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TaZIM-A1 负调控普通小麦(Triticum aestivum L.)的开花时间。

TaZIM-A1 negatively regulates flowering time in common wheat (Triticum aestivum L.).

机构信息

College of Agricultural Sciences, Nanjing Agricultural University, Nanjing, 210095, China.

Key Laboratory of Crop Gene Resources and Germplasm Enhancement, Ministry of Agriculture, Institute of Crop Science, the Chinese Academy of Agricultural Sciences, Beijing, 100081, China.

出版信息

J Integr Plant Biol. 2019 Mar;61(3):359-376. doi: 10.1111/jipb.12720. Epub 2018 Dec 17.

Abstract

Flowering time is a critical determinant of regional adaptation for crops and has strong effects on crop yields. Here, we report that TaZIM-A1, an atypical GATA-like transcription factor, is a negative regulator of flowering in wheat. TaZIM-A1 possessed weak transcriptional repression activity, with its CCT domain functioning as the major inhibitory region. TaZIM-A1 expression exhibited a typical circadian oscillation pattern under various light regimes. Overexpression of TaZIM-A1 caused a delay in flowering time and a decrease in thousand-kernel weight (TKW) in wheat under long-day conditions. Moreover, TaZIM-A1 directly bound to the promoters of TaCO-1 and TaFT-1 and downregulated their expression. Sequence analysis of a collection of common wheat cultivars identified three and two haplotypes for TaZIM-A1 and TaZIM-B1, respectively. Association analysis revealed that TaZIM-A1-HapI/-HapIII and TaZIM-B1-HapI have undergone strong positive selection during modern wheat breeding, likely due to their association with earlier heading and higher TKW. Diagnostic markers were developed for these haplotypes that can be used for wheat cultivar improvement, via marker-assisted breeding.

摘要

开花时间是作物区域适应的关键决定因素,对作物产量有强烈影响。在这里,我们报告 TaZIM-A1,一种非典型的 GATA 样转录因子,是小麦开花的负调控因子。TaZIM-A1 具有较弱的转录抑制活性,其 CCT 结构域是主要的抑制区域。TaZIM-A1 的表达在不同光照条件下呈现典型的昼夜节律振荡模式。在长日照条件下,过表达 TaZIM-A1 导致小麦开花时间延迟和千粒重(TKW)降低。此外,TaZIM-A1 直接结合 TaCO-1 和 TaFT-1 的启动子并下调其表达。对普通小麦品种的集合进行序列分析,鉴定出 TaZIM-A1 和 TaZIM-B1 分别有三个和两个单倍型。关联分析表明,TaZIM-A1-HapI/-HapIII 和 TaZIM-B1-HapI 在现代小麦育种过程中经历了强烈的正选择,可能是由于它们与较早的抽穗和更高的 TKW 相关。为这些单倍型开发了诊断标记,可以通过标记辅助选择用于小麦品种改良。

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