| Literature DB >> 25741357 |
Daisuke Todaka1, Kazuo Shinozaki2, Kazuko Yamaguchi-Shinozaki1.
Abstract
Advances have been made in the development of drought-tolerant transgenic plants, including cereals. Rice, one of the most important cereals, is considered to be a critical target for improving drought tolerance, as present-day rice cultivation requires large quantities of water and as drought-tolerant rice plants should be able to grow in small amounts of water. Numerous transgenic rice plants showing enhanced drought tolerance have been developed to date. Such genetically engineered plants have generally been developed using genes encoding proteins that control drought regulatory networks. These proteins include transcription factors, protein kinases, receptor-like kinases, enzymes related to osmoprotectant or plant hormone synthesis, and other regulatory or functional proteins. Of the drought-tolerant transgenic rice plants described in this review, approximately one-third show decreased plant height under non-stressed conditions or in response to abscisic acid treatment. In cereal crops, plant height is a very important agronomic trait directly affecting yield, although the improvement of lodging resistance should also be taken into consideration. Understanding the regulatory mechanisms of plant growth reduction under drought stress conditions holds promise for developing transgenic plants that produce high yields under drought stress conditions. Plant growth rates are reduced more rapidly than photosynthetic activity under drought conditions, implying that plants actively reduce growth in response to drought stress. In this review, we summarize studies on molecular regulatory networks involved in response to drought stress. In a separate section, we highlight progress in the development of transgenic drought-tolerant rice plants, with special attention paid to field trial investigations.Entities:
Keywords: drought; rice; stress signaling; stress tolerance; transgenic engineering
Year: 2015 PMID: 25741357 PMCID: PMC4332304 DOI: 10.3389/fpls.2015.00084
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Selective transgenic rice plants with improved drought stress tolerance.
| Construct used for transformation | Type of transgenic engineering | Performance | ||||||
|---|---|---|---|---|---|---|---|---|
| Gene function | Gene name | Gene source | Promoter | Stress tolerance | Field trial | Growth trait | Reference | |
| bHLH | Rice | Cytochrome | COE*1 | D↑*5 | – | Not mentioned | ||
| bZIP | Rice | Ubiquitin | COE | D↑, S↑*6 | – | Hypersensitive to shoot growth inhibition by exogenous ABA | ||
| bZIP | Rice | Ubiquitin | COE | D↑, O↑*7 | – | Hypersensitive to shoot growth inhibition by exogenous ABA | ||
| bZIP | Rice | 35S | COE | D↑, S↑,O↑ | – | Not mentioned | ||
| bZIP | Rice | RD29A | SIE*2 | O↑ | – | Not mentioned | ||
| bZIP | Rice | Actin | COE | D↑ | – | Hypersensitive to shoot growth inhibition by exogenous ABA | ||
| bZIP | Ubiquitin | COE | D↑ | – | Normal shoot growth and seed production under control conditions | |||
| AP2/ERF | Rice | Actin | CRNAi*3 | D↑ | – | Not mentioned | ||
| AP2/ERF | Rice | Cytochrome | COE | D↑ | – | Increase in shoot growth under control conditions | ||
| AP2/ERF | Rice | Ai | AIE*4 | D↑ | – | Increase in shoot growth under control conditions | ||
| AP2/ERF | Rice | Cytochrome | COE | D↑ | – | Not mentioned | ||
| AP2/ERF | Tomato | 35S | COE | D↑, O↑ | – | Increases in seedling weight and root length under drought conditions | ||
| AP2/ERF | Tomato | 35S | COE | D↑, O↑ | – | Normal shoot growth under control conditions | ||
