Your browser doesn't support javascript.
loading
Larvicidal, growth inhibitory and biochemical effects of soil bacterium, Pseudomonas sp. EN4 against Spodoptera litura (Fab.) (Lepidoptera: Noctuidae).
Sarkhandia, Sunaina; Devi, Meena; Sharma, Geetika; Mahajan, Rohit; Chadha, Pooja; Saini, Harvinder Singh; Kaur, Sanehdeep.
Affiliation
  • Sarkhandia S; Department of Zoology, Guru Nanak Dev University, Punjab, Amritsar, 143005, India.
  • Devi M; Department of Zoology, Guru Nanak Dev University, Punjab, Amritsar, 143005, India.
  • Sharma G; Department of Zoology, Guru Nanak Dev University, Punjab, Amritsar, 143005, India.
  • Mahajan R; Department of Microbiology, Guru Nanak Dev University, Punjab, Amritsar, 143005, India.
  • Chadha P; Department of Zoology, Guru Nanak Dev University, Punjab, Amritsar, 143005, India.
  • Saini HS; Department of Microbiology, Guru Nanak Dev University, Punjab, Amritsar, 143005, India.
  • Kaur S; Department of Zoology, Guru Nanak Dev University, Punjab, Amritsar, 143005, India. sanehsaini@gmail.com.
BMC Microbiol ; 23(1): 95, 2023 04 03.
Article in En | MEDLINE | ID: mdl-37013477
ABSTRACT

BACKGROUND:

Spodoptera litura (Fabricius) (Lepidoptera Noctuidae) also known as tobacco caterpillar, is one of the most serious polyphagous pests that cause economic losses to a variety of commercially important agricultural crops. Over the past few years, many conventional insecticides have been used to control this pest. However, the indiscriminate use of these chemicals has led to development of insecticide resistant populations of S. litura in addition to harmful effects on environment. Due to these ill effects, the emphasis is being laid on alternative eco-friendly control measures. Microbial control is one of the important components of integrated pest management. Thus, in search for novel biocontrol agents, the current work was carried out with the aim to evaluate the insecticidal potential of soil bacteria against S. litura.

RESULTS:

Among the tested soil bacterial isolates (EN1, EN2, AA5, EN4 and R1), maximum mortality (74%) was exhibited by Pseudomonas sp. (EN4). The larval mortality rate increased in a dose-dependent manner. Bacterial infection also significantly delayed the larval development, reduced adult emergence, and induced morphological deformities in adults of S. litura. Adverse effects were also detected on various nutritional parameters. The infected larvae showed a significant decrease in relative growth and consumption rate as well as efficiency of conversion of ingested and digested food to biomass. Histopathological studies indicated damage to the midgut epithelial layer of larvae due to the consumption of bacteria treated diet. The infected larvae also showed a significantly decreased level of various digestive enzymes. Furthermore, exposure to Pseudomonas sp. also caused DNA damage in the hemocytes of S. litura larvae.

CONCLUSION:

Adverse effects of Pseudomonas sp. EN4 on various biological parameters of S. litura indicate that this soil bacterial strain may be used as an effective biocontrol agent against insect pests.
Subject(s)
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Insecticides / Moths Limits: Animals Language: En Journal: BMC Microbiol Journal subject: MICROBIOLOGIA Year: 2023 Document type: Article Affiliation country: India

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Insecticides / Moths Limits: Animals Language: En Journal: BMC Microbiol Journal subject: MICROBIOLOGIA Year: 2023 Document type: Article Affiliation country: India
...