真菌 Metarhizium robertsii 在根瘤菌层和根瘤菌圈定殖过程中对植物源糖和脂质的利用是耦合的

IF 2.4 3区 生物学 Q3 GENETICS & HEREDITY
Jin Dai , Xingyuan Tang , Congcong Wu, Shuxing Liu, Wubin Mi, Weiguo Fang
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引用次数: 0

摘要

植物衍生的糖类和脂类是植物相关真菌的主要营养来源。然而,在共生关系的发展过程中,宿主来源的糖类和脂类的利用关系仍然未知。在这里,我们发现罗伯茨元胞真菌(Metarhizium robertsii)也需要植物来源的脂质来发展与植物的共生关系。脂肪酸结合蛋白 FABP1 和 FABP2 对植物源脂类的利用非常重要,因为缺失 Fabp1 和 Fabp2 会显著降低拟南芥在玉米和拟南芥根瘤和根瘤层的定殖能力。删除 Fabp1 和 Fabp2 可通过上调六个糖转运体提高糖的利用率,这也解释了为什么删除在植物源糖利用中起重要作用的单糖转运体基因 Mst1 不会影响双基因缺失突变体 ΔFabp1::ΔFabp2 在植物根部定殖的能力。FABP1 和 FABP2 也存在于其他与植物相关的 Metarhizium 物种中,并且在以番茄根渗出液为唯一碳源和氮源的培养基中高表达,这表明它们对这些物种与植物建立共生关系也很重要。总之,我们发现罗伯特孢霉在根瘤和根瘤层定植过程中对植物源糖和脂质的利用是耦合的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of plant-derived sugars and lipids are coupled during colonization of rhizoplane and rhizosphere by the fungus Metarhizium robertsii

Plant-derived sugars and lipids are key nutritional sources for plant associated fungi. However, the relationship between utilization of host-derived sugars and lipids during development of the symbiotic association remains unknown. Here we show that the fungus Metarhizium robertsii also needs plant-derived lipids to develop symbiotic relationship with plants. The fatty acid binding proteins FABP1 and FABP2 are important for utilization of plant-derived lipids as the deletion of Fabp1 and Fabp2 significantly reduced the ability of M. robertsii to colonize rhizoplane and rhizosphere of maize and Arabidopsis thaliana. Deleting Fabp1 and Fabp2 increased sugar utilization by upregulating six sugar transporters, and this explains why deleting the monosaccharide transporter gene Mst1, which plays an important role in utilization of plant-derived sugars, had no impact on the ability of the double-gene deletion mutant ΔFabp1::ΔFabp2 to colonize plant roots. FABP1 and FABP2 were also found in other plant-associated Metarhizium species, and they were highly expressed in the medium using the tomato root exudate as the sole carbon and nitrogen source, suggesting that they could be also important for these species to develop symbiotic relationship with plants. In conclusion, we discovered that utilization of plant-derived sugars and lipids are coupled during colonization of rhizoplane and rhizosphere by M. robertsii.

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来源期刊
Fungal Genetics and Biology
Fungal Genetics and Biology 生物-遗传学
CiteScore
6.20
自引率
3.30%
发文量
66
审稿时长
85 days
期刊介绍: Fungal Genetics and Biology, formerly known as Experimental Mycology, publishes experimental investigations of fungi and their traditional allies that relate structure and function to growth, reproduction, morphogenesis, and differentiation. This journal especially welcomes studies of gene organization and expression and of developmental processes at the cellular, subcellular, and molecular levels. The journal also includes suitable experimental inquiries into fungal cytology, biochemistry, physiology, genetics, and phylogeny. Fungal Genetics and Biology publishes basic research conducted by mycologists, cell biologists, biochemists, geneticists, and molecular biologists. Research Areas include: • Biochemistry • Cytology • Developmental biology • Evolutionary biology • Genetics • Molecular biology • Phylogeny • Physiology.
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