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Transgenic expression of a functional fragment of harpin protein Hpa1 in wheat induces the phloem-based defence against English grain aphid

机译:harpin蛋白Hpa1功能片段在小麦中的转基因表达诱导基于韧皮部的防御英国谷物蚜虫

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摘要

The harpin protein Hpa1 has multiple beneficial effects in plants, promoting plant growth and development, increasing crop yield, and inducing resistance to pathogens and insect pests. For these effects, the 10–40 residue fragment (Hpa110–42) isolated from the Hpa1 sequence is 1.3- to 7.5-fold more effective than the full-length protein. Here it is reported that the expression of Hpa110–42 under the direction of an insect-induced promoter induces the phloem-based defence to English grain aphid, a dominant species of wheat aphids. The expression of Hpa110–42 was found to compromise the colonization preference of aphids on the plant and further inhibit aphid reproduction in leaf colonies. In Hpa110–42-expressing wheat lines, moreover, aphid feeding from the phloem was repressed in correlation with the phloem-based defence. This defensive mechanism was shown as enhanced expression of wheat genes encoding phloem lectin proteins (PP2-A1 and PP2-A2) and β-1,3-glucan synthase-like enzymes (GSL2, GSL10, and GSL12). Both PP2-A and β-1,3-glucan formed high molecular mass polymers to block phloem sieve plate pores and therefore impede aphid feeding from the phloem. However, the phloem-based defence was impaired by treating plants with ethylene signalling inhibitors, suggesting the requirement for the ethylene signalling pathway. In addition, if Hpa110–42-expressing plants were subjected to attack by a small number of aphids, they newly acquired agriculturally beneficial characters, such as enhanced vegetative growth and increased tiller numbers and grain output values. These results suggest that the defensive and developmental roles of Hpa110–42 can be integrated into the germplasm of this agriculturally significant crop.
机译:harpin蛋白Hpa1在植物中具有多种有益作用,可促进植物的生长发育,提高农作物产量并诱导对病原体和害虫的抗性。对于这些作用,从Hpa1序列中分离出的10-40个残基片段(Hpa110-42)比全长蛋白质的效力高1.3到7.5倍。据报道,在昆虫诱导的启动子的指导下,Hpa110-42的表达诱导了基于韧皮部的防御,对英国小麦蚜虫的主要种蚜虫。发现Hpa110–42的表达损害了蚜虫在植物上的定植偏好,并进一步抑制了叶菌落中蚜虫的繁殖。此外,在表达Hpa110-42的小麦品系中,从韧皮部进食的蚜虫与基于韧皮部的防御相关。该防御机制显示为编码韧皮部凝集素蛋白(PP2-A1和PP2-A2)和β-1,3-葡聚糖合酶样酶(GSL2,GSL10和GSL12)的小麦基因表达增强。 PP2-A和β-1,3-葡聚糖均形成高分子量聚合物,以阻塞韧皮部筛板孔,因此阻碍了从韧皮部进食蚜虫。但是,通过用乙烯信号抑制剂处理植物会损害基于韧皮部的防御能力,这表明需要乙烯信号途径。此外,如果表达Hpa110-42的植物受到少量蚜虫的攻击,它们就会获得新的农业有利特性,例如营养生长增强,分till数量和谷物产值增加。这些结果表明,Hpa110-42的防御和发育作用可以整合到这种具有农业意义的作物的种质中。

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