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Genetic transformation and molecular research in Anthurium: progress and prospects

机译:红掌的遗传转化和分子研究:进展与前景

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Although Anthurium is an attractive and commercially popular ornamental plant, its genetic enhancement has lagged behind that of other ornamental crops. There are several agronomically important traits in need of improvement. These include novel flower colors and morphologies, increased shelf and vase lives, and resistance to bacterial blight (Xanthomonas axonopodis pv. dieffenbachiae), burrowing nematodes and abiotic stresses. The production of transgenic Anthuriums is critical because the conventional breeding of a cultivar with beneficial traits typically requires 8-10 years. This review evaluates the problems, challenges and progress associated with developing molecular markers for Anthurium and in genetically transforming this ornamental. Recent improvements have hastened the tissue culture and regeneration of transgenic plants primarily using Agrobacterium-based methods. Promoter analyses have focused on constitutive and tissue-enhanced gene expression with the green fluorescent protein being a more reliable reporter than beta-glucuronidase. The development of molecular markers assists with phylogenetic analyses and PCR-based markers such as RAPD, SSR, SPAR, ISSR and AFLP can be used to differentiate cultivars and for genetic fingerprinting. The marker-assisted breeding of Anthurium will become more feasible once available data are used for association to specific traits. Work on the identification of quantitative trait loci for disease resistance and other traits such as flower colour is required and should incorporate new approaches, such as next-generation sequencing technologies. By highlighting the aforementioned bottlenecks and successes in this review, it is expected that the pace of Anthurium genetic improvement will increase with the multifaceted incorporation of focused priorities and new technology advancements.
机译:尽管红掌是一种有吸引力的商业上流行的观赏植物,但其遗传改良却落后于其他观赏作物。有几个需要改良的重要农艺性状。这些包括新颖的花色和形态,增加的货架寿命和花瓶寿命,以及对细菌性枯萎病的抗性(Xanthomonas axonopodis pv。dieffenbachiae),穴居线虫和非生物胁迫。转基因红掌的生产至关重要,因为具有有益性状的常规栽培种通常需要8-10年的时间。这篇综述评估了与开发红掌分子标记和遗传转化这种观赏植物相关的问题,挑战和进展。最近的改进主要使用基于农杆菌的方法加速了转基因植物的组织培养和再生。启动子分析集中在组成型和组织增强基因表达上,绿色荧光蛋白比β-葡萄糖醛酸苷酶更可靠。分子标记的开发有助于系统发育分析,基于PCR的标记(如RAPD,SSR,SPAR,ISSR和AFLP)可用于区分品种和进行基因指纹分析。一旦将可用数据用于特定性状的结合,红掌的标记辅助育种将变得更加可行。需要确定抗病性和其他性状(如花色)的数量性状基因座,并应采用新方法,例如下一代测序技术。通过强调本综述中的上述瓶颈和成功之处,可以预期,随着重点关注的重点和新技术的进步,红掌遗传改良的步伐将会加快。

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