Characterization and fine mapping of nonstop glumes 2 (nsg2) mutant in rice (Oryza sativa L.).

IF 1.4 4区 生物学 Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Plant Biotechnology Pub Date : 2019-09-25 DOI:10.5511/plantbiotechnology.19.0506a
Yunfeng Li, Xiao-Qin Zeng, Hui Zhuang, Huan Chen, Ting Zhang, Jun Zhang, Hao Zheng, Jun Tang, Hong-Lei Wang, Suxian Ren, Y. Ling, G. He
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引用次数: 1

Abstract

In cereal crops, the grain number per panicle and the grain yield are greatly affected by the number of florets in a spikelet. In wild-type rice, a spikelet only produces one fertile floret and beneath the floret are a pair of sterile lemmas and a pair of rudimentary glumes. This study characterized a rice spikelet mutant nonstop glumes 2 (nsg2). In the nsg2 mutant, both the sterile lemmas and rudimentary glumes were elongated, and part of sterile lemma looked like a lemma in appearance, shape and size. Detailed histological analysis and qPCR analysis revealed that the sterile lemmas in the nsg2 mutant had homeotically transformed into lemma-like organs. This phenotype indicates that NSG2 is involved in the regulation of spikelet development and supports the long-held view that sterile lemmas were derived from the lemmas of the two lateral florets. This implies that the rice spikelet has the potential to be restored to the "three florets spikelet", which may have existed in its ancestors. Genetic analysis reveals that the nsg2 trait is controlled by a single recessive gene. The NSG2 gene was finally mapped between markers R-20 and R-39 on chromosome 7 with a physical region of 180 kb. The two MYB family factors LOC_Os07g44030 and LOC_Os07g44090 might be involved in the development of the spikelet and floral organ, and they were considered as candidate genes of NSG2. These results provide a foundation for map-based cloning and function analysis of NSG2, as well as evidence to support "three-florets spikelet" breeding in rice.
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水稻不间断颖花2 (nsg2)突变体的鉴定与精细定位。
在谷类作物中,小穗中的小花数量对每穗粒数和产量有很大影响。在野生型水稻中,一个小穗只产生一个可育的小花,在小花下面是一对不育的狐猴和一对不发育的颖片。本研究鉴定了一个水稻小穗突变不间断颖片2(nsg2)。在nsg2突变体中,不育外胚层和不发育的颖片都被拉长,部分不育外胚层在外观、形状和大小上看起来像外胚层。详细的组织学分析和qPCR分析显示,nsg2突变体中的不育lemma已同源转化为外膜样器官。这种表型表明NSG2参与小穗发育的调节,并支持长期以来的观点,即不育的狐猴来源于两个侧小花的狐猴。这意味着水稻小穗有可能恢复为“三小花小穗”,这可能存在于其祖先身上。遗传分析表明,nsg2性状受单隐性基因控制。NSG2基因最终定位在7号染色体上的R-20和R-39标记之间,物理区域为180 kb。两个MYB家族因子LOC_Os07g44030和LOC_Os7g44090可能参与小穗和花器官的发育,它们被认为是NSG2的候选基因。这些结果为NSG2的图谱克隆和功能分析提供了基础,也为水稻“三花小穗”育种提供了依据。
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来源期刊
Plant Biotechnology
Plant Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-PLANT SCIENCES
CiteScore
2.90
自引率
18.80%
发文量
45
审稿时长
6-12 weeks
期刊介绍: Plant Biotechnology is an international, open-access, and online journal, published every three months by the Japanese Society for Plant Biotechnology. The journal, first published in 1984 as the predecessor journal, “Plant Tissue Culture Letters” and became its present form in 1997 when the society name was renamed to Japanese Society for Plant Cell and Molecular Biology, publishes findings in the areas from basic- to application research of plant biotechnology. The aim of Plant Biotechnology is to publish original and high-impact papers, in the most rapid turnaround time for reviewing, on the plant biotechnology including tissue culture, production of specialized metabolites, transgenic technology, and genome editing technology, and also on the related research fields including molecular biology, cell biology, genetics, plant breeding, plant physiology and biochemistry, metabolic engineering, synthetic biology, and bioinformatics.
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