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在删除包含 FLOWERING LOCUS T1 的基因座后,面包小麦对环境温度变化的发育响应。

Developmental responses of bread wheat to changes in ambient temperature following deletion of a locus that includes FLOWERING LOCUS T1.

机构信息

John Innes Centre, Norwich, NR4 7UH, UK.

CSIRO, Agriculture and Food, Canberra, Australia.

出版信息

Plant Cell Environ. 2018 Jul;41(7):1715-1725. doi: 10.1111/pce.13130. Epub 2018 Feb 7.

Abstract

FLOWERING LOCUS T (FT) is a central integrator of environmental signals that regulates the timing of vegetative to reproductive transition in flowering plants. In model plants, these environmental signals have been shown to include photoperiod, vernalization, and ambient temperature pathways, and in crop species, the integration of the ambient temperature pathway remains less well understood. In hexaploid wheat, at least 5 FT-like genes have been identified, each with a copy on the A, B, and D genomes. Here, we report the characterization of FT-B1 through analysis of FT-B1 null and overexpression genotypes under different ambient temperature conditions. This analysis has identified that the FT-B1 alleles perform differently under diverse environmental conditions; most notably, the FT-B1 null produces an increase in spikelet and tiller number when grown at lower temperature conditions. Additionally, absence of FT-B1 facilitates more rapid germination under both light and dark conditions. These results provide an opportunity to understand the FT-dependent pathways that underpin key responses of wheat development to changes in ambient temperature. This is particularly important for wheat, for which development and grain productivity are sensitive to changes in temperature.

摘要

开花时间基因(FT)是环境信号的中央整合因子,调节着开花植物营养生长向生殖生长的转变时间。在模式植物中,这些环境信号已被证明包括光周期、春化和环境温度途径,而在作物物种中,对环境温度途径的整合仍了解较少。在六倍体小麦中,至少已经鉴定出 5 个 FT 样基因,每个基因在 A、B 和 D 基因组上都有一个拷贝。在这里,我们通过在不同环境温度条件下分析 FT-B1 缺失和过表达基因型来报告 FT-B1 的特征。该分析表明,FT-B1 等位基因在不同环境条件下表现不同;最值得注意的是,FT-B1 缺失在较低温度条件下增加了小穗和分蘖数。此外,FT-B1 的缺失促进了在光照和黑暗条件下更快的发芽。这些结果为理解小麦对环境温度变化的关键发育响应所依赖的 FT 相关途径提供了机会。这对于小麦尤为重要,因为其发育和籽粒生产力对温度变化敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f095/6033019/991c631bb690/PCE-41-1715-g001.jpg

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