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首页> 外文期刊>Molecular Breeding >Hd1 function conversion in regulating heading is dependent on gene combinations of Ghd7, Ghd8, and Ghd7.1 under long-day conditions in rice
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Hd1 function conversion in regulating heading is dependent on gene combinations of Ghd7, Ghd8, and Ghd7.1 under long-day conditions in rice

机译:调节标题中的HD1功能转换取决于GHD7,GHD8和GHD7.1的基因组合在稻米的漫长日期下

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摘要

Ghd7, Ghd8, Ghd7.1, and Hd1 are all pleiotropic genes regulating heading date, plant height, and yield in rice. Early studies showed that Hd1 promoted heading under short-day conditions (SD) and delayed heading under long-day conditions (LD). Recent studies found that Hd1 also promoted heading in some genetic backgrounds under LD. In this study, we developed a series of near-isogenic lines for Ghd7, Ghd8, Ghd7.1, and Hd1 in the Zhenshan 97 (ZS97) and Minghui 63 (MH63) backgrounds and recorded their heading dates. In the ZS97 background, Ghd7 alone triggered the conversion of Hd1 function from promoting to suppressing heading under LD. Ghd8 alone and Ghd7.1 alone did not promote but enhanced Ghd7-mediated Hd1 function conversion. In the MH63 background, Ghd7 alone and Ghd7.1 alone did not convert Hd1 function under LD, but they jointly promoted Hd1 function conversion. Conversion of Hd1 function occurred only under LD but not SD. Transcript analysis showed that downregulation or upregulation of Ehd1 and Hd3a by Hd1 in the lines under LD was determined by genetic background. In summary, multiple gene combinations of Ghd7, Ghd7.1, and Ghd8 and unknown genes caused conversion of Hd1 function. Moreover, the different gene combinations had a big difference in photoperiod sensitivities. These findings lay a solid foundation for further unveiling the molecular mechanism of Hd1 function conversion and provide guidance for heading date improvement in rice.
机译:GHD7,GHD8,GHD7.1和HD1都是含有稻米植物高度,植物高度和水稻产量的含有肺炎基因。早期研究表明,HD1在短日条件下促进标题(SD),并在漫长的条件下延迟标题(LD)。最近的研究发现,HD1还促进了LD下的一些遗传背景。在这项研究中,我们开发了一系列用于振汉97(ZS97)和明辉63(MH63)背景的GHD7,GHD8,GHD7.1和HD1的一系列近似的近似的线。在ZS97背景中,单独的GHD7触发了HD1功能的转换,从促进LD下抑制标题。单独的GHD8和GHD7.1单独宣传但增强了GHD7介导的HD1功能转换。在MH63背景中,单独的GHD7和GHD7.1单独在LD下没有转换HD1功能,但它们共同推广了HD1功能转换。 HD1功能的转换仅发生在LD下但不是SD。转录物分析表明,通过遗传背景测定了LD下的HD1中EHD1和HD3A的下调或上调。总之,GHD7,GHD7.1和GHD8和未知基因的多种基因组合导致HD1功能的转换。此外,不同的基因组合在光周期敏感性具有很大差异。这些发现为进一步揭示HD1功能转换的分子机制奠定了坚实的基础,并为水稻进行了标题改善的指导。

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