Division of Microbiology, ICAR-Indian Agriculture Research Institute, New Delhi, India.
Organic Agriculture Systems, ICAR-Indian Institute of Farming Systems Research, Meerut, Modipuram, India.
J Basic Microbiol. 2022 Feb;62(2):135-149. doi: 10.1002/jobm.202100463. Epub 2021 Nov 29.
The bacteria that colonize plant roots and enhance plant growth by various mechanisms are known as plant growth-promoting rhizobacteria (PGPR). The functions of rhizobacteria stand substantially unexplored and detailed insights into the aerobic rice ecosystem are yet to be examined. In this study, we have isolated rhizobacteria from rice varieties grown under aerobic conditions. Seed germination test showed that strain Ekn 03 was significantly effective in stimulating germination, enhancing shoot and root length, and increasing dry matter accumulation in treated rice plants as compared to the uninoculated plants. Under greenhouse conditions, strain Ekn 03 treated rice varieties showed an overall increase in plant height by 7.63%, dry matter accumulation by 16.23%, and total chlorophyll content by 76.47%. Soil acetylene reduction assay (ARA) (4.17 nmole ethylene/g soil/h) and in-planta ARA (4.2 × 10 nmole ethylene/mg fresh weight of plant/h) was significantly higher in Ekn 03 treated rice variety PB 1509 under aerobic conditions. Other rice varieties showed comparable performance on inoculation with strain Ekn 03. The endophytic and rhizospheric population of antibiotic tagged Ekn 03 was higher in the roots of PB 1509 (1.02 × 10 cfu/g and 5.8 × 10 cfu/g soil, respectively) compared to other rice varieties. 16S rDNA sequence analysis revealed that strain Ekn 03 was having 100% similarity with Pseudomonas protegens. This study suggests that strain Ekn 03 can be used as a microbial inoculant in rice plants under aerobic system of cultivation. This is the first report on the application of P. protegens as PGPR in rice.
定植于植物根系并通过各种机制促进植物生长的细菌被称为植物促生根际细菌(PGPR)。根际细菌的功能尚未得到充分研究,有氧水稻生态系统的详细情况仍有待研究。在这项研究中,我们从有氧条件下种植的水稻品种中分离出了根际细菌。种子发芽试验表明,与未接种的植物相比,菌株 Ekn 03 显著有效地刺激发芽,增加水稻植株的茎和根长,并增加处理后的水稻植株的干物质积累。在温室条件下,Ekn 03 处理的水稻品种的株高总体增加了 7.63%,干物质积累增加了 16.23%,总叶绿素含量增加了 76.47%。土壤乙炔还原测定(ARA)(4.17nmole乙烯/g土壤/h)和植物内 ARA(4.2×10nmole乙烯/mg植物鲜重/h)在有氧条件下用 Ekn 03 处理的 PB 1509 水稻品种中显著更高。其他水稻品种在接种 Ekn 03 时表现出类似的性能。抗生素标记的 Ekn 03 的内生和根际种群在 PB 1509 的根部更高(分别为 1.02×10cfu/g和 5.8×10cfu/g土壤),而在其他水稻品种中则较低。16S rDNA 序列分析表明,菌株 Ekn 03 与假单胞菌 protegens 具有 100%的相似度。本研究表明,菌株 Ekn 03 可作为有氧栽培系统中水稻植物的微生物接种剂。这是首次报道将 P. protegens 作为 PGPR 应用于水稻。