2015Biological Agriculture & HorticultureRequires access

Characterization of plant growth promotingBacillusstrains and their potential as crop protectants againstPhytophthora capsiciin tomato

Rashmi Sharma, Anjali Chauhan, C. K. Shirkot

Open publisher page 24 citations

Abstract

Bacillus spp. are well known rhizosphere residents of many crops and usually show plant growth promoting (PGP) activities that include biocontrol capacity against some phytopathogenic fungi. A total of 20 PGP rhizobacterial strains belonging to the genus Bacillus, previously isolated from the rhizosphere of several crops, were evaluated for their efficacy against Phytophthora capsici causing root and crown rot of tomato. These isolates were characterized for their PGP traits and in vitro antibiosis. Based on their in vitro antibiosis, liquid based formulations of four isolates – S21 and S25 from tomato, B6 from apple and A10 from turmeric rhizosphere were used for in planta evaluation against P. capsici under net house conditions singly and in conjoint applications. Liquid based culture of strain S25 was found to be the most promising biocontrol treatment and reduced the disease severity by 83.3%. Conjoint application of four strains also had significant effect in achieving biocontrol efficacy of 66.7%. Inoculation with strain S25 and consortium of the four strains resulted in significant increase in most plant parameters including root length, shoot length, plant fresh weight and plant dry weight over uninoculated control. 16S rDNA and phylogenetic analysis showed that strain S25 exhibits 99% level of similarity with Bacillus subtilis. Therefore it was designated as B. subtilis strain CKTR. Hence liquid based culture of strain S25 can be used as a promising antagonistic agent for management of Phytophthora blight. The effectiveness of the strain under field conditions and modes of action at the molecular level needs to be explored.

About this research paper

What this paper is about

Bacillus spp. are well known rhizosphere residents of many crops and usually show plant growth promoting (PGP) activities that include biocontrol capacity against some phytopathogenic fungi. A total of 20 PGP rhizobacterial strains belonging to the genus Bacillus, previously isolated from the rhizosphere of several crops, were evaluated for their efficacy against Phytophthora capsici causing root and crown rot of tomato. These isolates were characterized for their PGP traits and in vitro antibiosis. Based on their in vitro antibiosis, liquid based formulations of four isolates – S21 and S25 from tomato, B6 from apple and A10 from turmeric rhizosphere were used for in planta evaluation against P. capsici under net house conditions singly and in conjoint applications. Liquid based culture of strain S25 was found to be the most promising biocontrol treatment and reduced the disease severity by 83.3%. Conjoint application of four strains also had significant effect in achieving biocontrol efficacy of 66.7%. Inoculation with strain S25 and consortium of the four strains resulted in significant increase in most plant parameters including root length, shoot length, plant fresh weight and plant dry weight over uninoculated control. 16S rDNA and phylogenetic analysis showed that strain S25 exhibits 99% level of similarity with Bacillus subtilis. Therefore it was designated as B. subtilis strain CKTR. Hence liquid based culture of strain S25 can be used as a promising antagonistic agent for management of Phytophthora blight. The effectiveness of the strain under field conditions and modes of action at the molecular level needs to be explored.

Why it matters

OpenAlex reports 24 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Bacillus spp. are well known rhizosphere residents of many crops and usually show plant growth promoting (PGP) activities that include biocontrol capacity against some phytopathogenic fungi. A total of 20 PGP rhizobacterial strains belonging to the genus Bacillus, previously isolated from the rhizosphere of several crops, were evaluated for their efficacy against Phytophthora capsici causing root and crown rot of tomato. These isolates were characterized for their PGP traits and in vitro antibiosis. Based on their in vitro antibiosis, liquid based formulations of four isolates – S21 and S25 from tomato, B6 from apple and A10 from turmeric rhizosphere were used for in planta evaluation against P. capsici under net house conditions singly and in conjoint applications. Liquid based culture of strain S25 was found to be the most promising biocontrol treatment and reduced the disease severity by 83.3%. Conjoint application of four strains also had significant effect in achieving biocontrol efficacy of 66.7%. Inoculation with strain S25 and consortium of the four strains resulted in significant increase in most plant parameters including root length, shoot length, plant fresh weight and plant dry weight over uninoculated control. 16S rDNA and phylogenetic analysis showed that strain S25 exhibits 99% level of similarity with Bacillus subtilis. Therefore it was designated as B. subtilis strain CKTR. Hence liquid based culture of strain S25 can be used as a promising antagonistic agent for management of Phytophthora blight. The effectiveness of the strain under field conditions and modes of action at the molecular level needs to be explored.

Key concepts: Antibiosis, Rhizosphere, Phytophthora capsici, Biology, Phytophthora, Biological pest control, Rhizobacteria, Fungicide

Related papers

Back to paper searchBrowse research topicsOriginal source
Characterization of plant growth promotingBacillusstrains and their potential as crop protectants againstPhytophthora capsiciin tomato — Research Paper | ScholarLens