揭示大豆花色的调控网络:洞察 GmMYBA3 和 GmMYBR1 的作用

Ruifang Gao, Yueqing Li, Yanan Wang, Xiaotong Shan, Siqi Yang, Ye Zhang, Saiyu Ma, Chunbao Zhang, Jianchun Qin, Li Wang, Xiang Gao
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引用次数: 0

摘要

花青素在开花植物的花粉保护和传粉媒介吸引方面发挥着至关重要的作用。然而,在大豆中,花色决定的机制以及花色素调节因子是否参与其他过程在很大程度上仍未得到解决()。在这项研究中,我们调查了大豆花中花青素生物合成的遗传成分和机制。分子和遗传研究揭示了两个拮抗调控因子--正激活因子 GmMYBA3 和负抑制因子 GmMYBR1--调节大豆花中花青素生物合成的基因表达。进一步的研究发现,GmMYBA3 和 GmMYBR1 之间存在由 GmTT8a 桥接的调控相互作用,凸显了大豆不同器官中花青素调控的复杂性。对其他大豆栽培品种的研究表明,GmMYBA3 和 GmMYBR1 在调控花色素生物合成相关基因方面具有普遍性,并被确定为白花颜色的关键决定因素。这项研究提供了大豆花色决定的分子机制,为大豆花的分子改造铺平了道路,从而有可能提高大豆花对非生物胁迫的抗性和对传粉昆虫的吸引力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unraveling the regulatory network of flower coloration in soybean: Insights into roles of GmMYBA3 and GmMYBR1
Anthocyanins play crucial roles in pollen protection and pollinator attraction in flowering plants. However, the mechanisms underlying flower color determination and whether floral anthocyanin regulators participate in other processes remain largely unresolved in soybeans (). In this study, we investigated the genetic components and mechanisms governing anthocyanin biosynthesis in soybean flowers. Molecular and genetic studies have characterized two antagonistic regulators, the positive activator GmMYBA3 and the negative repressor GmMYBR1, that modulate the gene expression of anthocyanin biosynthesis in soybean flowers. Further findings revealed a regulatory interplay between GmMYBA3 and GmMYBR1 bridged by GmTT8a, highlighting the complexity of anthocyanin regulation in different soybean organs. Exploration of additional soybean cultivars demonstrated the universality of GmMYBA3 and GmMYBR1 in regulating floral anthocyanin biosynthesis- related genes, with identified as a crucial determinant of white flower color. This study provides a molecular mechanism underlying soybean flower color determination, paving the way for the molecular modification of soybean flowers to probably enhance their resistance to abiotic stresses and attractiveness to pollinators.
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