| |
DEP and AFO Regulate Reproductive Habit in Rice
Kejian Wang,Ding Tang1,Lilan Hong,Wenying Xu,Jian Huang,Ming Li,Minghong Gu,Yongbiao Xue,Zhukuan Cheng
PLOS GENETICS
Abstract
Sexual reproduction is essential for the life cycle of most angiosperms. However, pseudovivipary is an important reproductive strategy in some grasses. In this mode of reproduction, asexual propagules are produced in place of sexual reproductive structures. However, the molecular mechanism of pseudovivipary still remains a mystery. In this work, we found three naturally occurring mutants in rice, namely, phoenix (pho), degenerative palea (dep), and abnormal floral organs (afo). Genetic analysis of them indicated that the stable pseudovivipary mutant pho was a double mutant containing both a Mendelian mutation in DEP and a non-Mendelian mutation in AFO. Further map-based cloning and microarray analysis revealed that dep mutant was caused by a genetic alteration in OsMADS15 while afo was caused by an epigenetic mutation in OsMADS1. Thus, OsMADS1 and OsMADS15 are both required to ensure sexual reproduction in rice and mutations of them lead to the switch of reproductive habit from sexual to asexual in rice. For the first time, our results reveal two regulators for sexual and asexual reproduction modes in flowering plants. In addition, our findings also make it possible to manipulate the reproductive strategy of plants, at least in rice.
|
| 论文编号: |
DOI:10.1371/journal.pgen.1000818 |
| 论文题目: |
DEP and AFO Regulate Reproductive Habit in Rice |
| 英文论文题目: |
DEP and AFO Regulate Reproductive Habit in Rice |
| 第一作者: |
Kejian Wang,Ding Tang1,Lilan Hong,Wenying Xu,Jian Huang,Ming Li,Minghong Gu,Yongbiao Xue,Zhukuan Cheng |
| 英文第一作者: |
Kejian Wang,Ding Tang1,Lilan Hong,Wenying Xu,Jian Huang,Ming Li,Minghong Gu,Yongbiao Xue,Zhukuan Cheng |
| 联系作者: |
|
| 英文联系作者: |
|
| 外单位作者单位: |
|
| 英文外单位作者单位: |
|
| 发表年度: |
2010-01-22 |
| 卷: |
|
| 期: |
|
| 页码: |
|
| 摘要: |
Sexual reproduction is essential for the life cycle of most angiosperms. However, pseudovivipary is an important reproductive strategy in some grasses. In this mode of reproduction, asexual propagules are produced in place of sexual reproductive structures. However, the molecular mechanism of pseudovivipary still remains a mystery. In this work, we found three naturally occurring mutants in rice, namely, phoenix (pho), degenerative palea (dep), and abnormal floral organs (afo). Genetic analysis of them indicated that the stable pseudovivipary mutant pho was a double mutant containing both a Mendelian mutation in DEP and a non-Mendelian mutation in AFO. Further map-based cloning and microarray analysis revealed that dep mutant was caused by a genetic alteration in OsMADS15 while afo was caused by an epigenetic mutation in OsMADS1. Thus, OsMADS1 and OsMADS15 are both required to ensure sexual reproduction in rice and mutations of them lead to the switch of reproductive habit from sexual to asexual in rice. For the first time, our results reveal two regulators for sexual and asexual reproduction modes in flowering plants. In addition, our findings also make it possible to manipulate the reproductive strategy of plants, at least in rice.
|
| 英文摘要: |
Sexual reproduction is essential for the life cycle of most angiosperms. However, pseudovivipary is an important reproductive strategy in some grasses. In this mode of reproduction, asexual propagules are produced in place of sexual reproductive structures. However, the molecular mechanism of pseudovivipary still remains a mystery. In this work, we found three naturally occurring mutants in rice, namely, phoenix (pho), degenerative palea (dep), and abnormal floral organs (afo). Genetic analysis of them indicated that the stable pseudovivipary mutant pho was a double mutant containing both a Mendelian mutation in DEP and a non-Mendelian mutation in AFO. Further map-based cloning and microarray analysis revealed that dep mutant was caused by a genetic alteration in OsMADS15 while afo was caused by an epigenetic mutation in OsMADS1. Thus, OsMADS1 and OsMADS15 are both required to ensure sexual reproduction in rice and mutations of them lead to the switch of reproductive habit from sexual to asexual in rice. For the first time, our results reveal two regulators for sexual and asexual reproduction modes in flowering plants. In addition, our findings also make it possible to manipulate the reproductive strategy of plants, at least in rice.
|
| 刊物名称: |
PLOS GENETICS |
| 英文刊物名称: |
PLOS GENETICS |
| 论文全文: |
|
| 英文论文全文: |
|
| 全文链接: |
|
| 其它备注: |
Kejian Wang,Ding Tang1,Lilan Hong,Wenying Xu,Jian Huang,Ming Li,Minghong Gu,Yongbiao Xue,Zhukuan Cheng. DEP and AFO Regulate Reproductive Habit in Rice. PLOS GENETICS .DOI:10.1371/journal.pgen.1000818 |
| 英文其它备注: |
|
| 学科: |
|
| 英文学科: |
|
| 影响因子: |
|
| 第一作者所在部门: |
|
| 英文第一作者所在部门: |
|
| 论文出处: |
|
| 英文论文出处: |
|
| 论文类别: |
|
| 英文论文类别: |
|
| 参与作者: |
|
| 英文参与作者: |
|
|