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首页> 外文期刊>Plant and cell physiology >GLUCAN SYNTHASE-LIKE 5 (GSL5) Plays an Essential Role in Male Fertility by Regulating Callose Metabolism During Microsporogenesis in Rice
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GLUCAN SYNTHASE-LIKE 5 (GSL5) Plays an Essential Role in Male Fertility by Regulating Callose Metabolism During Microsporogenesis in Rice

机译:谷氨酸合酶样5(GSL5)通过调节水稻小孢子发生过程中的愈伤组织代谢,在雄性育性中发挥重要作用

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摘要

Callose plays an important role in pollen development in flowering plants. In rice, 10 genes encoding putative callose synthases have been identified; however, none of them has been functionally characterized. In this study, a rice Glucan Synthase-Like 5 (GSL5) knock-out mutant was isolated that exhibited a severe reduction in fertility. Pollen viability tests indicated that the pollen of the mutant was abnormal while the embryo sac was normal. Further, GSL5-RNA interference transgenic plants phenocopied the gsl5 mutant. The RNA expression of GSL5 was found to be knocked out in the gsl5 mutant and knocked down in GSL5-RNA interference transgenic plants by real-time reverse transcripion-PCR (RT-PCR) analysis. The male sterility of the mutant was due to abnormal microspore development; an analysis of paraffin sections of the mutant anthers at various developmental stages revealed that abnormal microspore development began in late meiosis. Both the knock-out and knock-down of GSL5 caused a lack of callose in the primary cell wall of meiocytes and in the cell plate of tetrads. As a result, the callose wall of the microspores was defective. This was demonstrated by aniline blue staining and an immunogold labeling assay; the microspores could not maintain their shape, leading to premature swelling and even collapsed microspores. These data suggest that the callose synthase encoded by GSL5 plays a vital role in microspore development during late meiosis and is essential for male fertility in rice.
机译:愈伤组织在开花植物的花粉发育中起重要作用。在水稻中,已鉴定出10个编码假定的愈伤组织合酶的基因。但是,它们都没有功能上的特征。在这项研究中,分离出水稻的葡聚糖合酶样5(GSL5)敲除突变体,其表现出严重的生育力降低。花粉活力测试表明,该突变体的花粉异常,而胚囊正常。此外,GSL5-RNA干扰转基因植物表型的gsl5突变体。通过实时逆转录-PCR(RT-PCR)分析,发现在gsl5突变体中敲除了GSL5的RNA表达,并在GSL5-RNA干扰转基因植物中敲除了GSL5的RNA表达。突变体的雄性不育是由于小孢子发育异常所致。突变花药在不同发育阶段的石蜡切片分析显示,减数分裂后期开始出现异常的小孢子发育。 GSL5的敲除和敲除均导致在减数分裂细胞的原代细胞壁和四分体的细胞板中缺少call。结果,小孢子的call壁是有缺陷的。苯胺蓝染色和免疫金标记检测证明了这一点。小孢子不能保持其形状,导致小孢子过早膨胀甚至崩溃。这些数据表明,由GSL5编码的call质合酶在减数分裂后期的小孢子发育中起着至关重要的作用,对于水稻的雄性育性至关重要。

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