Morphogenesis and molecular basis on naked seed rice, a novel homeotic mutation of OsMADS1 regulating transcript level of AP3 homologue in rice

被引:0
|
作者
Zhi-Xiong Chen
Jian-Guo Wu
Wo-Na Ding
Han-Ming Chen
Ping Wu
Chun-Hai Shi
机构
[1] Zhejiang University,College of Agriculture and Biotechnology
[2] Zhejiang University,College of Life Sciences
[3] Fujian Academy of Agricultural Sciences,undefined
来源
Planta | 2006年 / 223卷
关键词
Rice; Flower development; MADS-box;
D O I
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中图分类号
学科分类号
摘要
The floral organs are formed from floral meristem with a regular initiation pattern in angiosperm species. Flowers of naked seed rice (nsr) were characterized by the overdeveloped lemma and palea, the transformation of lodicules to palea-/lemma-like organs, the decreased number of stamens and occasionally extra pistils. Some nsr spikelets contained additional floral organs of four whorls and/or abnormal internal florets. The floral primordium of nsr spikelet is differentiated under an irregular pattern and an incomplete determination. And molecular analysis indicated that nsr was a novel homeotic mutation in OsMADS1, suggesting that OsMADS1 played a distinct role in regulating the differentiation pattern of floral primordium and in conferring the determination of flower meristem. The gain-of-function of OsMADS1 transgenic lines presented the transformation of outer glumes to lemma-/palea-like organs and no changes in length of lemma and palea, but loss-of-function of OsMADS1 transgenic lines displayed the overdeveloped lemma and palea. Both findings revealed that OsMADS1 played a role in specifying lemma and palea and acted as a repressor of overdevelopment of lemma and palea. Moreover, it was indicated that OsMADS1 upregulated the transcript level of AP3 homologue OsMADS16, using real-time PCR analysis on gain- and loss-of-function of OsMADS1 transgenic lines.
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页码:882 / 890
页数:8
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  • [1] Morphogenesis and molecular basis on naked seed rice, a novel homeotic mutation of OsMADS1 regulating transcript level of AP3 homologue in rice
    Chen, ZX
    Wu, JG
    Ding, WN
    Chen, HM
    Wu, P
    Shi, CH
    PLANTA, 2006, 223 (05) : 882 - 890