RL3(t), Responsible for Leaf Shape Formation, Delimited to a 46-kb DNA Fragment in Rice
Two mutants with rolled leaves, temporally designated as rl3(t)-1 and rl3(t)-2, were served for exploring the mechanism underlying the rolled leaf characteristic. Except for having typical rolled leaves, the plant heights and panicle lengths of rl3(t)-1 and rl3(t)-2 significantly decreased, and the...
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Format: | Article |
Language: | English |
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Elsevier
2015-01-01
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Series: | Rice Science |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S1672630815000104 |
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author | GUO Min Li RONG-de YAO Jian ZHU Juan FAN Xiang-yun WANG Wei TANG Shu-zhu GU Ming-hong YAN Chang-jie |
author_facet | GUO Min Li RONG-de YAO Jian ZHU Juan FAN Xiang-yun WANG Wei TANG Shu-zhu GU Ming-hong YAN Chang-jie |
author_sort | GUO Min |
collection | DOAJ |
description | Two mutants with rolled leaves, temporally designated as rl3(t)-1 and rl3(t)-2, were served for exploring the mechanism underlying the rolled leaf characteristic. Except for having typical rolled leaves, the plant heights and panicle lengths of rl3(t)-1 and rl3(t)-2 significantly decreased, and the seed-setting rate also decreased when compared with wild type 93-11. Cytological analysis suggested that the rolled leaf phenotype might be caused by the changes of number and size of bulliform cells. Genetic analysis indicated rl3(t)-1 is allelic to rl3(t)-2, and controlled by a recessive gene. Gene mapping result indicated that RL3(t) gene resided in a 46-kb long region governed by the sequence tag site markers S3-39 and S3-36 on rice chromosome 3. The result provides an important clue for further cloning the RL3(t) and understanding the mechanism of rice leaf development. |
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id | doaj.art-9e39c1172a7d4fc0839a93fe967da262 |
institution | Directory Open Access Journal |
issn | 1672-6308 |
language | English |
last_indexed | 2024-12-21T12:50:33Z |
publishDate | 2015-01-01 |
publisher | Elsevier |
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series | Rice Science |
spelling | doaj.art-9e39c1172a7d4fc0839a93fe967da2622022-12-21T19:03:30ZengElsevierRice Science1672-63082015-01-01221444810.1016/j.rsci.2015.05.009RL3(t), Responsible for Leaf Shape Formation, Delimited to a 46-kb DNA Fragment in RiceGUO MinLi RONG-deYAO JianZHU JuanFAN Xiang-yunWANG WeiTANG Shu-zhuGU Ming-hongYAN Chang-jieTwo mutants with rolled leaves, temporally designated as rl3(t)-1 and rl3(t)-2, were served for exploring the mechanism underlying the rolled leaf characteristic. Except for having typical rolled leaves, the plant heights and panicle lengths of rl3(t)-1 and rl3(t)-2 significantly decreased, and the seed-setting rate also decreased when compared with wild type 93-11. Cytological analysis suggested that the rolled leaf phenotype might be caused by the changes of number and size of bulliform cells. Genetic analysis indicated rl3(t)-1 is allelic to rl3(t)-2, and controlled by a recessive gene. Gene mapping result indicated that RL3(t) gene resided in a 46-kb long region governed by the sequence tag site markers S3-39 and S3-36 on rice chromosome 3. The result provides an important clue for further cloning the RL3(t) and understanding the mechanism of rice leaf development.http://www.sciencedirect.com/science/article/pii/S1672630815000104gene mappingleaf shape formationmutantricerolled leaf gene |
spellingShingle | GUO Min Li RONG-de YAO Jian ZHU Juan FAN Xiang-yun WANG Wei TANG Shu-zhu GU Ming-hong YAN Chang-jie RL3(t), Responsible for Leaf Shape Formation, Delimited to a 46-kb DNA Fragment in Rice Rice Science gene mapping leaf shape formation mutant rice rolled leaf gene |
title | RL3(t), Responsible for Leaf Shape Formation, Delimited to a 46-kb DNA Fragment in Rice |
title_full | RL3(t), Responsible for Leaf Shape Formation, Delimited to a 46-kb DNA Fragment in Rice |
title_fullStr | RL3(t), Responsible for Leaf Shape Formation, Delimited to a 46-kb DNA Fragment in Rice |
title_full_unstemmed | RL3(t), Responsible for Leaf Shape Formation, Delimited to a 46-kb DNA Fragment in Rice |
title_short | RL3(t), Responsible for Leaf Shape Formation, Delimited to a 46-kb DNA Fragment in Rice |
title_sort | rl3 t responsible for leaf shape formation delimited to a 46 kb dna fragment in rice |
topic | gene mapping leaf shape formation mutant rice rolled leaf gene |
url | http://www.sciencedirect.com/science/article/pii/S1672630815000104 |
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