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豆科植物模型中锌缺乏反应的调控

Regulation of the Zinc Deficiency Response in the Legume Model .

作者信息

Liao Feixue, Lilay Grmay Hailu, Castro Pedro Humberto, Azevedo Herlander, Assunção Ana G L

机构信息

Department of Plant and Environmental Sciences, University of Copenhagen, Frederiksberg, Denmark.

CIBIO-InBIO Research Centre in Biodiversity and Genetic Resources, University of Porto, Vairão, Portugal.

出版信息

Front Plant Sci. 2022 Jun 30;13:916168. doi: 10.3389/fpls.2022.916168. eCollection 2022.

Abstract

The zinc deficiency response in is regulated by F-group basic region leucine-zipper (F-bZIP) transcription factors, and there is evidence of evolutionary conservation of this regulatory network in land plants. Fundamental knowledge on the zinc homeostasis regulation in crop species will contribute to improving their zinc nutritional value. Legumes are protein-rich crops, used worldwide as part of traditional diets and as animal forage, being therefore a good target for micronutrient biofortification. Here, we identified F-bZIP transcription factors in representative legume species and functionally characterized the two F-bZIPs from . Results indicate that MtFbZIP1 is the functional homolog of bZIP19 and bZIP23, while MtFbZIP2 does not play a role in the zinc deficiency response. Additionally, analysis of genes from the Zrt/Irt-like protein (ZIP) family of zinc transporters or encoding nicotianamine synthase enzymes that produce the zinc ligand nicotianamine, support the conservation of the F-bZIP-regulated zinc deficiency response in . Phylogenetic analysis of F-bZIP homologs enriched in legume species reinforces the branching into two groups, with MtFbZIP1 and MtFbZIP2 mapping in Groups 1 and 2, respectively. This phylogeny combined with the functional characterization of MtFbZIPs supports the suggested conservation of the zinc deficiency response associated with Group 1 F-bZIPs, and the more variable evolutionary paths associated with Group 2. Overall, we provide novel insight on the mechanisms of response to zinc deficiency in , which contributes to developing strategies for improving zinc content in legume crops.

摘要

豆科植物中的锌缺乏响应由F组碱性区域亮氨酸拉链(F-bZIP)转录因子调控,并且有证据表明这种调控网络在陆地植物中具有进化保守性。关于作物物种锌稳态调控的基础知识将有助于提高它们的锌营养价值。豆类是富含蛋白质的作物,在全球范围内被用作传统饮食的一部分和动物饲料,因此是微量营养素生物强化的良好目标。在这里,我们在代表性豆科物种中鉴定了F-bZIP转录因子,并对来自[豆科物种名称]的两个F-bZIP进行了功能表征。结果表明,MtFbZIP1是[另一种植物名称]bZIP19和bZIP23的功能同源物,而MtFbZIP2在锌缺乏响应中不发挥作用。此外,对锌转运蛋白的Zrt/Irt样蛋白(ZIP)家族或编码产生锌配体烟酰胺的烟酰胺合酶的基因进行分析,支持了[豆科物种名称]中F-bZIP调控的锌缺乏响应的保守性。对豆科物种中富集的F-bZIP同源物的系统发育分析加强了分为两组的分支,其中MtFbZIP1和MtFbZIP2分别映射到第1组和第2组。这种系统发育与MtFbZIP的功能表征相结合,支持了与第1组F-bZIP相关的锌缺乏响应的保守性,以及与第2组相关的更多可变进化路径。总体而言,我们提供了关于[豆科物种名称]对锌缺乏响应机制的新见解,这有助于制定提高豆类作物锌含量的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82ad/9279927/21c453cf905d/fpls-13-916168-g001.jpg

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