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过表达大豆球蛋白(GmGlb1-1)基因降低植物对南方根结线虫的易感性。

Overexpression of a soybean Globin (GmGlb1-1) gene reduces plant susceptibility to Meloidogyne incognita.

机构信息

Embrapa Genetic Resources and Biotechnology, PqEB Final, W5 Norte, PO Box 02372, Brasília, DF, 70770-917, Brazil.

National Institute of Science and Technology, INCT Plant Stress Biotech, EMBRAPA, Brasília, DF, 70770-917, Brazil.

出版信息

Planta. 2022 Sep 16;256(4):83. doi: 10.1007/s00425-022-03992-2.

Abstract

The overexpression of the GmGlb1-1 gene reduces plant susceptibility to Meloidogyne incognita. Non-symbiotic globin class #1 (Glb1) genes are expressed in different plant organs, have a high affinity for oxygen, and are related to nitric oxide (NO) turnover. Previous studies showed that soybean Glb1 genes are upregulated in soybean plants under flooding conditions. Herein, the GmGlb1-1 gene was identified in soybean as being upregulated in the nematode-resistant genotype PI595099 compared to the nematode-susceptible cultivar BRS133 during plant parasitism by Meloidogyne incognita. The Arabidopsis thaliana and Nicotiana tabacum transgenic lines overexpressing the GmGlb1-1 gene showed reduced susceptibility to M. incognita. Consistently, gall morphology data indicated that pJ2 nematodes that infected the transgenic lines showed developmental alterations and delayed parasitism progress. Although no significant changes in biomass and seed yield were detected, the transgenic lines showed an elongated, etiolation-like growth under well-irrigation, and also developed more axillary roots under flooding conditions. In addition, transgenic lines showed upregulation of some important genes involved in plant defense response to oxidative stress. In agreement, higher hydrogen peroxide accumulation and reduced activity of reactive oxygen species (ROS) detoxification enzymes were also observed in these transgenic lines. Thus, based on our data and previous studies, it was hypothesized that constitutive overexpression of the GmGlb1-1 gene can interfere in the dynamics of ROS production and NO scavenging, enhancing the acquired systemic acclimation to biotic and abiotic stresses, and improving the cellular homeostasis. Therefore, these collective data suggest that ectopic or nematode-induced overexpression, or enhanced expression of the GmGlb1-1 gene using CRISPR/dCas9 offers great potential for application in commercial soybean cultivars aiming to reduce plant susceptibility to M. incognita.

摘要

GmGlb1-1 基因的过表达降低了植物对南方根结线虫的易感性。非共生珠蛋白类 #1(Glb1)基因在不同的植物器官中表达,对氧气具有高亲和力,并且与一氧化氮(NO)转化有关。先前的研究表明,在水淹条件下,大豆 Glb1 基因在大豆植株中上调。在此,与线虫敏感品种 BRS133 相比,在南方根结线虫寄生期间,大豆中的 GmGlb1-1 基因在抗线虫基因型 PI595099 中上调。过表达 GmGlb1-1 基因的拟南芥和烟草转基因株系对南方根结线虫的敏感性降低。一致地,感染转基因株系的 pJ2 线虫表现出发育改变和寄生进展延迟的表型。尽管未检测到生物量和种子产量的显著变化,但在充分灌溉下,转基因株系表现出伸长的、黄化样生长,并且在水淹条件下也发育出更多的侧根。此外,转基因株系中一些参与植物对氧化应激防御反应的重要基因上调。相应地,在这些转基因株系中也观察到过氧化氢积累增加和活性氧(ROS)解毒酶活性降低。因此,根据我们的数据和以前的研究,假设 GmGlb1-1 基因的组成型过表达可以干扰 ROS 产生和 NO 清除的动力学,增强对生物和非生物胁迫的获得性系统适应,并改善细胞内稳态。因此,这些综合数据表明,异位或线虫诱导的过表达,或使用 CRISPR/dCas9 增强 GmGlb1-1 基因的表达,为应用于旨在降低植物对南方根结线虫易感性的商业大豆品种提供了巨大潜力。

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