Advances in breeding techniques for durable Septoria tritici blotch (STB) resistance in cereals

H. Raman
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Abstract

Septoria tritici blotch (STB), caused by the hemibiotrophic fungus Zymoseptoria tritici, is one of the most important foliar diseases of winter cereal crops. Recent advances are helping to understand the genetic basis and architecture of resistance to STB. To date, at least 22 genes for qualitative resistance and over 200 quantitative trait loci (QTL) for quantitative resistance have been identified in cereals. This knowledge is enabling cereal breeding programs to develop varieties with more durable resistance to STB. This chapter reviews recent research on genetic resistance loci and breeding strategies based on both conventional and biotechnology-based breeding approaches (molecular marker/genomic-assisted breeding, genetic transformation, and gene-editing) to achieve achieving durable resistance to STB infection and minimise grain yield losses.
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谷物持久抗黑穗病育种技术进展
稻瘟病(Septoria tritici blotch, STB)是由半生物营养真菌稻瘟病菌(Zymoseptoria tritici)引起的冬季谷类作物叶面病害之一。最近的进展有助于了解STB抗性的遗传基础和结构。迄今为止,在谷物中已鉴定出至少22个质量抗性基因和200多个数量抗性性状位点(QTL)。这一知识使谷物育种项目能够开发出对STB具有更持久抗性的品种。本章综述了基于传统和基于生物技术的育种方法(分子标记/基因组辅助育种、遗传转化和基因编辑)的遗传抗性位点和育种策略的最新研究,以实现对STB感染的持久抗性,并最大限度地减少粮食产量损失。
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