首页> 外文期刊>Frontiers in Plant Science >Inheritance of Resistance to Sorghum Shoot Fly, Atherigona soccata in Sorghum, Sorghum bicolor (L.) Moench
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Inheritance of Resistance to Sorghum Shoot Fly, Atherigona soccata in Sorghum, Sorghum bicolor (L.) Moench

机译:抗高粱笋蝇的遗传,高粱中的 Atherigona soccata 双色高粱(L.)Moench

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Sorghum production is affected by a wide array of biotic constraints, of which sorghum shoot fly, Atherigona soccata is the most important pest, which severely damages the sorghum crop during the seedling stage. Host plant resistance is one of the major components to control sorghum shoot fly, A. soccata . To understand the nature of gene action for inheritance of shoot fly resistance, we evaluated 10 parents, 45 F_(1)'s and their reciprocals in replicated trials during the rainy and postrainy seasons. The genotypes ICSV 700, Phule Anuradha, ICSV 25019, PS 35805, IS 2123, IS 2146, and IS 18551 exhibited resistance to shoot fly damage across seasons. Crosses between susceptible parents were preferred for egg laying by the shoot fly females, resulting in a susceptible reaction. ICSV 700, ICSV 25019, PS 35805, IS 2123, IS 2146, and IS 18551 exhibited significant and negative general combining ability ( gca ) effects for oviposition, deadheart incidence, and overall resistance score. The plant morphological traits associated with expression of resistance/susceptibility to shoot fly damage such as leaf glossiness, plant vigor, and leafsheath pigmentation also showed significant gca effects by these genotypes, suggesting the potential for use as a selection criterion to breed for resistance to shoot fly, A. soccata . ICSV 700, Phule Anuradha, IS 2146 and IS 18551 with significant positive gca effects for trichome density can also be utilized in improving sorghums for shoot fly resistance. The parents involved in hybrids with negative specific combining ability ( sca ) effects for shoot fly resistance traits can be used in developing sorghum hybrids with adaptation to postrainy season. The significant reciprocal effects of combining abilities for oviposition, leaf glossy score and trichome density suggested the influence of cytoplasmic factors in inheritance of shoot fly resistance. Higher values of variance due to specific combining ability (σ~(2)s), dominance variance (σ~(2)d), and lower predictability ratios than the variance due to general combining ability (σ~(2)g) and additive variance (σ~(2)a) for shoot fly resistance traits indicated the predominance of dominance type of gene action, whereas trichome density, leaf glossy score, and plant vigor score with high σ~(2)g, additive variance, predictability ratio, and the ratio of general combining ability to the specific combining ability showed predominance of additive type of gene action indicating importance of heterosis breeding followed by simple selection in breeding shoot fly-resistant sorghums. Most of the traits exhibited high broadsense heritability, indicating high inheritance of shoot fly resistance traits.
机译:高粱的生产受到各种各样的生物限制因素的影响,其中高粱的嫩枝是苍蝇,而Atherigona soccata是最重要的害虫,在苗期严重破坏了高粱的作物。寄主植物抗性是控制高粱笋蝇A. soccata的主要成分之一。为了了解基因作用对芽蝇抗性遗传的性质,我们在雨季和雨季后的重复试验中评估了10个亲本,45个F_(1)及其亲本。基因型ICSV 700,Phule Anuradha,ICMS 25019,PS 35805,IS 2123,IS 2146和IS 18551在整个季节表现出抗性。易感双亲之间的杂交优选由实蝇雌虫产卵,从而引起易感反应。 ICSV 700,ICMS 25019,PS 35805,IS 2123,IS 2146和IS 18551对产卵,死心率和总抵抗力评分显示出显着和负面的一般结合能力(gca)效应。与芽蝇抗性/敏感性表达相关的植物形态性状,例如叶片光泽度,植物活力和叶片鞘色素沉着也显示出了这些基因型的显着gca效应,这表明其有可能作为选择标准来繁殖芽抗性飞,A。soccata。对毛状体密度具有显着正gca效应的ICSV 700,Phule Anuradha,IS 2146和IS 18551也可用于提高高粱的抗苍蝇能力。参与杂交的亲本对芽蝇抗性具有负特异性结合能力(sca)效应,可用于开发适应雨季的高粱杂交种。产卵能力,叶片光泽度和毛状体密度相结合的显着倒数效应表明,胞质因子对耐蝇新芽遗传有影响。与特定的合并能力(σ〜(2)g)和方差相比,由于特定的合并能力(σ〜(2)s),优势方差(σ〜(2)d),方差值高,可预测性比低,枝条抗性性状的加性方差(σ〜(2)a)表明基因行为的优势类型占优势,而具有较高σ〜(2)g的毛线密度,叶片光泽度得分和植物活力得分,加性方差,可预测性比率和一般结合能力与特定结合能力的比值显示出基因作用的加性类型占优势,表明杂种优势育种的重要性,然后在育苗抗蝇高粱中进行简单选择。多数性状表现出较高的广义遗传力,表明其具有较高的遗传性。

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