Banerjee Nandita, Khan Mohammad Suhail, Swapna M, Yadav Sonia, Tiwari Gopal Ji, Jena Satya N, Patel Jinesh D, Manimekalai R, Kumar Sanjeev, Dattamajuder S K, Kapur Raman, Koebernick Jenny C, Singh Ram K
ICAR-Indian Institute of Sugarcane Research, Raibareli Road, P.O. Dilkusha, Lucknow, 226002 India.
Plant Molecular Biology Laboratory, CSIR-National Botanical Research Institute, Lucknow, 226001 India.
3 Biotech. 2023 Mar;13(3):82. doi: 10.1007/s13205-023-03481-7. Epub 2023 Feb 9.
Sugarcane ( hybrid) is one of the most important commercial crops cultivated worldwide for products like white sugar, bagasse, ethanol, etc. Red rot is a major sugarcane disease caused by a hemi-biotrophic fungus, Went., which can potentially cause a reduction in yield up to 100%. Breeding for red rot-resistant sugarcane varieties has become cumbersome due to its complex genome and frequent generation of new pathotypes of red rot fungus. In the present study, a genetic linkage map was developed using a selfed population of a popular sugarcane variety CoS 96268. A QTL linked to red rot resistance () was identified, which explained 26% of the total phenotypic variation for the trait. A genotype-phenotype network analysis performed to account for epistatic interactions, identified the key markers involved in red rot resistance. The differential expression of the genes located in the genomic region between the two flanking markers of the as well as in the vicinity of the markers identified through the genotype-phenotype network analysis in a set of contrasting genotypes for red rot infection further confirmed the mapping results. Further, the expression analysis revealed that the plant defense-related gene coding 26S protease regulatory subunit is strongly associated with the red rot resistance. The findings can help in the screening of disease resistant genotypes for developing red rot-resistant varieties of sugarcane.
The online version contains supplementary material available at 10.1007/s13205-023-03481-7.
甘蔗(杂交种)是全球种植的最重要的经济作物之一,用于生产白砂糖、蔗渣、乙醇等产品。赤腐病是由半活体营养型真菌引起的一种主要甘蔗病害,可能导致产量降低高达100%。由于甘蔗基因组复杂且赤腐病菌新致病型频繁产生,培育抗赤腐病甘蔗品种变得很麻烦。在本研究中,利用一个受欢迎的甘蔗品种CoS 96268的自交群体构建了遗传连锁图谱。鉴定出一个与抗赤腐病相关的QTL,它解释了该性状总表型变异的26%。为了分析上位性相互作用进行的基因型-表型网络分析,确定了参与抗赤腐病的关键标记。在一组赤腐病感染的对比基因型中,对位于该QTL两侧两个标记之间的基因组区域以及通过基因型-表型网络分析确定的标记附近的基因的差异表达进一步证实了定位结果。此外,表达分析表明编码26S蛋白酶调节亚基的植物防御相关基因与抗赤腐病密切相关。这些发现有助于筛选抗病基因型,以培育抗赤腐病甘蔗品种。
在线版本包含可在10.1007/s13205-023-03481-7获取的补充材料。