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GmIQD63作为一种新型的与GmCDPK38相互作用的蛋白,在大豆抵御小地老虎的过程中发挥作用。

GmIQD63 functions as a novel GmCDPK38-interacting protein in soybean defense against the common cutworm.

作者信息

Li Xiao, Su Fenglin, Xiang Junjie, Zhang Mengshan, Chen Xinyao, Hu Dezhou, Yu Deyue, Wang Hui

机构信息

National Center for Soybean Improvement, State Key Laboratory of Crop Genetics & Germplasm Enhancement and Utilization, Nanjing Agricultural University, Nanjing, China.

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

出版信息

Planta. 2025 Sep 19;262(5):103. doi: 10.1007/s00425-025-04820-z.

Abstract

GmIQD63 interacts with GmCDPK38 to mediate soybean defense against the common cutworm, and its elite haplotype enhances resistance without a significant yield penalty, providing a potential breeding resource. Soybean (Glycine max) production is severely threatened by the common cutworm (Spodoptera litura Fabricius), necessitating the identification of resistance genes for molecular breeding. Calcium-dependent protein kinases (CDPKs) are critical regulators of plant defense responses; however, the substrate network of GmCDPK38, a negative regulator of soybean resistance to this pest, remains elusive. In this study, we combined phosphoproteomic analysis of the gmcdpk38 mutants with bimolecular fluorescence complementation assays to identify 12 potential GmCDPK38-interacting partners. Among these, GmIQD63, an IQ67 domain protein homologous to Arabidopsis AtIQD1 (a known insect resistance regulator), emerged as a key candidate. The physical interaction between GmCDPK38 and GmIQD63 was further validated through yeast two-hybrid and luciferase complementation imaging assays. Sequence analysis revealed that GmIQD63 encodes a 477-amino acid polypeptide containing multiple stress- and hormone-responsive cis-acting regulatory elements in its promoter region, along with a conserved IQ67 domain characteristic of plant IQD IIIb subfamily members. Subcellular localization experiments confirmed its plasma membrane targeting. Functional characterization via RNA interference-mediated silencing of GmIQD63 in soybean hairy roots significantly enhanced susceptibility to the common cutworm. Population genetic analysis of 341 soybean accessions uncovered natural variation in GmIQD63, with haplotype H5 in wild soybeans conferring enhanced resistance to the common cutworm without compromising agronomic traits. Notably, H5 is rare in cultivated soybeans, suggesting its untapped potential for breeding insect-resistant varieties. This study identifies GmIQD63 as a novel GmCDPK38-interacting partner essential for soybean defense and provides a molecular foundation for developing insect-resistant cultivars.

摘要

GmIQD63与GmCDPK38相互作用,介导大豆对斜纹夜蛾的防御,其优良单倍型可增强抗性且不会对产量造成显著损失,提供了一种潜在的育种资源。大豆(Glycine max)生产受到斜纹夜蛾(Spodoptera litura Fabricius)的严重威胁,因此需要鉴定用于分子育种的抗性基因。钙依赖性蛋白激酶(CDPKs)是植物防御反应的关键调节因子;然而,大豆对这种害虫抗性的负调节因子GmCDPK38的底物网络仍不清楚。在本研究中,我们将gmcdpk38突变体的磷酸化蛋白质组分析与双分子荧光互补分析相结合,以鉴定12个潜在的GmCDPK38相互作用伙伴。其中,与拟南芥AtIQD1(一种已知的抗虫调节因子)同源的IQ67结构域蛋白GmIQD63成为关键候选者。通过酵母双杂交和荧光素酶互补成像分析进一步验证了GmCDPK38与GmIQD63之间的物理相互作用。序列分析表明,GmIQD63编码一个477个氨基酸的多肽,其启动子区域含有多个应激和激素响应顺式作用调控元件,以及植物IQD IIIb亚家族成员特有的保守IQ67结构域。亚细胞定位实验证实其定位于质膜。通过RNA干扰介导的大豆毛状根中GmIQD63的沉默进行功能表征,显著增强了对斜纹夜蛾的易感性。对341份大豆种质的群体遗传分析揭示了GmIQD63的自然变异,野生大豆中的单倍型H5赋予对斜纹夜蛾增强的抗性,而不影响农艺性状。值得注意的是,H5在栽培大豆中很少见,表明其在培育抗虫品种方面具有未开发的潜力。本研究鉴定出GmIQD63是大豆防御所必需的新型GmCDPK38相互作用伙伴,并为培育抗虫品种提供了分子基础。

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