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A G protein alpha null mutation confers prolificacy potential in maize

机译:G蛋白α无效突变赋予玉米高产潜力

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摘要

Plasticity in plant development is controlled by environmental signals through largely unknown signalling networks. Signalling coupled by the heterotrimeric G protein complex underlies various developmental pathways in plants. The morphology of two plastic developmental pathways, root system architecture and female inflorescence formation, was quantitatively assessed in a mutant compact plant 2 (ct2) lacking the alpha subunit of the heterotrimeric G protein complex in maize. The ct2 mutant partially compensated for a reduced shoot height by increased total leaf number, and had far more ears, even in the presence of pollination signals. The maize heterotrimeric G protein complex is important in some plastic developmental traits in maize. In particular, the maize Gα subunit is required to dampen the overproduction of female inflorescences.
机译:植物发育中的可塑性受环境信号通过很大程度上未知的信号网络控制。异源三聚体G蛋白复合物偶联的信号是植物中各种发育途径的基础。在缺少玉米中异源三聚体G蛋白复合体的α亚基的突变紧凑型植物2(ct2)中,定量评估了两个塑料发育途径的形态,即根系结构和雌性花序形成。 ct2突变体通过增加总叶数来部分补偿芽高的降低,即使在存在授粉信号的情况下,其穗也要多得多。玉米异源三聚体G蛋白复合物在玉米的某些塑性发育性状中很重要。特别地,玉米Gα亚基被要求抑制雌花序的过量生产。

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