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Isolation and characterization of kelch repeat-containing F-box proteins from colored wheat

机译:含有彩色小麦含有kelch重复的F箱蛋白的分离与表征

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摘要

F-box proteins play important roles in the regulation of various developmental processes in plants. Approximately 1796 F-box genes have been identified in the wheat genome, but details of their functions remain unknown. Moreover, not much was known about the roles of kelch repeat domain-containing F-box genes (TaKFBs) in wheat. In the present study, we isolated five TaKFBs to investigate the roles of KFBs at different stages of colored wheat grain development. The cDNAs encoding TaKFB1, TaKFB2, TaKFB3, TaKFB4, and TaKFB5 contained 363, 449, 353, 382, and 456 bp open reading frames, respectively. All deduced TaKFBs contained an F-box domain (IPR001810) and a kelch repeat type 1 domain (IPR006652), except TaKFB2. Expression of TaKFBs was elevated during the pigmentation stages of grain development. To clarify how TaKFB and SKP interact in wheat, we investigated whether five TaKFB proteins showed specificity for six SKP proteins using a yeast two-hybrid (Y2H) assay. An Y2H screen was performed to search for proteins capable of binding the TaKFBs and interaction was identified between TaKFB1 and aquaporin PIP1. To examine the subcellular localization of TaKFBs, we transiently expressed TaKFB-green fluorescent protein (GFP) fusions in tobacco leaves; the TaKFB-GFP fusions were detected in the nucleus and the cytoplasm. Y2H and bimolecular fluorescence complementation (BiFC) assays revealed that TaKFB1 specifically interacts with aquaporin PIP1. These results will provide useful information for further functional studies on wheat F-box proteins and their possible roles.
机译:F箱蛋白在植物中各种发育过程的调节中起重要作用。在小麦基因组中鉴定了大约1796个F盒基因,但其功能的细节仍然未知。此外,关于小麦中的含有kelch重复域的F箱基因(TakFB)的角色而闻名。在目前的研究中,我们孤立五个Takfbs来调查KFBS在彩色小麦籽粒发育不同阶段的角色。编码TakFB1,TakFB2,TakFB3,TakFB4和TakFB5的CDNA分别包含363,449,353,382和456个BP开放阅读框架。除TAKFB2之外,所有推导的Takfbs都包含了一个F-Box域(IPR001810)和Kelch Repeat Type 1域(IPR006652)。在谷物发育的色素沉着阶段期间,牙龈的表达升高。为了澄清TakFB和SKP如何在小麦中相互作用,我们研究了使用酵母双杂交(Y2H)测定的六个SKP蛋白的特异性是否表现出特异性。进行Y2H筛网以搜索能够结合TakFBS的蛋白质,并且在TakFB1和Aquaporin PIP1之间识别相互作用。为了检查TakFBS的亚细胞定位,我们在烟叶中瞬时表达了TakfB-Green荧光蛋白(GFP)融合;在细胞核和细胞质中检测到TakFB-GFP融合。 Y2H和双分子荧光互补(BIFC)测定揭示了TakFB1与Aquaporin PIP1特别相互作用。这些结果将为小麦F箱蛋白的进一步功能研究及其可能的作用提供有用的信息。

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