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Early Selection for Smut Resistance in Sugarcane Using Pathogen Proliferation and Changes in Physiological and Biochemical Indices

机译:利用病原菌增殖和生理生化指标的变化对甘蔗抗黑穗病的早期选择

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摘要

Sugarcane smut disease, caused by Sporisorium scitamineum, significantly decreases yield and use of resistant cultivars is the most cost-effective measure for disease control. Current field testing methods for identification of smut resistance are time-consuming and hindered by environmental variability. Our goal was to develop an efficient and reliable resistance identification technique that is rapid, performed in a controlled environment, and stable. Nine sugarcane cultivars with different phenotypic resistance levels were selected. TaqMan quantitative real-time polymerase chain reaction analysis was performed to measure copy number changes of smut pathogen in sugarcane buds at 0–7 days after needle puncture inoculation. There was a positive correlation between time after inoculation and the amount of smut pathogen in the sugarcane bud. This reached a peak value on 7 days, and the copy number of S. scitamineum increased in the following order: YZ03-258, FN40, YZ01-1413, GT02-467, ROC22, YT96-86, YZ03-103, FN39, LC05-136. After smut pathogen inoculation, differences in the physiological and biochemical indices of the nine cultivars were observed. Peroxidase, ascorbate peroxidase, catalase, superoxide dismutase, β-1,3-glucanase, and malondialdehyde were grouped into three main components, and the cumulative contribution rate was 80.177%, revealing that these are useful physiological and biochemical indicators of smut resistance. Subordinate function analysis indicated that the levels of smut resistance of the nine genotypes were (high to low): YZ03-258, FN40, YZ01-1413, GT02-467, ROC22, YZ03-103, YT96-86, FN39, LC05-136, which is similar to the results from copy number determination of smut pathogens. The results suggest that after artificial needle inoculation, rapid identification of physiological resistance to sugarcane smut was achieved based on copy number increases in the sugarcane smut pathogen and the physiological and biochemical changes in sugarcane bud during the early phase of infection.
机译:由鞘质孢子虫引起的甘蔗黑穗病大大降低了产量,使用抗病品种是控制疾病的最经济有效的措施。当前用于鉴定抗黑穗病的现场测试方法既耗时又受环境变化的影响。我们的目标是开发一种高效,可靠的电阻识别技术,该技术快速,可控的环境中执行且稳定。选择了具有不同表型抗性水平的9个甘蔗品种。进行TaqMan定量实时聚合酶链反应分析,以测量穿刺接种后0-7天甘蔗芽中黑曲病病原菌的拷贝数变化。接种后的时间与甘蔗芽中黑穗病病菌的数量呈正相关。这在7天达到峰值,并且葡萄球菌的拷贝数按以下顺序增加:YZ03-258,FN40,YZ01-1413,GT02-467,ROC22,YT96-86,YZ03-103,FN39,LC05 -136。接种黑穗病菌后,观察到9个品种的生理生化指标存在差异。过氧化物酶,抗坏血酸过氧化物酶,过氧化氢酶,超氧化物歧化酶,β-1,3-葡聚糖酶和丙二醛分为三个主要成分,累积贡献率为80.177%,表明它们是抗黑穗病的有用的生理和生化指标。从属功能分析表明,这9个基因型的抗黑穗病水平为(从高到低):YZ03-258,FN40,YZ01-1413,GT02-467,ROC22,YZ03-103,YT96-86,FN39,LC05-136 ,与确定黑曲病病原菌拷贝数的结果相似。结果表明,在人工接种针头后,根据感染初期的甘蔗黑穗病菌拷贝数增加和甘蔗芽的生理生化变化,可以快速识别出对甘蔗黑穗病的生理抗性。

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