首页> 美国卫生研究院文献>Journal of Experimental Botany >Down-regulation of a LBD-like gene OsIG1 leads to occurrence of unusual double ovules and developmental abnormalities of various floral organs and megagametophyte in rice
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Down-regulation of a LBD-like gene OsIG1 leads to occurrence of unusual double ovules and developmental abnormalities of various floral organs and megagametophyte in rice

机译:LBD样基因OsIG1的下调导致水稻中出现异常双胚珠以及各种花器官和大型配子体发育异常

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摘要

The indeterminate gametophyte1 (ig1) mutation was first characterized to modulate female gametophyte development in maize (Zea mays). However, the function of its rice orthologue, OsIG1, remains unknown. For this, we first analysed OsIG1 localization from differential tissues in rice. Real-time quantitative PCR (qRT-PCR) and histochemical staining results demonstrated that the expression signal of OsIG1 was strongly detected in young inflorescence, moderately in mature flower and weakly in leaf. Furthermore, RNA in situ hybridization analyses exhibited that OsIG1 was strongly expressed in inflorescence meristems, floral meristems, empty-glume- and floret- primordia, especially in the primordia of stamens and immature ovules, and the micropylar side of the mature ovary. In OsIG1-RNAi lines, wrinkled blade formation was accompanied by increased leaf inclination angle. Cross-section further showed that the number of bulliform cells located between the vasculatures was significantly increased, indicating that OsIG1 is involved in division and differentiation of bulliform cell and lateral growth during leaf development. OsIG1-RNAi suppression lines showed pleiotropic phenotypes, including degenerated palea, glume-like features and open hull. In addition, a single OsIG1-RNAi floret is characterized by frequently developing double ovules with abnormal embryo sac development. Additionally, down-regulation of OsIG1 differentially affected the expression of genes associated with the floral organ development including EG1, OsMADS6 and OsMADS1. Taken together, these results demonstrate that OsIG1 plays an essential role in the regulation of empty-glume identity, floral organ number control and female gametophyte development in rice.
机译:不确定的配子体1(ig1)突变首先被表征为调节玉米(Zea mays)中女性配子体的发育。然而,其水稻直系同源基因OsIG1的功能仍然未知。为此,我们首先分析了水稻中不同组织的OsIG1定位。实时定量PCR(qRT-PCR)和组织化学染色结果表明,在幼花序中强烈检测到OsIG1的表达信号,在成熟花中适度检测到OsIG1的表达信号,而在叶片中较弱检测到。此外,RNA原位杂交分析表明,OsIG1在花分生组织,花分生组织,空颗粒和小花原基中强烈表达,尤其是在雄蕊和不成熟胚珠的原基中,以及成熟子房的毛孔侧。在OsIG1-RNAi品系中,叶片皱纹形成伴随着叶片倾斜角的增加。横截面进一步表明位于脉管系统之间的大疱状细胞的数量显着增加,表明OsIG1参与了大疱状细胞的分裂和分化以及叶片发育过程中的侧向生长。 OsIG1-RNAi抑制系显示多效性表型,包括退化的面色,颖状特征和开放壳。此外,单个OsIG1-RNAi小花的特征是经常发育出具有异常胚囊发育的双胚珠。此外,OsIG1的下调差异地影响与花器官发育相关的基因的表达,包括EG1,OsMADS6和OsMADS1。综上所述,这些结果表明 OsIG1 在调节空粒身份,花器官数量控制和雌配子体发育中起着至关重要的作用。

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