Genetic resources and genes/QTLs for gram pod borer (Helicoverpa armigera Hübner) resistance in chickpea from the Western Himalayas.

IF 3.9 2区 生物学 Q1 GENETICS & HEREDITY
Plant Genome Pub Date : 2024-07-04 DOI:10.1002/tpg2.20483
Sheikh Aafreen Rehman, Shaheen Gul, M Parthiban, Ishita Isha, M S Sai Reddy, Annapurna Chitikineni, Mahendar Thudi, R Varma Penmetsa, Rajeev Kumar Varshney, Reyazul Rouf Mir
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Abstract

Helicoverpa armigera (also known as gram pod borer) is a serious threat to chickpea production in the world. A set of 173 chickpea genotypes were evaluated for H. armigera resistance, including mean larval population (MLP), percentage pod damage (PPD), and pest resistance (PR) for 2 consecutive years (year 2020 and 2021). The same core set was also genotyped with 50K Axiom CicerSNP Array. The trait data and 50,000 single nucleotide polymorphism genotypic data were used together to work out marker-trait associations (MTAs) using different genome-wide association studies models. For MLP, a total of 53 MTAs were identified, including 25 MTAs in year 2020 and 28 MTAs in year 2021. A set of three MTAs was found common in both environments. For PPD, two MTAs in year 2020 and five MTAs in year 2021 were identified. A set of two MTAs were common in both environments. Similarly, for PR, only two MTAs common in both environments were identified. Interestingly, a common MTA (Affx_123255526) on chromosome 2 (Ca2) was found to be associated with all the three component traits (MLP, PPD, and PR) of pod borer resistance in chickpea. Further, we report key genes that encode SCAMPs (that facilitates the secretion of defense-related molecules), quinone oxidoreductase (enables the production of reactive oxygen species that promotes diapause of gram pod borer), and NB-LRR proteins that have been implicated in plant defense against H. armigera. The resistant chickpea genotypes, MTAs, and key genes reported in the present study may prove useful in the future for developing pod borer-resistant chickpea varieties.

西喜马拉雅山鹰嘴豆抗禾本科豆荚螟(Helicoverpa armigera Hübner)的遗传资源和基因/QTLs。
Helicoverpa armigera(又称禾谷荚螟)严重威胁着全球鹰嘴豆的生产。对一组 173 个鹰嘴豆基因型进行了 H. armigera 抗性评估,包括平均幼虫数量(MLP)、豆荚损害百分比(PPD)和连续两年(2020 年和 2021 年)的抗虫性(PR)。同一核心组还使用 50K Axiom CicerSNP 阵列进行了基因分型。性状数据和 50,000 个单核苷酸多态性基因分型数据被一起用于利用不同的全基因组关联研究模型计算标记-性状关联(MTAs)。就 MLP 而言,共确定了 53 个 MTA,包括 2020 年的 25 个 MTA 和 2021 年的 28 个 MTA。在这两个环境中发现了一组三个共同的 MTA。就 PPD 而言,在 2020 年和 2021 年分别确定了 2 项和 5 项中期协议。在两个环境中都有一组共用的两个中期协议。同样,就 PR 而言,也只发现了两个在两种环境中常见的 MTA。有趣的是,我们发现 2 号染色体(Ca2)上的一个共同 MTA(Affx_123255526)与鹰嘴豆豆荚螟抗性的所有三个组成性状(MLP、PPD 和 PR)都有关联。此外,我们还报告了编码 SCAMPs(可促进防御相关分子的分泌)、醌氧化还原酶(可产生活性氧,促进豆荚螟的休眠)和 NB-LRR 蛋白的关键基因,这些基因与植物防御 H. armigera 有关。本研究中报告的抗性鹰嘴豆基因型、MTAs 和关键基因可能对未来开发抗豆荚螟鹰嘴豆品种有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plant Genome
Plant Genome PLANT SCIENCES-GENETICS & HEREDITY
CiteScore
6.00
自引率
4.80%
发文量
93
审稿时长
>12 weeks
期刊介绍: The Plant Genome publishes original research investigating all aspects of plant genomics. Technical breakthroughs reporting improvements in the efficiency and speed of acquiring and interpreting plant genomics data are welcome. The editorial board gives preference to novel reports that use innovative genomic applications that advance our understanding of plant biology that may have applications to crop improvement. The journal also publishes invited review articles and perspectives that offer insight and commentary on recent advances in genomics and their potential for agronomic improvement.
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