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Mutation of DEFECTIVE EMBRYO SAC1 results in a low seed-setting rate in rice by regulating embryo sac development

The seed-setting rate has a significant effect on grain yield in rice (Oryza sativa L.). Embryo sac development is essential for seed setting; however, the molecular mechanism underlying this process remains unclear. Here, we isolated defective embryo sac1 (des1), a rice mutant with a low seed-setti...

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Autores principales: Hu, Xia, Yu, Ping, Zhang, Yingxin, Gao, Zhiqiang, Sun, Bin, Wu, Weixun, Deng, Chenwei, Abbas, Adil, Hong, Yongbo, Sun, Lianping, Liu, Qunen, Xue, Pao, Wang, Beifang, Zhan, Xiaodeng, Cao, Liyong, Cheng, Shihua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10010608/
https://www.ncbi.nlm.nih.gov/pubmed/36651501
http://dx.doi.org/10.1093/jxb/erac506
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author Hu, Xia
Yu, Ping
Zhang, Yingxin
Gao, Zhiqiang
Sun, Bin
Wu, Weixun
Deng, Chenwei
Abbas, Adil
Hong, Yongbo
Sun, Lianping
Liu, Qunen
Xue, Pao
Wang, Beifang
Zhan, Xiaodeng
Cao, Liyong
Cheng, Shihua
author_facet Hu, Xia
Yu, Ping
Zhang, Yingxin
Gao, Zhiqiang
Sun, Bin
Wu, Weixun
Deng, Chenwei
Abbas, Adil
Hong, Yongbo
Sun, Lianping
Liu, Qunen
Xue, Pao
Wang, Beifang
Zhan, Xiaodeng
Cao, Liyong
Cheng, Shihua
author_sort Hu, Xia
collection PubMed
description The seed-setting rate has a significant effect on grain yield in rice (Oryza sativa L.). Embryo sac development is essential for seed setting; however, the molecular mechanism underlying this process remains unclear. Here, we isolated defective embryo sac1 (des1), a rice mutant with a low seed-setting rate. Cytological examination showed degenerated embryo sacs and reduced fertilization capacity in des1. Map-based cloning revealed a nonsense mutation in OsDES1, a gene that encodes a putative nuclear envelope membrane protein (NEMP)-domain-containing protein that is preferentially expressed in pistils. The OsDES1 mutation disrupts the normal formation of functional megaspores, which ultimately results in a degenerated embryo sac in des1. Reciprocal crosses showed that fertilization is abnormal and that the female reproductive organ is defective in des1. OsDES1 interacts with LONELY GUY (LOG), a cytokinin-activating enzyme that acts in the final step of cytokinin synthesis; mutation of LOG led to defective female reproductive organ development. These results demonstrate that OsDES1 functions in determining the rice seed-setting rate by regulating embryo sac development and fertilization. Our study sheds light on the function of NEMP-type proteins in rice reproductive development.
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spelling pubmed-100106082023-03-14 Mutation of DEFECTIVE EMBRYO SAC1 results in a low seed-setting rate in rice by regulating embryo sac development Hu, Xia Yu, Ping Zhang, Yingxin Gao, Zhiqiang Sun, Bin Wu, Weixun Deng, Chenwei Abbas, Adil Hong, Yongbo Sun, Lianping Liu, Qunen Xue, Pao Wang, Beifang Zhan, Xiaodeng Cao, Liyong Cheng, Shihua J Exp Bot Research Papers The seed-setting rate has a significant effect on grain yield in rice (Oryza sativa L.). Embryo sac development is essential for seed setting; however, the molecular mechanism underlying this process remains unclear. Here, we isolated defective embryo sac1 (des1), a rice mutant with a low seed-setting rate. Cytological examination showed degenerated embryo sacs and reduced fertilization capacity in des1. Map-based cloning revealed a nonsense mutation in OsDES1, a gene that encodes a putative nuclear envelope membrane protein (NEMP)-domain-containing protein that is preferentially expressed in pistils. The OsDES1 mutation disrupts the normal formation of functional megaspores, which ultimately results in a degenerated embryo sac in des1. Reciprocal crosses showed that fertilization is abnormal and that the female reproductive organ is defective in des1. OsDES1 interacts with LONELY GUY (LOG), a cytokinin-activating enzyme that acts in the final step of cytokinin synthesis; mutation of LOG led to defective female reproductive organ development. These results demonstrate that OsDES1 functions in determining the rice seed-setting rate by regulating embryo sac development and fertilization. Our study sheds light on the function of NEMP-type proteins in rice reproductive development. Oxford University Press 2023-01-18 /pmc/articles/PMC10010608/ /pubmed/36651501 http://dx.doi.org/10.1093/jxb/erac506 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of the Society for Experimental Biology. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Hu, Xia
Yu, Ping
Zhang, Yingxin
Gao, Zhiqiang
Sun, Bin
Wu, Weixun
Deng, Chenwei
Abbas, Adil
Hong, Yongbo
Sun, Lianping
Liu, Qunen
Xue, Pao
Wang, Beifang
Zhan, Xiaodeng
Cao, Liyong
Cheng, Shihua
Mutation of DEFECTIVE EMBRYO SAC1 results in a low seed-setting rate in rice by regulating embryo sac development
title Mutation of DEFECTIVE EMBRYO SAC1 results in a low seed-setting rate in rice by regulating embryo sac development
title_full Mutation of DEFECTIVE EMBRYO SAC1 results in a low seed-setting rate in rice by regulating embryo sac development
title_fullStr Mutation of DEFECTIVE EMBRYO SAC1 results in a low seed-setting rate in rice by regulating embryo sac development
title_full_unstemmed Mutation of DEFECTIVE EMBRYO SAC1 results in a low seed-setting rate in rice by regulating embryo sac development
title_short Mutation of DEFECTIVE EMBRYO SAC1 results in a low seed-setting rate in rice by regulating embryo sac development
title_sort mutation of defective embryo sac1 results in a low seed-setting rate in rice by regulating embryo sac development
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10010608/
https://www.ncbi.nlm.nih.gov/pubmed/36651501
http://dx.doi.org/10.1093/jxb/erac506
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