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Ray, R. V.

Publications and source records attributed to Ray, R. V..

2 recordsLinked to original sources

Coordinated immune, chloroplast and chemical defences underpin multilayered resistance to barley yellow dwarf virus and its aphid vector associated with the Hordeum bulbosum-derived Ryd4 introgression in barley

Barley yellow dwarf virus (BYDV), transmitted by the bird cherry-oat aphid (Rhopalosiphum padi L.), is among the most damaging viral diseases of barley, but the mechanisms underlying resistance to both the virus and its vector remain poorly understood. Here, we investigated resistance associated with the Hordeum bulbosum-derived Ryd4 introgression in the barley hybrid SY Kestrel by integrating behavioural, electrophysiological, physiological and multi-omics analyses with functional validation of defence metabolites. SY Kestrel exhibited constitutive volatile-mediated antixenosis together with strong post-settlement antibiosis characterised by impaired phloem feeding, reduced aphid fitness and suppression of BYDV gene expression 10 days after transmission. Integrated transcriptomic, metabolomic and small RNA analyses revealed coordinated immune activation, chloroplast remodelling and defence metabolism associated with the resistance introgression. Candidate immune regulators were identified both within the refined Ryd4 interval and the surrounding introgressed region. Maintenance of photosystem II function was accompanied by reprogramming of -linolenic acid-derived oxylipin metabolism, while phenylpropanoid and branched-chain amino acid/lysine pathways generated metabolites that directly reduced aphid survival. We demonstrate that the Ryd4 introgression coordinates constitutive vector deterrence with host defence reprogramming to restrict aphid colonisation and suppress BYDV establishment. These results provide a mechanistic framework for improving durable resistance to aphid-transmitted viruses in cereals.

systems biology↗

An aphid resistant wheat variety reduces the transmission of Barley Yellow Dwarf Virus (BYDV) by Rhopalosiphum padi (L.)

INTRODUCTIONRhopalosiphum padi (L.) is a vector of Barley Yellow Dwarf Virus (BYDV) infecting major cereals including wheat. Recently, a winter wheat variety (G1) was identified as exhibiting significant aphid resistance through antixenosis and antibiosis. This study compares resistance to viruliferous aphids, and BYDV transmission, in G1 with RGT Wolverine and RGT Illustrious, a BYDV resistant and susceptible wheat varieties, respectively. We aimed to define how aphid resistance affects BYDV transmission, infection and spread. RESULTSSeedling choice and olfactometer bioassays using wheat volatile organic compounds revealed that G1 emits an aphid repellent compound, identified as 2-tridecanone using GC-MS. Electrical penetration graph recordings showed restricted phloem access and salivation of viruliferous R. padi in G1, associated with lower BYDV transmission efficiency. Quantitative RT-PCR revealed a three-fold reduction in BYDV gene expression ratio on G1 transmission leaves compared to RGT Wolverine or RGT Illustrious. In contrast, reduced systemic infection in RGT Wolverine implied a BYDV resistance mechanism of limiting viral replication and/or movement. Rearing aphids on the aphid or BYDV resistant varieties modified their host selection behaviours suggesting vector conditioning with implications for viral transmission and spread on susceptible hosts. CONCLUSIONThis study demonstrates that the aphid resistance in G1 reduced BYDV transmission. Contrastingly, RGT Wolverine appeared to limit systemic viral infection despite high transmission efficiency. Combining these two distinct resistance mechanisms by breeding offers valuable strategy against both the aphid and the virus. To further define aphid and BYDV defence responses in G1, transcriptomic and metabolomic studies will be required.

plant biology↗