Xavier Gustavo Ribeiro, Jesus Ederson de Conceição, Dias Anelise, Coelho Marcia Reed Rodrigues, Molina Yulimar Castro, Rumjanek Norma Gouvêa
Embrapa Agrobiologia, Rodovia BR-465, Km 7, Seropédica 23897-970, RJ, Brazil.
Departamento de Fitotecnia, Instituto de Agronomia, Universidade Federal Rural do Rio de Janeiro, UFRRJ, Rodovia BR-465, Km 7, Seropédica 23890-000, RJ, Brazil.
Plants (Basel). 2023 Feb 20;12(4):954. doi: 10.3390/plants12040954.
Pulses provide distinct health benefits due to their low fat content and high protein and fiber contents. Their grain production reaches approximately 93,210 × 10 tons per year. Pulses benefit from the symbiosis with atmospheric N-fixing bacteria, which increases productivity and reduces the need for N fertilizers, thus contributing to mitigation of environmental impact mitigation. Additionally, the root region harbors a rich microbial community with multiple traits related to plant growth promotion, such as nutrient increase and tolerance enhancement to abiotic or biotic stresses. We reviewed the eight most common pulses accounting for almost 90% of world production: common beans, chickpeas, peas, cowpeas, mung beans, lentils, broad beans, and pigeon peas. We focused on updated information considering both single-rhizobial inoculation and co-inoculation with plant growth-promoting rhizobacteria. We found approximately 80 microbial taxa with PGPR traits, mainly sp., , sp., , and arbuscular mycorrhizal fungi, and that contributed to improve plant growth and yield under different conditions. In addition, new data on root, nodule, rhizosphere, and seed microbiomes point to strategies that can be used to design new generations of biofertilizers, highlighting the importance of microorganisms for productive pulse systems.
豆类因其低脂肪含量以及高蛋白和高纤维含量而具有显著的健康益处。其谷物年产量约达93210×10吨。豆类受益于与大气固氮细菌的共生关系,这提高了生产力并减少了氮肥需求,从而有助于减轻环境影响。此外,根部区域拥有丰富的微生物群落,具有多种与促进植物生长相关的特性,如增加养分以及增强对非生物或生物胁迫的耐受性。我们综述了占世界产量近90%的八种最常见豆类:普通菜豆、鹰嘴豆、豌豆、豇豆、绿豆、小扁豆、蚕豆和木豆。我们关注了考虑单一根瘤菌接种以及与促植物生长根际细菌共接种的最新信息。我们发现了大约80个具有促植物生长根际细菌特性的微生物分类群,主要是 属、 属、 属、 属以及丛枝菌根真菌,它们有助于在不同条件下改善植物生长和产量。此外,关于根、根瘤、根际和种子微生物组的新数据指出了可用于设计新一代生物肥料的策略,凸显了微生物对高产豆类系统的重要性。