State Key Laboratory of Chemo/Biosensing and Chemometrics, Hunan Province Key Laboratory of Plant Functional Genomics and Developmental Regulation, College of Biology, Hunan Universitygrid.67293.39, Changsha, Hunan, China.
State Key Laboratory of Hybrid Rice, Yahua Seeds Science Academy of Hunan, Changsha, Hunan, China.
mBio. 2021 Aug 31;12(4):e0156621. doi: 10.1128/mBio.01566-21. Epub 2021 Aug 10.
Plants fine-tune the growth-defense trade-off to survive when facing pathogens. Meanwhile, plant-associated microbes, such as the endophytes inside plant tissues, can benefit plant growth and stress resilience. However, the mechanisms for the beneficial microbes to increase stress resistance with little yield penalty in host plants remain poorly understood. In the present study, we report that endophytic Streptomyces hygroscopicus OsiSh-2 can form a sophisticated interaction with host rice, maintaining cellular homeostasis under pathogen-infection stress, and optimize plant growth and disease resistance in rice. Four-year field trials consistently showed that OsiSh-2 could boost host resistance to rice blast pathogen Magnaporthe oryzae while still maintaining a high yield. The integration of the proteomic, physiological, and transcriptional profiling analysis revealed that OsiSh-2 induced rice defense priming and controlled the expression of energy-consuming defense-related proteins, thus increasing the defense capability with the minimized costs of plant immunity. Meanwhile, OsiSh-2 improved the chloroplast development and optimally maintained the expression of proteins related to plant growth under pathogen stress, thus promoting the crop yield. Our results provided a representative example of an endophyte-mediated modulation of disease resistance and fitness in the host plant. The multilayer effects of OsiSh-2 implicate a promising future of using endophytic actinobacteria for disease control and crop yield promotion. Under disease stress, activation of defense response in plants often comes with the cost of a reduction in growth and yield, which is referred as the growth-defense trade-off. The microorganisms which can be recruited by plants to mitigate the growth-defense trade-off are of great value in crop breeding. Here, we reported a rice endophytic actinomycetes Streptomyces hygroscopicus OsiSh-2, which can improve host performances on resistance to rice blast while still sustaining high yield in the 4-year field trials. The proteomic, physiological, and transcriptional profiling data offer insights into the molecular basis underlying the balancing between defense and growth in OsiSh-2-rice symbiont. The findings provide an example for the endophyte-mediated modulation of growth-defense trade-offs in plants and indicated the promising application of endophytic actinobacterial strains in agriculture to breed "microbe-optimized crops."
植物在面对病原体时会微调生长-防御权衡,以求得生存。与此同时,植物相关的微生物,如植物组织内的内生菌,可以促进植物生长和增强抗逆能力。然而,有益微生物在宿主植物中提高抗逆性而几乎不牺牲产量的机制仍知之甚少。在本研究中,我们报告称,内生链霉菌 hygroscopicus OsiSh-2 可以与宿主水稻形成复杂的相互作用,在病原体感染胁迫下维持细胞内稳态,并优化水稻的生长和抗病性。四年的田间试验一致表明,OsiSh-2 可以增强宿主对稻瘟病菌 Magnaporthe oryzae 的抗性,同时保持高产量。蛋白质组学、生理学和转录组分析的综合结果表明,OsiSh-2 诱导了水稻防御的启动,并控制了能量消耗型防御相关蛋白的表达,从而以最小的植物免疫成本提高了防御能力。同时,OsiSh-2 改善了叶绿体的发育,并在病原体胁迫下最佳地维持了与植物生长相关的蛋白的表达,从而促进了作物产量。我们的结果提供了一个内生菌介导的宿主植物抗病性和适应性调节的典型范例。OsiSh-2 的多层作用暗示了利用内生放线菌控制疾病和提高作物产量的广阔前景。
在疾病胁迫下,植物防御反应的激活常常伴随着生长和产量的降低,这被称为生长-防御权衡。能够被植物招募来减轻生长-防御权衡的微生物在作物育种中具有重要价值。在这里,我们报道了一种水稻内生放线菌吸水链霉菌 OsiSh-2,它可以提高宿主对稻瘟病的抗性,同时在四年的田间试验中仍保持高产量。蛋白质组学、生理学和转录组学数据提供了关于 OsiSh-2-水稻共生体中防御和生长之间平衡的分子基础的见解。这些发现为植物中内生菌介导的生长-防御权衡的调节提供了一个范例,并表明内生放线菌菌株在农业中的应用具有很大的潜力,可以培育“微生物优化作物”。