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首页> 外文期刊>Nicotine & Tobacco Research >Variation in the response of tomato (Solanum lycopersicum) breeding lines to the effects of benzo (1,2,3) thiadiazole-7-carbothioic acid S-methyl ester (BTH) on systemic acquired resistance and seed germination
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Variation in the response of tomato (Solanum lycopersicum) breeding lines to the effects of benzo (1,2,3) thiadiazole-7-carbothioic acid S-methyl ester (BTH) on systemic acquired resistance and seed germination

机译:番茄(Solanum Liycopersicum)育种线对苯并(1,2,3)噻二唑-7-甲基甲基甲酯(Bth)对全身性耐药性和种子萌发的影响的变异

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摘要

Genetic variation may play a major role in how plants respond to activators of systemic acquired resistance. To examine this, the defence activator benzo(1,2,3)thiadiazole-7-carbothioic acid S-methyl ester (BTH) was applied to seed of different breeding lines of tomato (Solanum lycopersicum) with diverse pedigrees, and the levels of induced resistance against Pseudomonas syringae pv. tomato, changes in defence gene expression and detrimental effects on seed germination and seedling emergence were measured. Two breeding lines, 7007 and 7024, were selected as non-responsive and responsive to BTH. The SAR-associated genes, SlPR1a and SlPR3b, were induced earlier or more strongly over the control prior to inoculation for line 7024 but not for line 7007. This was not observed for the ISR-related genes, SlPin2 and SlPR2b. BTH inhibition of seed germination and seedling emergence was more delayed in line 7024 than 7007. However, applying BTH as a seed or soil drip reduced the delay. Thus, greater levels of BTH response have both positive (i.e., induced resistance and expression of SAR-related gene expression) and negative (i.e., inhibition of seed germination and seedling emergence) effects and can differ significantly between genotypes. Thus, recommendations for use of induced resistance activators should include plant genotype recommendations and consider possible negative impacts of greater responsiveness.
机译:遗传变异可能在植物如何应对系统所获得的阻力的激活因子中起主要作用。为了检查这一点,将防御活化剂苯并(1,2,3)噻二唑-7-甲基甲酸S-甲基酯(Bth)应用于番茄(Solanum Lycopersicum)的不同育种系的种子,具有多种百分点,以及水平诱导抗假单胞菌皂苷PV的抗性。测定了番茄,测量了防御基因表达的变化和对种子萌发和幼苗出苗的不利影响。两条繁殖线7007和7024被选择为非响应和响应Bth。在接种线7024之前之前,在对照中之前或更强烈地诱导SAR相关基因,SLPR1a和SLPR3b,但不是用于线7007。对于ISR相关基因,SLPIN2和SLPR2B未观察到这一点。在7024线7024中,Bth对种子萌发和幼苗出苗的抑制更延迟,但是,作为种子或土壤滴落的延迟,将Bth应用于种子或土壤。因此,更高水平的Bth响应具有正阳性(即,诱导的SAR相关基因表达的抗性和表达)和阴性(即,抑制种子萌发和幼苗出苗)的影响,并且在基因型之间可以显着差异。因此,使用诱导抗性活化剂的建议应包括植物基因型建议,并考虑可能对更高响应性的负面影响。

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