Mjomba Fredrick Mwamburi, Zheng Yan, Liu Huaqing, Tang Weiqi, Hong Zonglie, Wang Feng, Wu Weiren
College of Life Sciences, Ministry of Education, Fujian Agriculture & Forestry University, Fuzhou 350002, China Key Laboratory of Genetics, Breeding, and Multiple Utilization of Crops (FAFU), Ministry of Education, Fujian Agriculture & Forestry University, Fuzhou 350002, China.
College of Life Sciences, Ministry of Education, Fujian Agriculture & Forestry University, Fuzhou 350002, China Key Laboratory of Genetics, Breeding, and Multiple Utilization of Crops (FAFU), Ministry of Education, Fujian Agriculture & Forestry University, Fuzhou 350002, China Department of Plant, Soil, and Entomological Sciences, University of Idaho, Moscow, Idaho 83844.
G3 (Bethesda). 2016 Jul 7;6(7):2013-21. doi: 10.1534/g3.116.028837.
OsWUS has recently been shown to be a transcription factor gene critical for tiller development and fertility in rice. The OsWUS protein consists of three conserved structural domains, but their biological functions are still unclear. We discovered a new rice mutant resulting from tissue culture, which hardly produced tillers and exhibited complete female sterility. The male and female floral organs of the mutant were morphologically indistinguishable from those of the wild type. We named the mutant srt1 for completely sterile and reduced tillering 1. Map-based cloning revealed that the mutant phenotypes were caused by a mutation in OsWUS Compared with the two previously reported null allelic mutants of OsWUS (tab1-1 and moc3-1), which could produce partial N-terminal peptides of OsWUS, the srt1 protein contained a deletion of only seven amino acids within the conserved homeobox domain of OsWUS. However, the mutant phenotypes (monoculm and female sterility) displayed in srt1 were as typical and severe as those in tab1-1 and moc3-1 This indicates that the homeobox domain of SRT1 is essential for the regulation of tillering and sterility in rice. In addition, srt1 showed an opposite effect on panicle development to that of the two null allelic mutants, implying that the srt1 protein might still have partial or even new functions on panicle development. The results of this study suggest that the homeobox domain is pivotal for OsWUS function.
最近研究表明,水稻中的OsWUS是一个对分蘖发育和育性至关重要的转录因子基因。OsWUS蛋白由三个保守的结构域组成,但其生物学功能仍不清楚。我们发现了一个由组织培养产生的水稻新突变体,该突变体几乎不分蘖,并表现出完全雌性不育。突变体的雌雄花器官在形态上与野生型没有区别。我们将该突变体命名为srt1,即完全不育和分蘖减少1。图位克隆表明,突变体表型是由OsWUS中的一个突变引起的。与之前报道的两个OsWUS无效等位突变体(tab1-1和moc3-1)相比,这两个突变体可以产生OsWUS的部分N端肽段,而srt1蛋白在OsWUS保守的同源异型框结构域内仅缺失了七个氨基酸。然而,srt1中表现出的突变体表型(单茎和雌性不育)与tab1-1和moc3-1中的一样典型和严重。这表明SRT1的同源异型框结构域对于水稻分蘖和不育的调控至关重要。此外,srt1对穗发育的影响与两个无效等位突变体相反,这意味着srt1蛋白在穗发育方面可能仍具有部分甚至新的功能。本研究结果表明,同源异型框结构域对于OsWUS的功能至关重要。