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Novel cotton germplasm with host plant resistance to twospotted spider mite.

机译:具有宿主植物对双斑叶螨抗性的新型棉花种质。

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Host plant resistance to twospotted spider mite (Tetranychus urticae Koch) in cotton is desirable to reduce crop damage, as well as to reduce or eliminate pesticide use targeted at this pest. A range of Gossypium genotypes were evaluated over two crop seasons and their resistance identified in terms of spider mite population development, leaf damage and effect on cotton yield and fibre quality. There were low to moderate numbers of spider mites on Gossypium hirsutum L. race lines and a Gossypium barbadense L. cultivar and extremely low numbers in accessions of Gossypium arboreum L., Gossypium thurberi Tod. and Gossypium trilobum (DC.) Skovst. compared with commercial cultivars. Mites reduced lint yield of the three G. hirsutum genotypes (Sicot 71, Siokra 24 and 81024-15) but had no significant effect on yield of the two G. arboreum genotypes, BM13H and Roseum A256 in either season. Yield loss was related to leaf area damaged by mites. BM13H, Roseum A256 and Sipima 280 were classified as mite-resistant, in terms of low mite numbers, low amount of leaf damage per mite and low yield loss per mite. In addition, the genotypes of G. thurberi (GOS5310), G. trilobum (GOS5332) and G. hirsutum race line (TX111) were also defined as mite-resistant, in terms of low mite numbers, low amount of leaf damage per mite, although there are no yield data because these genotypes are photoperiod sensitive and did not flower during the experiments. These mite-resistant genotypes can be candidates for the development of mite-resistant upland cotton cultivars.
机译:希望寄主植物对棉花中的双斑叶螨(Tetranychus urticae Koch)具有抗性,以减少作物危害,并减少或消除针对该害虫的农药使用。在两个作物季节中评估了一系列棉属基因型,并根据红蜘蛛种群发育,叶片受损以及对棉花产量和纤维品质的影响确定了它们的抗性。陆地棉(Gossypium hirsutum L.)种族和巴氏棉(Gossypium barbadense L.)栽培品种的蜘蛛螨数量低至中等,而棉(Gossypium thurberi)Tod的种质则极少。和Gossypium trilobum(DC。)Skovst。与商业品种相比。螨降低了三种G.hirsutum基因型(Sicot 71,Siokra 24和81024-15)的皮棉产量,但对两种G. Arboreum基因型BM13H和Roseum A 2 56的产量没有显着影响无论哪个季节。产量损失与螨虫侵害的叶片面积有关。 BM13H,Rosum A 2 56和Sipima 280被归为抗螨虫,原因是螨虫数量少,每只螨虫叶片受损量少和每只螨虫的产量损失低。此外,从螨虫数量少,每只螨虫的叶片损伤量少的角度考虑,苏云金芽孢杆菌(GOS5310),三叶青霉(GOS5332)和陆地棉根瘤菌(TX111)的基因型也被定义为抗螨虫。 ,尽管没有产量数据,因为这些基因型对光周期敏感,并且在实验过程中没有开花。这些抗螨虫基因型可以作为抗螨虫陆地棉品种发展的候选基因。

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