Plant Genomics and Molecular Breeding Laboratory, Department of Horticultural Bioscience, Pusan National University, Miryang 50463, Republic of Korea.
Center for Agricultural Education, Faculty of Agricultural Sciences, Aligarh Muslim University, Aligarh 202002, India.
Int J Mol Sci. 2024 Jun 7;25(12):6307. doi: 10.3390/ijms25126307.
Melon ( L.) is a globally grown crop renowned for its juice and flavor. Despite growth in production, the melon industry faces several challenges owing to a wide range of biotic and abiotic stresses throughout the growth and development of melon. The aim of the review article is to consolidate current knowledge on the genetic mechanism of both biotic and abiotic stress in melon, facilitating the development of robust, disease-resistant melon varieties. A comprehensive literature review was performed, focusing on recent genetic and molecular advancements related to biotic and abiotic stress responses in melons. The review emphasizes the identification and analysis of quantitative trait loci (QTLs), functional genes, and molecular markers in two sections. The initial section provides a comprehensive summary of the QTLs and major and minor functional genes, and the establishment of molecular markers associated with biotic (viral, bacterial, and fungal pathogens, and nematodes) and abiotic stress (cold/chilling, drought, salt, and toxic compounds). The latter section briefly outlines the molecular markers employed to facilitate marker-assisted backcrossing (MABC) and identify cultivars resistant to biotic and abiotic stressors, emphasizing their relevance in strategic marker-assisted melon breeding. These insights could guide the incorporation of specific traits, culminating in developing novel varieties, equipped to withstand diseases and environmental stresses by targeted breeding, that meet both consumer preferences and the needs of melon breeders.
甜瓜(L.)是一种全球广泛种植的作物,以其果汁和风味而闻名。尽管产量有所增加,但由于甜瓜在生长和发育过程中受到各种生物和非生物胁迫的影响,甜瓜产业仍面临着诸多挑战。本文的目的是综述甜瓜生物和非生物胁迫的遗传机制,为培育具有强大抗逆性的甜瓜品种提供参考。我们进行了全面的文献综述,重点关注与甜瓜生物和非生物胁迫反应相关的最新遗传和分子进展。本文综述强调了在两个部分中鉴定和分析数量性状位点(QTLs)、功能基因和分子标记的重要性。第一部分全面总结了与生物(病毒、细菌和真菌病原体以及线虫)和非生物胁迫(冷/冷胁迫、干旱、盐和有毒化合物)相关的 QTLs、主要和次要功能基因以及分子标记的建立。第二部分简要概述了用于辅助标记回交(MABC)和鉴定对生物和非生物胁迫因子具有抗性的品种的分子标记,强调了它们在甜瓜分子标记辅助育种中的相关性。这些见解可以指导特定性状的引入,最终通过靶向育种开发出新型品种,这些品种能够抵抗疾病和环境压力,满足消费者的偏好和甜瓜种植者的需求。