| AP2/ERF | Rice | 4ABRC | SIE | D↑, S↑ | – | Increases in plant height and effective tillers under drought conditions | ||
| AP2/ERF | Rice | 4ABRC | SIE | D↑, S↑ | – | Increases in plant height and effective tillers | ||
| AP2/ERF | 35S | COE | D↑ | – | Increases in shoot growth under control conditions and in root growth under drought conditions | |||
| AP2/ERF | Maize | Ubiquitin | COE | D↑, S↑, C↑*8 | – | Normal yield under control conditions, hypersensitive to root growth inhibition by exogenous ABA | ||
| AP2/ERF | Ubiquitin | COE | D↑, S↑ | – | Normal shoot growth and seed production under non-stressed conditions | |||
| AP2/ERF | RD29A | SIE | D↑ | – | Increase in yield under drought conditions | |||
| AP2/ERF | HVA22 | SIE | D↑ | Done | Increase in yield under drought conditions | |||
| AP2/ERF | Rice | Ubiquitin | COE | D↑, S↑, C↑ | – | Shoot growth retardation under control conditions | ||
| AP2/ERF | Rice | Ubiquitin | COE | D↑, S↑, C↑ | – | Shoot growth retardation under control conditions | ||
| AP2/ERF | Ubiquitin | COE | D↑, S↑, C↑ | – | Shoot growth retardation under control conditions | |||
| AP2/ERF | Ubiquitin | COE | D↑, S↑, C↑ | – | Shoot growth retardation under control conditions | |||
| AP2/ERF | Ubiquitin | COE | D↑, S↑, C↑ | – | Shoot growth retardation under control conditions | |||
| AP2/ERF | Barley | Ubiquitin | COE | D↑, S↑, C↑ | – | Normal shoot growth under control conditions | ||
| AP2/ERF | Lip9 | SIE | D↑ | – | Increase in dry weight under drought conditions | |||
| AP2/ERF | Rice | OsCcI | COE | D↑, S↑, C↑ | Done | Normal shoot growth under control conditions | ||
| Homeodomain | Actin | COE | D↑ | Done | Increases in shoot, root, and seed production under drought conditions | |||
| Homeodomain | Maize | Ubiquitin | COE | D↑, S↑ | – | Hypersensitive to shoot growth inhibition by exogenous ABA | ||
| MYB | Rice | Ubiquitin | COE | D↑, S↑, C↑ | – | Hypersensitive to shoot growth inhibition by exogenous ABA | ||
| NAC | Rice | RCc3 | RSE*10 | D↑ | Done | Increases in yield and root diameter under drought conditions | ||
| NAC | Rice | RCc3 | RSE | D↑ | Done | Increases in yield and root diameter under drought conditions | ||
| NAC | Rice | RCc3 | RSE | D↑ | Done | Increases in yield and root diameter under drought conditions | ||
| NAC | Rice | Ubiquitin | COE | D↑ | – | Shoot growth retardation under control conditions | ||
| NAC | Rice | 35S | COE | D↑, S↑ | Done | Hypersensitive to shoot growth inhibition by exogenous ABA, increase in yield under drought conditions, normal shoot growth under control conditions | ||
| WRKY | Rice | 35S | COE | D↑ | – | Not mentioned | ||
| Zinc finger | Rice | 35S | COE | D↑, S↑, C↑ | – | Similar morphological traits under control conditions | ||
| Zinc finger | Rice | 35S | COE | D↑, C↑ | – | Hypersensitive to shoot growth inhibition by exogenous ABA, normal shoot growth under control conditions | ||
| Zinc finger | Rice | 35S | COE | D↑, S↑ | – | Not mentioned | ||
| Zinc finger | Actin | COE | D↑ | Done | Increases in yield under drought conditions | |||
| Zinc finger | HVA22 | SIE | D↑ | Done | Increases in yield under drought conditions | |||
| Calcium-dependent protein kinase | Rice | Ubiquitin | COE | D↑, S↑ | – | Not mentioned | ||
| Calcium-dependent protein kinase | Rice | Ubiquitin | COE | D↑ | – | Decreases in plant height and grain size under control conditions | ||
| Calcium-dependent protein kinase | Rice | 35S | COE | D↑, S↑, C↑ | – | Normal growth under control conditions | ||
| Calcineurin B-like protein interacting protein kinase | Rice | Ubiquitin | COE | D↑ | – | Normal growth under control conditions | ||
| Recetor-like kinase | Rice | 35S | COE | D↑, S↑ | – | Normal growth under control conditions | ||
