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Reference Detail
| Reference | ||
|---|---|---|
| Author | Wang Y., Zhang T., Wang R., Zhao Y. | |
| Title | Recent advances in auxin research in rice and their implications for crop improvement. | |
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Abstract: Auxin is essential for various aspects of plant development, and modulation of auxin pathways has great potential for crop improvement. Although the current understanding of auxin biology including auxin biosynthesis, transport, and signaling mainly originated from studies in Arabidopsis, several key auxin genes were first discovered in rice, indicating that it is useful to employ several plant systems for auxin research. In this review, we summarize the recent advances in auxin biology in rice, highlight the main contributions of rice research to auxin biology, and discuss the potential for crop improvement through modulating auxin pathways. |
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| Journal | J. Exp. Bot. | |
| Country | China | |
| Volume | 69(2) | |
| Pages | 255-263 | |
| Year | 2018 | |
| PubMed ID | 28992208 | |
| PubMed Central ID | - | |
| DOI | 10.1093/jxb/erx228 | |
| URL | - | |
| Relation | ||
| Gene | LRA1 PIN5B RAU1 YUCCA5 | |
| INSD | - | |
| Strain | Wild Core Collection | - |
| Induced Mutation Lines(NIG Collection) | - | |
| Sterile Seed Strain | - | |
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Lethal Embryo Mutantion Strain |
- | |
|
Stages in Each Organ - Muant Lines (Gene) |
- | |
| Cultivated Varieties(NIG Collection) | - | |
| Stages in Each Organ | - | |
