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Nitrogen Nutrition Contributes to Plant Fertility by Affecting Meiosis Initiation
Han Yang, Yafei Li, Yiwei Cao, Wenqing Shi, En Xie, Na Mu, Guijie Du, Yi Shen, Ding Tang & Zhukuan Cheng
Nature Communications
Abstract
Nitrogen (N), one of the most important plant nutrients, plays crucial roles in multiple plant developmental processes. Spikelets are the primary sink tissues during reproductive growth, and N deficiency can cause floral abortion. However, the roles of N nutrition in meiosis, the crucial step in plant sexual reproduction, are poorly understood. Here, we identified an N-dependent meiotic entrance mutant with loss of function of ELECTRON TRANSFER FLAVOPROTEIN SUBUNIT β (ETFβ) in rice (Oryza sativa). etfβ displayed meiosis initiation defects, excessive accumulation of branched-chain amino acids (BCAAs) and decrease in total N contents in spikelets under N starvation, which were rescued by applying excess exogenous inorganic N. Under N starvation, ETFβ, through its involvement in BCAA catabolism, promotes
N reutilization and contributes to meeting N demands of spikelets, highlighting the
impact of N nutrition on meiosis initiation. We conclude that N nutrition contributes to plant fertility by affecting meiosis initiation.
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论文编号: |
DOI:10.1038/s41467-022-28173-3 |
论文题目: |
Nitrogen Nutrition Contributes to Plant Fertility by Affecting Meiosis Initiation |
英文论文题目: |
Nitrogen Nutrition Contributes to Plant Fertility by Affecting Meiosis Initiation |
第一作者: |
Han Yang, Yafei Li, Yiwei Cao, Wenqing Shi, En Xie, Na Mu, Guijie Du, Yi Shen, Ding Tang & Zhukuan Cheng |
英文第一作者: |
Han Yang, Yafei Li, Yiwei Cao, Wenqing Shi, En Xie, Na Mu, Guijie Du, Yi Shen, Ding Tang & Zhukuan Cheng |
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2022-01-26 |
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摘要: |
Nitrogen (N), one of the most important plant nutrients, plays crucial roles in multiple plant developmental processes. Spikelets are the primary sink tissues during reproductive growth, and N deficiency can cause floral abortion. However, the roles of N nutrition in meiosis, the crucial step in plant sexual reproduction, are poorly understood. Here, we identified an N-dependent meiotic entrance mutant with loss of function of ELECTRON TRANSFER FLAVOPROTEIN SUBUNIT β (ETFβ) in rice (Oryza sativa). etfβ displayed meiosis initiation defects, excessive accumulation of branched-chain amino acids (BCAAs) and decrease in total N contents in spikelets under N starvation, which were rescued by applying excess exogenous inorganic N. Under N starvation, ETFβ, through its involvement in BCAA catabolism, promotes
N reutilization and contributes to meeting N demands of spikelets, highlighting the
impact of N nutrition on meiosis initiation. We conclude that N nutrition contributes to plant fertility by affecting meiosis initiation. |
英文摘要: |
Nitrogen (N), one of the most important plant nutrients, plays crucial roles in multiple plant developmental processes. Spikelets are the primary sink tissues during reproductive growth, and N deficiency can cause floral abortion. However, the roles of N nutrition in meiosis, the crucial step in plant sexual reproduction, are poorly understood. Here, we identified an N-dependent meiotic entrance mutant with loss of function of ELECTRON TRANSFER FLAVOPROTEIN SUBUNIT β (ETFβ) in rice (Oryza sativa). etfβ displayed meiosis initiation defects, excessive accumulation of branched-chain amino acids (BCAAs) and decrease in total N contents in spikelets under N starvation, which were rescued by applying excess exogenous inorganic N. Under N starvation, ETFβ, through its involvement in BCAA catabolism, promotes
N reutilization and contributes to meeting N demands of spikelets, highlighting the
impact of N nutrition on meiosis initiation. We conclude that N nutrition contributes to plant fertility by affecting meiosis initiation. |
刊物名称: |
Nature Communications |
英文刊物名称: |
Nature Communications |
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Han Yang, Yafei Li, Yiwei Cao, Wenqing Shi, En Xie, Na Mu, Guijie Du, Yi Shen, Ding Tang & Zhukuan Cheng. Nitrogen Nutrition Contributes to Plant Fertility by Affecting Meiosis Initiation. Nature Communications. DOI:10.1038/s41467-022-28173-3 |
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