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Progress on Molecular Genetics and Manipulation of Rust Fungi

机译:生锈真菌的分子遗传学和操纵进展

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Among the thousands of rust species described, many are known for their devastating effects on their hosts, which include major agriculture crops and trees. Hence, for over a century, these basidiomycete pathogenic fungi have been researched and experimented with. However, due to their biotrophic nature, they are challenging organisms to work with and, needing their hosts for propagation, represent pathosystems that are not easily experimentally accessible. Indeed, efforts to perform genetics have been few and far apart for the rust fungi, though one study performed in the 1940s was famously instrumental in formulating the gene-for-gene hypothesis describing pathogen-host interactions. By taking full advantage of the molecular genetic tools developed in the 1980s, research on many plant pathogenic microbes thrived, yet similar work on the rusts remained very challenging though not without some successes. However, the genomics era brought real breakthrough research for the biotrophic fungi and with innovative experimentation and the use of heterologous systems, molecular genetic analyses over the last 2 decades have significantly advanced our insight into the function of many rust fungus genes and their role in the interaction with their hosts. This has allowed optimizing efforts for resistance breeding and the design and testing of various novel strategies to reduce the devastating diseases they cause.
机译:在描述的数千种锈病中,许多人以其对其宿主的破坏性影响而闻名,其中包括主要农作物和树木。因此,超过了一个世纪,这些基础霉素致病性真菌已经研究和实验。然而,由于它们的生物养化性质,它们是有挑战的生物,需要使用他们的宿主进行传播,代表不容易通过实验可访问的疾病系统。实际上,努力进行遗传学的努力已经很少,除了生锈真菌相距很远,尽管在20世纪40年代进行了一项研究是着名的,用于制定描述病原体宿主相互作用的基因对基因假设。通过充分利用20世纪80年代开发的分子遗传工具,对许多植物病原微生物的研究繁殖,然而,锈病的类似工作仍然非常挑战,但没有任何成功。然而,基因组学时代为生物营养真菌带来了真正的突破性研究,并具有创新的实验和使用异源系统的使用,过去2年的分子遗传分析显着推进了我们对许多生锈真菌基因的功能的洞察力及其在中的作用与主人互动。这使得允许优化抗性育种的努力以及各种新颖策略的设计和测试,以减少它们引起的毁灭性疾病。

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