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Field resistance of transgenic plantain to nematodes has potential for future African food security

机译:转基因车前草对线虫的田间抗药性有可能促进非洲未来的粮食安全

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摘要

Plant parasitic nematodes impose losses of up to 70% on plantains and cooking bananas in Africa. Application of nematicides is inappropriate and resistant cultivars are unavailable. Where grown, demand for plantain is more than for other staple crops. Confined field testing demonstrated that transgenic expression of a biosafe, anti-feedant cysteine proteinase inhibitor and an anti-root invasion, non-lethal synthetic peptide confers resistance to plantain against the key nematode pests Radopholus similis and Helicotylenchus multicinctus. The best peptide transgenic line showed improved agronomic performance relative to non-transgenic controls and provided about 99% nematode resistance at harvest of the mother crop. Its yield was about 186% in comparison with the nematode challenged control non-transgenic plants based on larger bunches and diminished plant toppling in storms, due to less root damage. This is strong evidence for utilizing this resistance to support the future food security of 70 million, mainly poor Africans that depend upon plantain as a staple food.
机译:在非洲,植物寄生线虫对车前草和烹饪香蕉造成的损失高达70%。杀线虫剂的施用是不合适的,并且没有抗性品种。在大蕉生长的地方,对大蕉的需求比对其他主要农作物的需求更大。有限的现场测试表明,转基因表达的一种生物安全的抗饲料半胱氨酸蛋白酶抑制剂和一种抗根入侵的非致命性合成肽,赋予了对车前草以抵抗主要线虫害虫Radopholus similis和Helicotylenchus multicinctus的抗性。相对于非转基因对照,最好的肽转基因品系表现出改善的农艺性能,并且在收获母体作物时提供约99%的线虫抗性。与根茎较少的根茎相比,该根茎的产量与线虫激发的对照非转基因植物(基于较大的茎和暴风雨中植物倒伏减少)相比,约为186%。有力的证据证明了利用这种抵抗力来支持未来7000万人的粮食安全,其中主要是贫穷的非洲人,他们依靠车前草作为主食。

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