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Central Cell-Produced Attractants Control Fertilization Recovery
Jiangguo Meng, Yinjiao Xu, Weiqi Wang, Fei Yang, Shuyan Chen, Pengfei Jia, Weicai Yang, and Hongju Li
Cell
Abstract
Animal fertilization relies on hundreds of sperm racing toward the egg, whereas in angiosperms, only two sperm cells are delivered by a pollen tube to the female gametes (egg cell and central cell) for double fertilization. However, unsuccessful fertilization under this one-pollen-tube design can be detrimental to seed production and plant survival. To mitigate this risk, unfertilized-gamete-controlled extra pollen tube entry has been evolved to bring more sperm cells to salvage fertilization. Despite its importance, the underlying molecular mechanism of this phenomenon remains unclear. In this study, we report that in Arabidopsis, the central cell secretes peptides SALVAGER1 and SALVAGER2 in a directional manner to attract pollen tubes when the synergid-dependent attraction fails or is terminated by pollen tubes carrying infertile sperm cells. Moreover, loss of SALs impairs the fertilization recovery capacity of the ovules. Therefore, this research uncovers a female gamete-attraction system that salvages seed production for reproductive assurance.
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DOI:10.1016/j.cell.2023.06.024 |
论文题目: |
Central Cell-Produced Attractants Control Fertilization Recovery |
英文论文题目: |
Central Cell-Produced Attractants Control Fertilization Recovery |
第一作者: |
Jiangguo Meng, Yinjiao Xu, Weiqi Wang, Fei Yang, Shuyan Chen, Pengfei Jia, Weicai Yang, and Hongju Li |
英文第一作者: |
Jiangguo Meng, Yinjiao Xu, Weiqi Wang, Fei Yang, Shuyan Chen, Pengfei Jia, Weicai Yang, and Hongju Li |
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2023-07-29 |
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Animal fertilization relies on hundreds of sperm racing toward the egg, whereas in angiosperms, only two sperm cells are delivered by a pollen tube to the female gametes (egg cell and central cell) for double fertilization. However, unsuccessful fertilization under this one-pollen-tube design can be detrimental to seed production and plant survival. To mitigate this risk, unfertilized-gamete-controlled extra pollen tube entry has been evolved to bring more sperm cells to salvage fertilization. Despite its importance, the underlying molecular mechanism of this phenomenon remains unclear. In this study, we report that in Arabidopsis, the central cell secretes peptides SALVAGER1 and SALVAGER2 in a directional manner to attract pollen tubes when the synergid-dependent attraction fails or is terminated by pollen tubes carrying infertile sperm cells. Moreover, loss of SALs impairs the fertilization recovery capacity of the ovules. Therefore, this research uncovers a female gamete-attraction system that salvages seed production for reproductive assurance. |
英文摘要: |
Animal fertilization relies on hundreds of sperm racing toward the egg, whereas in angiosperms, only two sperm cells are delivered by a pollen tube to the female gametes (egg cell and central cell) for double fertilization. However, unsuccessful fertilization under this one-pollen-tube design can be detrimental to seed production and plant survival. To mitigate this risk, unfertilized-gamete-controlled extra pollen tube entry has been evolved to bring more sperm cells to salvage fertilization. Despite its importance, the underlying molecular mechanism of this phenomenon remains unclear. In this study, we report that in Arabidopsis, the central cell secretes peptides SALVAGER1 and SALVAGER2 in a directional manner to attract pollen tubes when the synergid-dependent attraction fails or is terminated by pollen tubes carrying infertile sperm cells. Moreover, loss of SALs impairs the fertilization recovery capacity of the ovules. Therefore, this research uncovers a female gamete-attraction system that salvages seed production for reproductive assurance. |
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Cell |
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Cell |
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