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Ectopic expression of specific GA2 oxidase mutants promotes yield and stress tolerance in rice
by
Lee, Miin-Huey
, Ho, Tuan-Hua David
, Hsieh, Kun-Ting
, Chen, Chi-Yu
, Jiang, Mirng-Jier
, Chen, Ku-Ting
, Huang, Tzu-Pi
, Sakakibara, Hitoshi
, Liu, Yi-Lun
, Yu, Su-May
, Kojima, Mikiko
, Yu, Lin-Chih
, Lo, Shuen-Fang
, Chen, Liang-Jwu
in
Biotechnology
/ Crop yields
/ Food
/ Genetic engineering
/ Genetically engineered foods
/ Rice
2017
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Ectopic expression of specific GA2 oxidase mutants promotes yield and stress tolerance in rice
by
Lee, Miin-Huey
, Ho, Tuan-Hua David
, Hsieh, Kun-Ting
, Chen, Chi-Yu
, Jiang, Mirng-Jier
, Chen, Ku-Ting
, Huang, Tzu-Pi
, Sakakibara, Hitoshi
, Liu, Yi-Lun
, Yu, Su-May
, Kojima, Mikiko
, Yu, Lin-Chih
, Lo, Shuen-Fang
, Chen, Liang-Jwu
in
Biotechnology
/ Crop yields
/ Food
/ Genetic engineering
/ Genetically engineered foods
/ Rice
2017
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Do you wish to request the book?
Ectopic expression of specific GA2 oxidase mutants promotes yield and stress tolerance in rice
by
Lee, Miin-Huey
, Ho, Tuan-Hua David
, Hsieh, Kun-Ting
, Chen, Chi-Yu
, Jiang, Mirng-Jier
, Chen, Ku-Ting
, Huang, Tzu-Pi
, Sakakibara, Hitoshi
, Liu, Yi-Lun
, Yu, Su-May
, Kojima, Mikiko
, Yu, Lin-Chih
, Lo, Shuen-Fang
, Chen, Liang-Jwu
in
Biotechnology
/ Crop yields
/ Food
/ Genetic engineering
/ Genetically engineered foods
/ Rice
2017
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Ectopic expression of specific GA2 oxidase mutants promotes yield and stress tolerance in rice
Journal Article
Ectopic expression of specific GA2 oxidase mutants promotes yield and stress tolerance in rice
2017
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Overview
A major challenge of modern agricultural biotechnology is the optimization of plant architecture for enhanced productivity, stress tolerance and water use efficiency (WUE). To optimize plant height and tillering that directly link to grain yield in cereals and are known to be tightly regulated by gibberellins (GAs), we attenuated the endogenous levels of GAs in rice via its degradation. GA 2-oxidase (GA2ox) is a key enzyme that inactivates endogenous GAs and their precursors. We identified three conserved domains in a unique class of C[sub.20] GA2ox, GA2ox6, which is known to regulate the architecture and function of rice plants. We mutated nine specific amino acids in these conserved domains and observed a gradient of effects on plant height. Ectopic expression of some of these GA2ox6 mutants moderately lowered GA levels and reprogrammed transcriptional networks, leading to reduced plant height, more productive tillers, expanded root system, higher WUE and photosynthesis rate, and elevated abiotic and biotic stress tolerance in transgenic rice. Combinations of these beneficial traits conferred not only drought and disease tolerance but also increased grain yield by 10-30% in field trials. Our studies hold the promise of manipulating GA levels to substantially improve plant architecture, stress tolerance and grain yield in rice and possibly in other major crops.
Publisher
John Wiley & Sons, Inc
Subject
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