

0.22

1.7

NA

0.36

Glycerol

[59]

 C. glutamicum Ect-2

0.03

4.5

0.28

NA

Glucose

[66]

 C. glutamicum Ecto5

0.01

22

0.32

0.16

Glucose

[68]

 C. glutamicum ectABCopt

0.03

65

1.16

0.19c

Glucose and molasses

[35]

Hydroxyectoine

 H. salina BCRC17875

0.56

2.9

NA

NA

Monosodium glutamate

[43]

 H. polymorpha ALU3/EctBACD

0

2.8

0.02

NA

MeOH and sorbitol

[72]

 E. coli FF4169 (pMP41)

0.4

2.13

0.09

NA

Glucose and ectoine

[57]

 E. coli DH5α (pASK_ectABCDask)

0.26

1.6

NA

0.34

Glycerol

[59]

  1. NA not available
  2. aThe salinity is shown as the combined concentration of sodium and potassium salts in the medium
  3. bThe yield here is calculated with monosodium glutamate
  4. cThe yield here is calculated with glucose and molasses