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Review Open access Jul 2026

Survey, molecular characterisation and in vitro management of sugarcane red rot (Colletotrichum falcatum)

Red rot of sugarcane, caused by Colletotrichum falcatum Went (formerly Glomerella tucumanensis), is a highly destructive disease that significantly reduces sugarcane yield and quality. A field survey was conducted from August to October during 2024–2025 in five blocks of Muzaffarnagar district, Uttar Pradesh, to assess disease incidence. The highest incidence was recorded in Jansath block (11.23 %), followed by Sadar (11.13 %), while Bhagra and Shahpur each recorded 6.09 %. The lowest incidence was observed in the Purkaji block (4.71 %). Molecular identification using PCR amplification of the 18S rDNA region with universal primers (ITS1, ITS4) and specific primers (Bt-1, Bt-2) confirmed the presence of C. falcatum, producing amplicons of 570 bp and 750 bp. In vitro evaluation of biocontrol agents using the dual-culture technique revealed that Trichoderma harzianum exhibited the highest inhibition (88.89 %), followed by Trichoderma viride (80.00 %), Bacillus subtilis (72.22 %) and Pseudomonas fluorescens (66.66 %) at 9 days post-incubation. Fungicides tested at 100, 200 and 300 ppm using the food-poisoned technique showed that Carbendazim 50 % WP and Azoxystrobin 23 % SC achieved 100 % inhibition at all concentrations. Propiconazole 25 % EC and hexaconazole 5 % SC showed moderate inhibition. The findings highlight the potential use of effective biocontrol agents and fungicides for integrated management of red rot in sugarcane. These results may assist farmers and researchers in developing sustainable disease management strategies, while further field validation and long-term studies are required to confirm their effectiveness under diverse agro-climatic conditions.

C. Vikrant, S. Shashank, B. Rinku et al. · 0 citations
Open access Jul 2026

Integrating host resistance and botanical agents: Screening pigeonpea [Cajanus cajan (L.) Huth] genotypes for Fusarium wilt (Fusarium udum Butler) management

Fusarium wilt, caused by Fusarium udum Butler, is a major biotic constraint limiting pigeonpea (Cajanus cajan L. Huth) productivity in tropical and subtropical regions. Wilt incidence varied widely among 143 pigeonpea genotypes, ranging from 0.40 to 15.60 % at 30 days after sowing and escalating to 2.00 to 78.00  % at 75 DAS. Area under disease progress curve (AUDPC) values ranged from 57.9 to 2258.1, indicating diverse disease progression. Based on the percent disease index (PDI), relative AUDPC (rAUDPC) and r-values, genotypes were categorised as resistant (38.5 %), moderately resistant (37.8 %), susceptible (11.9 %) and highly susceptible (11.9 %). Notable resistant genotypes included Pusa Arhar 21-60, ICP 8863 and NAM 88. In vitro evaluation of seven plant extracts at 10, 15 and 20 ppm using the poisoned food technique revealed significant variation in antifungal activity. Thuja occidentalis L., Cannabis sativa L. and Mentha spicata L. consistently exhibited the highest inhibition in a dose-dependent manner, whereas Chenopodium album L. was least effective. Integration of resistant genotypes with potent botanical extracts offers an eco-friendly strategy for sustainable management of Fusarium wilt in pigeonpea.

K. Jyoti, K. Birendra, B. Rinku et al. · 0 citations