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Control Efficacy of the Bt Maize Event DBN3601T Expressing Cry1Ab and Vip3Aa Proteins against Beet Armyworm, (Hübner), in China. | LitMetric

Control Efficacy of the Bt Maize Event DBN3601T Expressing Cry1Ab and Vip3Aa Proteins against Beet Armyworm, (Hübner), in China.

Plants (Basel)

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

Published: July 2024

AI Article Synopsis

  • The beet armyworm is a significant global pest affecting crops like maize, cotton, and soybean, and the effectiveness of Bt transgenic maize in controlling this pest is not well understood.
  • This study analyzed the levels of Cry1Ab and Vip3Aa toxins in a specific Bt maize (DBN3601T) and assessed their effectiveness against beet armyworm larvae in both lab and field settings.
  • Results indicated high mortality rates for the larvae, especially on younger maize tissues, and confirmed that DBN3601T maize significantly reduced pest density and damage in field trials, supporting its use for sustainable pest management in Asia.

Article Abstract

The beet armyworm, (Hübner), is a major pest of maize, cotton, soybean, and many other crops globally. Despite the widespread deployment of Bt transgenic maize for pest control worldwide, the efficacy of Bt lepidopteran-resistant transgenic maize in managing remains rarely studied. In this study, we quantified the expression level of pyramided Cry1Ab and Vip3Aa toxins in Bt maize (event DBN3601T) and evaluated their control efficiency against under both laboratory and field conditions. The enzyme-linked immunosorbent assay (ELISA) results showed that the expression levels of Cry1Ab and Vip3Aa proteins in DBN3601T maize tissues followed a decreasing order as follows: V5-leaf > V8-leaf > VT-tassel > R2-kernel > R1-silk. Diet-overlay assay results showed that the LC values of Cry1Ab and Vip3Aa proteins against larvae were 11.66 ng/cm and 27.74 ng/cm, respectively, with corresponding GIC values at 1.59 ng/cm and 7.93 ng/cm. Bioassay using various tissues of the DBN3601T maize indicated that after 7 days of infestation, mortality rates of neonates and third-instar larvae ranged from 86% to 100% and 58% to 100%, respectively. Mortality was highest on V5 and V8 leaves, followed by R2-kernel, VT-tassel, and R1-silk. Field trials demonstrated that DBN3601T maize exhibited significantly lower larval density, damage rate, and leaf damage score compared to non-Bt maize. Field cage trial showed that the control efficacy of DBN3601T maize at the vegetative stage could reach 98%. These findings provide a theoretical basis for utilizing Bt transgenic maize to enhance the sustainable management of in Asia.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11281214PMC
http://dx.doi.org/10.3390/plants13141933DOI Listing

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