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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Talisia esculenta lectin and larval development of Callosobruchus maculatus and Zabrotes subfasciatus (Coleoptera: Bruchidae).
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Talisia esculenta lectin and larval development of Callosobruchus maculatus and Zabrotes subfasciatus (Coleoptera: Bruchidae).

机译:圆叶锦鸡儿凝集素和黄os和Zabrotes subs fasciatus(鞘翅目:Bruchidae)的幼虫发育。

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摘要

Bruchid larvae cause major losses in grain legume crops throughout the world. Some bruchid species, such as the cowpea weevil and the Mexican bean weevil, are pests that damage stored seeds. Plant lectins have been implicated as antibiosis factors against insects, particularly the cowpea weevil, Callosobruchus maculatus. Talisia esculenta lectin (TEL) was tested for anti-insect activity against C. maculatus and Zabrotes subfasciatus larvae. TEL produced ca. 90% mortality to these bruchids when incorporated in an artificial diet at a level of 2% (w/w). The LD(50) and ED(50) for TEL was ca. 1% (w/w) for both insects. TEL was not digested by midgut preparations of C. maculatus and Z. subfasciatus. The transformation of the genes coding for this lectin could be useful in the development of insect resistance in important agricultural crops.
机译:布鲁氏幼虫在全世界的豆类作物中造成重大损失。某些bru类物种,例如the豆象鼻虫和墨西哥豆象鼻虫,是会破坏所储存种子的害虫。植物凝集素已被认为是抗昆虫,尤其是the豆象鼻虫,Callosobruchus maculatus的抗菌因子。测试了塔莉ia(Talisia esculenta lectin)(TEL)对斑纹梭菌(C. maculatus)和Zabrotes subfasciatus幼虫的抗昆虫活性。 TEL约生产当以2%(w / w)的水平添加到人工饮食中时,这些bru虫的死亡率为90%。 TEL的LD(50)和ED(50)约为。两种昆虫均为1%(w / w)。 TEL未被中肠黄斑假单胞菌和亚条形僵尸线虫的中肠制剂消化。编码该凝集素的基因的转化可用于重要农作物的抗虫性发展。

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