| Recetor-like kinase | Rice | 35S | COE | D↑, S↑ | – | Decrease in shoot growth under control conditions | ||
| MAP kinase kinase kinase | Actin | COE | D↑ | Done | Increases in yield under drought conditions | |||
| MAP kinase kinase kinase | HVA22 | SIE | D↑ | Done | Increases in yield under drought conditions | |||
| ABA receptor | Rice | Ubiquitin | COE | D↑, S↑ | – | Hypersensitive to shoot growth inhibition by exogenous ABA, decrease in yield under control conditions | ||
| Molybdenum cofactor sulfurase | Actin | COE | D↑ | Done | Increases in yield under drought conditions | |||
| Molybdenum cofactor sulfurase | HVA22 | SIE | D↑ | Done | Increases in yield under drought conditions | |||
| Auxin efflux carrier | Rice | 35S | COE | O↑ | – | Increase in root growth under control conditions | ||
| Isopentenyl-transferase | SAPK | SMIE*11 | D↑ | – | Normal growth under control conditions | |||
| β-catotene Hydroxylase | Rice | 35S | COE | D↑ | – | Increases in spikelet fertility under drought conditions | ||
| Group 3 LEA protein | Barley | Actin | COE | D↑, S↑ | – | Normal growth under control conditions | ||
| Group 3 LEA protein | Rice | 2X35S | COE | D↑, S↑ | – | Normal growth under control conditions | ||
| Group 3 LEA protein | Rice | 35S | COE | D↑ | Done | Normal grain yield under control conditions | ||
| Group 3 LEA protein | Rice | HVA1-like | SIE | D↑ | Done | Normal grain yield under control conditions | ||
| Lipid transfer protein | Rice | Ubiquitin | COE | D↑ | – | Increases in shoot growth under osmotic stress | ||
| Heat shock protein | Rice | 35S | COE | D↑, S↑ | – | Increases in shoot and root growth under osmotic stress | ||
| Heat shock protein | Rice | 35S | COE | D↑, S↑ | – | Increases in shoot and root growth under osmotic stress | ||
| Rice | 35S | COE | O↑ | – | Increases in shoot growth under osmotic stress | |||
| Ornithine δ-amino-transferase | Rice | Ubiquitin | COE | D↑, O↑ | Done | Increases in shoot growth under osmotic stress | ||
| His phosphotransfer protein | Rice | Ubiquitin | CRNAi | O↑ | – | Decrease in internode length and increase in root growth under control conditions | ||
| RING domain-containing protein | Rice | 35S | COE | D↑ | – | Not mentioned | ||
| Ribosome-inactivating protein | Rice | 35S | COE | D↑, S↑ | – | Not mentioned | ||
| RING-finger containing E3 ligase | Rice | Ubiquitin | COE | D↑ | – | Normal growth at an adult stage under control conditions | ||
| DNA and RNA helicase and ATPase | Rice | 35S | COE | O↑, S↑ | – | Increases in shoot and root growth under high salinity | ||
| Trehalose-6-phosphate synthase | Rice | Actin | COE | D↑,S↑,C↑ | – | Not mentioned | ||
| RNA binding protein | Ubiquitin | COE | D↑ | – | Normal shoot growth under control conditions | |||
| RNA binding protein | Ubiquitin | COE | D↑ | – | Normal shoot growth under control conditions | |||
| Harpin | 35S | COE | D↑ | – | Not mentioned | |||
| Farnesyltransferase/squalene synthase | Maize | Ubiquitin | CRNAi | D↑ | – | Normal growth under control conditions and no inhibition of seedling growth by ABA treatment | ||
| 14-3-3 protein | Maize | Ubiquitin | COE | D↑ | – | Decreases in shoot growth and seed production under control conditions | ||
| 14-3-3 protein | Rice | Ubiquitin | COE | D↑ | – | Not mentioned | ||
| Arginine decarboxylase | Ubiquitin | COE | D↑ | – | Normal growth under control conditions | |||
| Manganese superoxide dimutase | Pea | SWPA2 | SIE | O↑ | – | Not mentioned | ||
| Ski-interacting protein | Rice | Actin | COE | O↑ | – | Normal growth under control conditions, less growth inhibition under ABA, salinity and osmotic stress condition; | ||