College of Natural Resources and Environment, Northwest A&F University, Yangling 712100, China.
College of Natural Resources and Environment, Northwest A&F University, Yangling 712100, China.
Food Res Int. 2023 Apr;166:112587. doi: 10.1016/j.foodres.2023.112587. Epub 2023 Feb 9.
Plant growth-promoting rhizobacteria, such as Streptomyces pactum Act12, promote crop growth and stress resistance, but their contribution to fruit quality is still poorly understood. Herein we conducted a field experiment to ascertain the effects of S. pactum Act12-mediated metabolic reprogramming and underlying mechanisms in pepper (Capsicum annuum L.) fruit based on widely targeted metabolomic and transcriptomic profiling. We additionally performed metagenomic analysis to elucidate the potential relationship between S. pactum Act12-mediated reshaping of rhizosphere microbial communities and pepper fruit quality. Soil inoculation with S. pactum Act12 considerably increased the accumulation of capsaicinoids, carbohydrates, organic acids, flavonoids, anthraquinones, unsaturated fatty acids, vitamins, and phenolic acids in pepper fruit samples. Consequently, fruit flavor, taste, and color were modified, accompanied by elevated contents of nutrients and bioactive compounds. Increased microbial diversity and recruitment of potentially beneficial taxa were observed in inoculated soil samples, with crosstalk between microbial gene functions and pepper fruit metabolism. The reformed structure and function of rhizosphere microbial communities were closely associated with pepper fruit quality. Our findings indicate that S. pactum Act12-mediated interactions between rhizosphere microbial communities and pepper plants are responsible for intricate fruit metabolic reprogramming patterns, which enhance not only overall fruit quality but also consumer acceptability.
植物促生根际细菌,如链霉菌 pactum Act12,可促进作物生长和抗逆性,但它们对果实品质的贡献仍知之甚少。在此,我们通过广泛的靶向代谢组学和转录组学分析,进行了田间试验,以确定链霉菌 pactum Act12 介导的代谢重编程及其在辣椒果实中的潜在机制。此外,我们还进行了宏基因组分析,以阐明链霉菌 pactum Act12 介导的根际微生物群落重塑与辣椒果实品质之间的潜在关系。土壤接种链霉菌 pactum Act12 可显著增加辣椒果实样本中辣椒素类、碳水化合物、有机酸、类黄酮、蒽醌、不饱和脂肪酸、维生素和酚酸的积累。因此,果实的风味、口感和颜色发生了改变,同时营养物质和生物活性化合物的含量也有所提高。在接种土壤样本中观察到微生物多样性增加和潜在有益分类群的招募,微生物基因功能与辣椒果实代谢之间存在相互作用。根际微生物群落的改组结构和功能与辣椒果实品质密切相关。我们的研究结果表明,链霉菌 pactum Act12 介导的根际微生物群落与辣椒植物之间的相互作用是导致复杂果实代谢重编程模式的原因,这不仅提高了整体果实品质,还提高了消费者的接受度。