Combining quantitative trait locus mapping with multiomics profiling reveals genetic control of corn leaf aphid (Rhopalosiphum maidis) resistance in maize

Author:

Wang Tengyue1ORCID,Wang Kaiji1,Wang Chuanhong1,Zhao Yibing1,Tao Zhen1,Li Junyao1,Wang Lei1,Shi Jian1,Huang Shijie1,Xie Chuanxiao2,Li Peijin1ORCID

Affiliation:

1. National Key Engineering Lab of Crop Stress Resistance Breeding, School of Life Sciences, Anhui Agricultural University , Hefei , 230036 , China

2. Institute of Crop Science, Chinese Academy of Agricultural Sciences , No. 12 Zhongguancun South Street, Haidian District, Beijing , 100081 , China

Abstract

Abstract The corn leaf aphid (Rhopalosiphum maidis) is a major maize pest that frequently causes substantial yield losses. Exploring the genetic basis of resistance to aphids is important for improving maize yield and quality. Here, we used a maize recombinant inbred line population derived from two parents with different susceptibility to aphids, B73 (susceptible) and Abe2 (resistant), and performed quantitative trait locus (QTL) mapping using aphid resistance scores as an indicator. We mapped a stable QTL, qRTA6, to chromosome 6 using data from 2 years of field trials, which explained 40.12–55.17% of the phenotypic variation. To further investigate the mechanism of aphid resistance in Abe2, we constructed transcriptome and metabolome libraries from Abe2 and B73 leaves with or without aphid infestation at different time points. Integrating QTL mapping and transcriptome data revealed three aphid resistance candidate genes (Zm00001d035736, Zm00001d035751, and Zm00001d035767) associated with the hypersensitive response, the jasmonic acid pathway, and protein ubiquitination. Integrated transcriptomic and metabolomic analysis revealed that the differentially expressed genes and metabolites were enriched in flavonoid biosynthesis. These findings extend our understanding of the molecular mechanisms controlling aphid resistance in maize, and the QTL and candidate genes are valuable resources for increasing this resistance.

Funder

National Key Research and Development Program of China

Anhui Provincial Major Science and Technology

National Natural Science Foundation of China

Anhui Provincial Natural Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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