...
首页> 外文期刊>Journal of Plant Growth Regulation >Correlation Study Between Biochemical and Molecular Pathways of Trichoderma harzianum Recombinant Strains on Plant Growth and Health
【24h】

Correlation Study Between Biochemical and Molecular Pathways of Trichoderma harzianum Recombinant Strains on Plant Growth and Health

机译:哈茨木霉重组菌株生化与分子通路对植物生长健康的相关性研究

获取原文
获取原文并翻译 | 示例

摘要

The genus of Trichoderma are mostly found in soil. Trichoderma species are known as probiotic with biocontrol and biofertilizer activity. They are producers of secondary metabolites like volatile organic compounds (VOCs) with antifungal, antibacterial, and growth promoter properties. Trichoderma VOCs can induce resistance to plant pathogens leading to improved plant growth and health. In this study, we compared the performance of Trichoderma harzianum recombinant strains (T13 and T15), containing chimeric chit42 with Chitin Binding Domain (ChBD) and wild-type (Tw) strain on plant growth promotion. To achieve this goal, the ability of strains in plant growth-promoting (production of IAA and siderophore) and fungal gene expression involved in biocontrol and biofertilizer activity, as well as, VOCs from T. harzianum strains (wild-type and recombinants) by headspace gas chromatography-mass spectrometry (GC-SPME) have been investigated. In addition, bean seeds were exposed to the T. harzianum strains in a shared atmosphere. In addition to growth indices (root fresh and dry weight, root length, and lateral root number), expression of root growth-related genes was measured by qTR-PCR. The results showed that recombinant strains had increased ability to produce IAA and siderophore. In addition, T. harzianum genes expression analysis demonstrated an upregulation in biocontrol and biofertilizer-associated genes in T13 and T15 strains. VOCs profile of strains revealed a total of 11, 57, and 29 metabolites from the Tw, T15, and T13, respectively. Most of the VOCs produced from T13 and T15 had growth enhancement and biocontrol activity, respectively, on the plant. The diversity of VOCs from T. harzianum recombinant strains (T13 and T15) involved in growth-promoting and biocontrol activity, was higher than the Tw strain. These compounds might work synergistically to promote growth, and enhance biocontrol and antifungal activity, and thus, recombinant strains with higher diversity of VOCs might be more effective than Tw. Plant phenotypic characterization and root genes expression showed that the recombinant strains, T13 particularly, were effective in growth-promoting compared to the Tw strain. In this study, we observed a positive correlation among the production of secondary metabolite and molecular pathways of recombinant strains on plant growth activity. This finding can create a link between basic and applied studies in agriculture. GRAPHICS .
机译:木霉属主要存在于土壤中。木霉菌被称为具有生物防治和生物肥料活性的益生菌。它们是次生代谢物的生产者,如具有抗真菌、抗菌和生长促进剂特性的挥发性有机化合物 (VOC)。木霉挥发性有机化合物可以诱导对植物病原体的抗性,从而改善植物的生长和健康。本研究比较了含有嵌合chit42的哈茨木霉重组菌株(T13和T15)与几丁质结合域(ChBD)和野生型(Tw)菌株对植物生长促进的影响。为了实现这一目标,通过顶空气相色谱-质谱(GC-SPME)研究了植物促生长(产生IAA和铁载体)和真菌基因表达参与生物防治和生物肥料活性的能力,以及来自哈茨亚虫菌株(野生型和重组体)的VOCs。此外,豆类种子在共享气氛中暴露于哈茨亚虫菌株。除生长指标(根鲜重和干重、根长和侧根数)外,还通过qTR-PCR检测根系生长相关基因的表达。结果表明,重组菌株产生IAA和铁载体的能力增强。此外,哈茨亚虫基因表达分析表明,T13和T15菌株的生物防治和生物肥料相关基因上调。菌株的VOCs谱显示,Tw、T15和T13分别有11、57和29种代谢物。T13和T15产生的VOCs大部分分别对植物具有生长增强和生防活性。哈茨亚虫重组菌株(T13和T15)的VOCs多样性均高于Tw菌株。这些化合物可能协同促进生长,增强生物防治和抗真菌活性,因此,VOCs多样性更高的重组菌株可能比Tw更有效。 植物表型表型表征和根系基因表达表明,与Tw菌株相比,重组菌株(尤其是T13)在促进生长方面更有效。在这项研究中,我们观察到次生代谢产物的产生和重组菌株的分子途径与植物生长活性呈正相关。这一发现可以在农业基础研究和应用研究之间建立联系。[图形] .

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号