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Development of anthracnose disease resistance and heat tolerance chili through conventional breeding and molecular approaches: a review

机译:通过常规育种和分子方法培养炭疽病抗性和耐热性的发展:综述

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Chili ( Capsicum annuum L.) is the popular spicy vegetable crops belonging to family Solanaceae. Chili peppers are known for their pungency characteristic due to the presence of capsaicinoids that classifies them into hot or sweet pepper. Chili is used as spices, folk remedies for diseases, vegetables, and coloring agent showing a diverse role in human’s life. However, its production is hampered by different biotic stress and abiotic factors. Similarly, the unavailability of high yielding varieties, high temperature, and disease incidence, particularly, anthracnose disease, are the major constraints responsible for the low production of chili pepper. The advents of molecular markers, advancement in quantitative trait loci by classical genetic analysis, and conventional breeding have shown the number of genes for many important and major traits. While the newly developed genotyping technologies and nextgeneration sequencing have led to the discovery of molecular basis for economic important characters in the chili genome and generate large scale data for genomic resources. Based on this background, this review summarizes progress in the development of anthracnose disease-resistant and heat-tolerant chili genotypes through conventional breeding and molecular approaches. This review would help plant breeders in understanding the phenotypic and genetic make-up of capsicum genotypes and provides opportunities for pyramiding two respected genes with the help of diversified phenotypic and molecular marker evaluation.
机译:辣椒(Capsicum Annuum L.)是属于家庭Solanaceae的受欢迎的辣蔬菜作物。由于存在将它们分为热或甜椒的辣椒,辣椒因其血型特征而闻名。辣椒用作香料,疾病,蔬菜和着色剂的民间补救措施,在人类的生命中表现出不同的作用。然而,它的生产受到不同的生物应激和非生物因素的阻碍。同样,高产品种,高温和疾病发病率的不可用,特别是炭疽病疾病,是负责低产量的辣椒的主要限制。分子标记的进步,通过古典遗传分析的定量性状基因座的进步,以及常规育种表明了许多重要和主要特征的基因数。虽然新开发的基因分型技术和Nextgeneration测序导致辣椒基因组中经济重要角色的分子基础的发现,并为基因组资源产生大规模数据。基于这种背景,本综述总结了通过常规育种和分子方法开发炭疽病抗性和耐热性嗜酸性辣椒基因型的进展。本综述将有助于植物育种者了解辣椒基因型的表型和遗传构成,并在多元化的表型和分子标记评价的帮助下提供两种受尊重的基因的机会。

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