大豆系对大豆蚜虫的抗虫性研究

L. Hesler, K. Dashiell
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引用次数: 27

摘要

大豆蚜虫,甘氨酸蚜虫,是亚洲大豆的一种害虫,它已成为北美大豆作物的主要害虫,其大规模爆发造成重大产量损失。寄主-植物抗性是北美正在开发的一种针对大豆蚜虫的管理策略,抗性可以表现为抗虫性、抗菌性或耐受性。通过选择试验,鉴定了几种大豆品系对大豆蚜虫的抗虫性。大豆品系‘Dowling’、‘PI 230977’、‘Jackson’、‘Cobb’和‘Palmetto’对大豆蚜虫有较强的抗虫性,而品系‘PI 71506’、‘G93-9223’、‘Braxton’、‘Cook’、‘IAC-1’、‘Ripley’和‘铁峰8’对大豆蚜虫有中等的抗虫性。pi71506的抗蛇毒活性处于中等水平,这与以往的结果形成了对比,表明大豆蚜虫对该品系的反应存在生物型差异。还测量了茎长、茎宽和幼苗干质量,以检验蚜虫寄主选择与植株大小之间的关系。在所有试验中,植株大小参数随大豆品系而异。然而,蚜虫选择寄主与植株大小参数之间的关系普遍较弱,且在不同的试验中不一致,这表明其他未确定的植物特征在寄主选择中很重要。在几个大豆品系中发现抗虫病,为大豆育种者和害虫管理从业者提供了通过寄主-植物抗性来管理大豆蚜虫的额外选择。抗虫性本身可能是重要的,它可以通过减少对大豆蚜虫抗性生物型的选择来补充抗性的抗生素模式,从而延长植物抗性作为一种非化学手段管理大豆蚜虫的有效性。
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Antixenosis to the Soybean Aphid in Soybean Lines
The soybean aphid, Aphis glycines, is a pest of soybean in Asia, and it has become a major pest of this crop in North America with large outbreaks that cause significant yield loss. Host-plant resistance is one management tactic being developed against soybean aphid in North America, and resistance may be manifested as antixenosis, antibiosis, or tolerance. In this study, choice tests were conducted to identify antixenosis to soybean aphids in several soybean lines. The soybean lines 'Dowling,' PI 230977, 'Jackson,' 'Cobb' and 'Palmetto' had strong antixenosis to soybean aphid, and lines PI 71506, G93-9223, 'Braxton,' 'Cook,' 'IAC-1,' 'Ripley,' and 'Tie feng 8' were moderately antixenotic. The intermediate level of antixenosis in PI 71506 contrasts with previous results, and suggests biotypic differences in the responses of soybean aphid to this line. Shoot length, shoot width, and seedling dry mass were also measured to test for any association between aphid host choice and plant size. Plant-size parameters varied by soybean line in all tests. However, the relation between aphid host choice and plant-size parameters was generally weak and not consistent across tests, suggesting that other undetermined plant characteristics were important in host selection. The identification of antixenosis in several soybean lines provides soybean breeders and pest management practitioners with additional options for managing soybean aphid through host-plant resistance. Antixenosis may be important on its own, and it may prove be complimentary to the antibiosis mode of resistance by reducing selection on resistance-breaking biotypes of soybean aphid, thereby prolonging the usefulness of plant resistance as a non-chemical means of managing soybean aphid.
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