The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance
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The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance
Summary
The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance is a doctoral thesis[1].
Key Facts
- The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance authored Daniel Shaw[2].
- The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance's instance of is recorded as doctoral thesis[3].
- The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance was released on January 1, 2016[4].
- The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance's sponsor is recorded as Biotechnology and Biological Sciences Research Council[5].
- The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance's work available at URL is recorded as http://etheses.whiterose.ac.uk/16518/[6].
- The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance's title is recorded as The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance[7].
- The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance's thesis submitted to is recorded as University of Leeds[8].
Body
Designation and Status
The characterisation of Late Embryogenesis Abundant 5 and Ethylene Responsive Factor 109 functions in plants' growth and stress tolerance's instance of is recorded as doctoral thesis[3].