4.7 Article

Evaluating the Endophytic Activities of Beauveria bassiana on the Physiology, Growth, and Antioxidant Activities of Extracts of Lettuce (Lactuca sativa L.)

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PLANTS-BASEL
卷 10, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/plants10061178

关键词

Myzus persicae; Beauveria bassiana; Lactuca sativa; endophytic; colonization

资金

  1. CPUT [URF R166]
  2. CPUT

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Endophytic entomopathogenic fungi like Beauveria bassiana can improve yield and quality of lettuce by promoting growth and protecting against insect infestations. This study found that B. bassiana was pathogenic to aphids, increased micro-nutrient tissue contents, and enhanced antioxidant activities in plants, highlighting its potential for biofortification of nutritive and medicinal qualities.
Endophytic entomopathogens have growth promoting, nutrient fortifying, and anti-insect properties that could improve the yield and quality of lettuce (Lactuca sativa L.). Lactuca sativa is a vegetable crop with high demand; however, it is susceptible to aphid infestations. This study's objectives were to assess the pathogenicity of Beauveria bassiana (strain: SM3) (Bals.) Vuil. (Hypocreales) against Myzus persicae Sulzer, tissue colonization of lettuce by conidia of B. bassiana, as well as the effects of fungal inoculation on growth, tissue nutrient content, and proximate composition of the lettuce plants. Furthermore, the involvement of tissue nutrients in mediating the influence of endophytic fungus on the plant traits was examined. Insects and plants were exposed to four fungal conidial concentrations: 0, 1 x 10(6), 1 x 10(7) and 1 x 10(8) conidia mL(-1) in an anti-insect bioassay and a greenhouse experiment, respectively. The B. bassiana strain was pathogenic against M. persicae, inducing mean insect mortality of 78% at the highest concentration (1 x 10(8) conidia mL(-1)). The B. bassiana endophytically colonized up to 76% of plants exposed to 1 x 10(8) conidia mL(-1). Crown size and plant height varied significantly among treatments. However, the plant fresh and dry weights and nutrient elements N, P, K, Ca, and Mg did not vary significantly among treatments. Among the plant macronutrients assessed, only tissue carbon content was significantly (p < 0.01) affected by conidial treatments. The tissue C and Cu contents significantly correlated with the antioxidant capacity of the lettuce plants. Most of the micronutrients, viz. Mn, Fe, Cu, and B were remarkably higher (p < 0.05) in the fungus-treated plants than in the control plants. The antioxidant capacity (FRAP and TEAC) of plant extracts varied significantly (p < 0.001) among treatments, with the highest conidial treatment yielding the most increased antioxidant activity. In conclusion, the B. bassiana strain was endophytic to lettuce, pathogenic against M. persicae, and induced increased micro-nutrient tissue contents and antioxidant activities. This study demonstrated that B. bassiana could be potentially used in the biofortification of nutritive and medicinal qualities of plants.

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