Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Resolving intergenotypic <i>Striga</i> resistance in sorghum

Domain:

agriculture

Record type:

paper
Creator:
SylFreBreOli
Publisher:
ope
Host:
Abstract Genetic underpinnings of host-pathogen interactions in the parasitic plant Striga hermonthica, a root parasitic plant that ravages cereals in sub-Saharan Africa, are unclear. We performed a comparative transcriptome study on five genotypes of sorghum exhibiting diverse resistance responses to S. hermonthica using weighted gene co-expression network analysis (WGCNA). We found that S. hermonthica elicits both basal and effector-triggered immunity – like a bona fide pathogen. Resistance response was genotype-specific. Some resistance responses followed the salicylic acid-dependent signaling pathway for systemic acquired resistance characterized by cell wall reinforcements, lignification and callose deposition while in others the WRKY-dependent signaling pathway was activated leading to a hypersensitive response (HR). In some genotypes, both modes of resistance were activated while in others, either mode dominated the resistance response. Cell-wall-based resistance was common to all sorghum genotypes but strongest in IS2814, while HR-based response was specific to N13, IS9830 and IS41724. WGCNA further allowed for pinpointing of S. hermonthica resistance causative genes in sorghum. Some highlights include a Glucan synthase-like 10, a pathogenesis-related thaumatin-like family, and a phosphoinositide phosphatase gene. Such candidate genes will form a good basis for subsequent functional validation and possibly future resistance breeding. Highlight Parasitic plants of the Striga genus are major pests to cereals in Africa. We pinpointed genetic causes of Striga resistance in sorghum that can be harnessed for future resistance breeding.

Visit

doi.org

Similar

Mutation in sorghum <i>LOW GERMINATION STIMULANT 1</i> alters strigolactones and causes <i>Striga</i> resistanceEvaluation of field resistance to <i>Striga hermonthica</i> (Del.) Benth. in <i>Sorghum bicolor</i> (L.) Moench. The relationship with strigolactonesRace structure of cowpea witchweed (<i>Striga gesnerioides</i>) in West Africa and its implications for <i>Striga</i> resistance breeding of cowpeaResistance to <i>Striga hermonthica</i> in Wild Accessions of the Primary Gene Pool of <i>Pennisetum glaucum</i>Genetic markers linked to <i>Striga gesnerioides</i> resistance for the improvement of Ghanaian cowpea (<i>Vigna unguiculata</i>) cultivarsScreening and Identification of Potential Striga [Striga hermonthica (Del.)] Suppressing Rhizobacteria Associated with Sorghum [Sorghum bicolor (L.) Moench] in Northern Ethiopia فحص وتحديد Striga</ i > [< i>Striga hermonthica (Del. )</ i>] قمع الجراثيم المرتبطة بالذرة الرفيعة [الذرة الرفيعة ثنائية اللون</ i >( L.) Moench] في شمال إثيوبيا Dépistage et identification du potentiel Striga [Striga hermonthica (Del.)] Suppression des rhizobactéries associées au sorgho [Sorghum bicolor (L.) Moench] dans le nord de l'Éthiopie Detección e identificación de posibles Striga [Striga hermonthica (Del.)] Supresión de rizobacterias asociadas con sorgo [Sorghum bicolor (L.) Moench] en el norte de Etiopía

Mutation in sorghum <i>LOW GERMINATION STIMULANT 1</i> alters strigolactones and causes <i>Striga</i> resistance

Significance The parasitic weed Striga

Evaluation of field resistance to <i>Striga hermonthica</i> (Del.) Benth. in <i>Sorghum bicolor</i> (L.) Moench. The relationship with strigolactones

Abstract BACKGROUND Significant losses in sorghum biomass and grain yield occur in sub‐Saharan Af

Race structure of cowpea witchweed (<i>Striga gesnerioides</i>) in West Africa and its implications for <i>Striga</i> resistance breeding of cowpea

Abstract Cowpea witchweed [ Striga gesnerioides (Willd.) Vatke] is a primary constraint of cowpea

Resistance to <i>Striga hermonthica</i> in Wild Accessions of the Primary Gene Pool of <i>Pennisetum glaucum</i>

Resistance to Striga hermonthica in 274 wild Pennisetum glaucum subsp. monodii and stenostachyum acc

Genetic markers linked to <i>Striga gesnerioides</i> resistance for the improvement of Ghanaian cowpea (<i>Vigna unguiculata</i>) cultivars

Abstract The parasitic plant, Striga gesnerioides (Willd.) Vatke, is one of the most important co

Screening and Identification of Potential Striga [Striga hermonthica (Del.)] Suppressing Rhizobacteria Associated with Sorghum [Sorghum bicolor (L.) Moench] in Northern Ethiopia فحص وتحديد Striga</ i > [< i>Striga hermonthica (Del. )</ i>] قمع الجراثيم المرتبطة بالذرة الرفيعة [الذرة الرفيعة ثنائية اللون</ i >( L.) Moench] في شمال إثيوبيا Dépistage et identification du potentiel Striga [Striga hermonthica (Del.)] Suppression des rhizobactéries associées au sorgho [Sorghum bicolor (L.) Moench] dans le nord de l'Éthiopie Detección e identificación de posibles Striga [Striga hermonthica (Del.)] Supresión de rizobacterias asociadas con sorgo [Sorghum bicolor (L.) Moench] en el norte de Etiopía

Sorghum (Sorghum bicolor (L.) Moench) is one of the globally important cereal crops well adapted to