Pattern of genetic inheritance of morphological and agronomic traits of sorghum associated with resistance to sorghum shoot fly, <Emphasis Type="Italic">Atherigona soccata</Emphasis> |
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Authors: | Riyazaddin Mohammed Ashok Kumar Are Rajendra S Munghate Anil Gaddameedi Kavi Kishor Polavarapu Bilhan Hari C Sharma |
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Institution: | 1.International Crops Research Institute for the Semi-Arid Tropics (ICRISAT),Patancheru,India;2.Department of Genetics,Osmania University,Hyderabad,India;3.International Crops Research Institute for the Semi-Arid Tropics (ICRISAT-Sahelian Centre),Niamey,Niger;4.Dr. Panjabrao Deshmukh Krishi Vidyapeeth,Akola,India;5.Dr YS Parmar University of Horticulture and Forestry,Nauni,India |
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Abstract: | Sorghum shoot fly, Atherigona soccata is an important pest of sorghum during the seedling stage, which influences both fodder and grain yield. To understand the nature of inheritance of shoot fly resistance in sorghum, we performed generation mean analysis using two crosses IS 18551 × Swarna and M 35-1 × ICSV 700 during the 2013–2014 cropping seasons. The F1, F2, BC1 and BC2 progenies, along with the parental lines were evaluated for agronomic and morphological traits associated with resistance/susceptibility to sorghum shoot fly, A. soccata. The cross IS 18551 × Swarna exhibited significant differences between the parents for shoot fly deadhearts (%) in the postrainy season. The progenies of this cross exhibited lower shoot fly damage, suggesting that at least one of the parents should have genes for resistance to develop shoot fly-resistant hybrids. Leaf glossiness, leafsheath pigmentation and plant vigor score during the seedling stage exhibited non-allelic gene interactions with dominant gene action, whereas 100 seed weight showed both additive and dominant gene interactions. Presence of awns showed recessive nature of the awned gene. Generation mean analysis suggested that both additive and dominance gene effects were important for most of the traits evaluated in this study, but dominance had a more pronounced effect. |
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