POLLEN STERILITY,a novel suppressor of cell division,is required for timely tapetal programmed cell death in rice

被引:0
|
作者
Ronghui Che [1 ,2 ]
Bin Hu [1 ,3 ]
Wei Wang [1 ,3 ]
Yunhua Xiao [1 ]
Dapu Liu [4 ]
Wenchao Yin [4 ]
Hongning Tong [4 ]
Chengcai Chu [1 ]
机构
[1] State Key Laboratory of Plant Genomics,Institute of Genetics and Developmental Biology,the Innovative Academy for Seed Design,Chinese Academy of Sciences
[2] School of Biological and Science Technology,University of Jinan
[3] College of Agriculture,South China Agricultural University
[4] National Key Facility for Crop Gene Resources and Genetic Improvement,Institute of Crop Sciences,Chinese Academy of Agricultural Sciences
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
Q944.4 [植物胚胎学(植物发生学)];
学科分类号
090102 ;
摘要
Timely programmed cell death(PCD) of the tapetum supplying nutrients to microspores is a prerequisite for normal pollen development.Here we identified a unique mutant of rice(Oryza sativa L.),pollen sterility(post),which showed aborted pollens accompanied with extra-large husks.Due to failure of timely PCD of tapetal cells,post exhibited abnormal pollen wall patterning and defective pollen grains.By map-based cloning,we identified a causal gene,POST,encoding a novel protein which is ubiquitously localized in cells.RNA in situ hybridization showed that POST is highly detected in the tapetum and microspores at stages 8 and 9.Transcriptome analysis indicated that POST could function as an important regulator of the metabolic process involved in tapetal PCD.Compared with wild-type rice,post mutant has an increased cell number resulting from elevated expression of cell cycle associated genes in grain husks.Overexpression of POST inhibits grain size in wild type,while appropriate expression of POST in post mutant can recover the seed fertility but has little effect on the large grains,illustrating that fine-tuning of POST expression could be a potential strategy for rice yield improvement.The connection between cell division and cell death conferred by POST provides novel insights into the understanding of the tapetal PCD process.
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页码:1235 / 1247
页数:13
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