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OsCNGC13 promotes seed-setting rate by facilitating pollen tube growth in stylar tissues

机译:OsCNGC13通过促进柱状组织中的花粉管生长来提高结实率

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Seed-setting rate is a critical determinant of grain yield in rice (Oryza sativa L.). Rapid and healthy pollen tube growth in the style is required for high seed-setting rate. The molecular mechanisms governing this process remain largely unknown. In this study, we isolate a dominant low seed-setting rate rice mutant, sss1-D. Cellular examination results show that pollen tube growth is blocked in about half of the mutant styles. Molecular cloning and functional assays reveals that SSS1-D encodes OsCNGC13, a member of the cyclic nucleotide-gated channel family. OsCNGC13 is preferentially expressed in the pistils and its expression is dramatically reduced in the heterozygous plant, suggesting a haploinsufficiency nature for the dominant mutant phenotype. We show that OsCNGC13 is permeable to Ca2+. Consistent with this, accumulation of cytoplasmic calcium concentration ([Ca2+]cyt) is defective in the sss1-D mutant style after pollination. Further, the sss1-D mutant has altered extracellular matrix (ECM) components and delayed cell death in the style transmission tract (STT). Based on these results, we propose that OsCNGC13 acts as a novel maternal sporophytic factor required for stylar [Ca2+]cyt accumulation, ECM components modification and STT cell death, thus facilitating the penetration of pollen tube in the style for successful double fertilization and seed-setting in rice.
机译:结实率是水稻(Oryza sativa L.)的谷物产量的关键决定因素。这种花粉管必须快速,健康地生长,以提高结实率。控制这一过程的分子机制仍然很大程度上未知。在这项研究中,我们分离了一个占主导地位的低结实率水稻突变体sss1-D。细胞检查结果表明,在大约一半的突变型中,花粉管的生长受阻。分子克隆和功能测定表明,SSS1-D编码OsCNGC13,它是环状核苷酸门控通道家族的成员。 OsCNGC13在雌蕊中优先表达,在杂合植物中其表达显着降低,这表明优势突变表型具有单倍不足的性质。我们表明,OsCNGC13可渗透Ca2 +。与此相一致,授粉后sss1-D突变体形式的细胞质钙浓度([Ca2 +] cyt)积累是有缺陷的。此外,sss1-D突变体已经改变了细胞外基质(ECM)的成分,并延迟了样式传递通道(STT)中的细胞死亡。根据这些结果,我们认为OsCNGC13可作为一种新的母体孢子性因子,用于定型[Ca2 +] cyt积累,ECM成分修饰和STT细胞死亡,从而以成功的双重受精和种子繁殖的方式促进了花粉管的穿透。在米饭中设置。

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