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Inducible Phytoalexins in Juvenile Soybean Genotypes Predict Soybean Looper Resistance in the Fully Developed Plants

机译:少年大豆基因型中可诱导的植物抗毒素可预测成熟植物中的大豆弯角抗性

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摘要

The hypocotyl of different soybean genotypes was tested for its inducible phytoalexin (i.e. glyceollin or coumestrol) accumulation and its inducible soybean looper resistance in response to chemical elicitation. A very highly insect-resistant soybean genotype (PI 227687) produced significantly more phytoalexins than a relatively insect-susceptible one (Davis) in response to the same chemical elicitation. The resultant standardized hypocotyl assay allowed quick categorization of unknown soybean genotypes regarding the level of insect resistance in the fully developed plants. Glyceollin was a better indicator of inducible resistance than coumestrol. Elicitor concentration influenced the amount of glyceollin and coumestrol accumulated. Younger seedlings (4-5 d old) responded stronger to chemical elicitation than did older ones (7-10 d old). The elicited accumulation of glyceollin showed a temporal pattern that peaked at 72 h. Accumulation of coumestrol showed a gradual increase. Elicitation of phytoalexins in juvenile soybean plants by sulfhydryl-binding reagents was found to be useful for the prediction of genotypic differences in the level of insect resistance in the fully developed plants.
机译:测试了不同基因型大豆下胚轴的诱导型植物抗毒素(即甘油醇或香豆酚)积累和响应化学诱变的诱导型大豆弯针抗性。在相同的化学诱导下,一种抗虫性很高的大豆基因型(PI 227687)产生的植物抗毒素比抗虫性相对较高的大豆(戴维斯)明显多。所得的标准化下胚轴测定法可以对完全发育的植物中的昆虫抗性水平的未知大豆基因型进行快速分类。甘油三醇比香豆酚是更好的诱导抗药性指标。引发剂浓度影响了甘油醇和香豆酚的积累量。年轻的幼苗(4-5天大)对化学诱导的反应比老的幼苗(7-10天大)更强。引起的糖精蛋白积累显示出在72 h达到峰值的时间模式。香豆酚的积累显示逐渐增加。人们发现,通过巯基结合试剂在少年大豆植物中引发植物抗毒素的作用对于预测成熟植物中昆虫抗性水平的基因型差异很有用。

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