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首页> 外文期刊>Journal of Crop Improvement >Resistance to legume pod borer {Maruca vitrata Fabricius) in cowpea: genetic advances, challenges, and future prospects
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Resistance to legume pod borer {Maruca vitrata Fabricius) in cowpea: genetic advances, challenges, and future prospects

机译:蜂鸣器抗豆科植物博尔{Maruca Vitrata Fabricius):遗传推进,挑战和未来的前景

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摘要

Cowpea (Vigna unguiculata (L.) Walp) is a highly nutritious grain legume crop in the world. However, cowpea production is constrained by legume pod borer (Maruca vitrata Fabricius) (LPB), which feeds on various parts of cowpea plant, causing a complete crop failure. An analysis of the existing Nterature revealed LPB as a serious threat to cowpea production worldwide, with a more noticeable damage in Africa. Attempts to develop and use LPB-resistant cowpea varieties have not shown significant resultsbecause of challenges, such as interspecific crossing barriers, genetic variability among LPB strains, effects of genotype-by-environment interaction, limited knowledge of the genetic architecture of the trait, and the socio-political barriers to the adoption of transgenic cowpea varieties in some countries. Combining multi-environment trials with precise phenotyping would help optimize selection of best-performing cowpea genotypes to reduce LPB infestation. Many molecular tools (e.g., markers systems,genetics maps, high-throughput genotyping, and quantitative trait loci (QTL) analysis) are available to support breeding for LPB resistance in cowpea. In addition, mutation breeding, tissue culture, reverse genetics, clustered regularly interspaced shortpalindromic repeats (CRISPR) technologies can be used to increase genetic variability in cowpea for LPB resistance. The effective use of these technologies relies on an enabling legal and socio-economic-political environment for fast development and adoption of LPB-resistant cowpea varieties.
机译:豇豆(Vigna Unguiculata(L.)沃尔普)是世界上一种高度营养的谷物豆类作物。然而,豇豆生产受豆科植物螟虫(Maruca Vitrata Fabricius)(LPB)的限制,其在豇豆植物的各个部分上饲喂,导致完全的作物失败。对现有的妊娠揭示LPB作为对全球豇豆生产的严重威胁,在非洲造成更明显的伤害。开发和使用LPB抗性豇豆品种的企图尚未显示出巨大的结果,因为挑战,如间隙交叉障碍,LPB菌株之间的遗传变异,基因型的遗传变异,基因型逐个互动,有限的特质知识的知识有限,一些国家通过转基因豇豆品种的社会政治障碍。将多环境试验与精确的表型化相结合,有助于优化选择最佳的豇豆基因型,以降低LPB侵扰。许多分子工具(例如,标记系统,遗传映射,高通量基因分型和定量性状基因座(QTL)分析可用于支持豇豆中LPB抗性的育种。此外,突变育种,组织培养,反向遗传,聚类定期间隙的短阈值重复(CRISPR)技术可用于提高豇豆的遗传变异,用于LPB抗性。这些技术的有效利用依赖于支持合法和社会经济 - 政治环境,以便快速开发和采用LPB抗性豇豆品种。

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