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Chaudhary Sarwan Kumar Himachal Pradesh Agriculture University, Palampur

Himachal Pradesh Krishi Vishvavidyalaya (renamed as Chaudhary Sarwan Kumar Himachal Pradesh Krishi Vishvavidyalaya in June, 2001) was established on 1st November, 1978.The College of Agriculture (established in May, 1966) formed the nucleus of the new farm University. It is ICAR accredited and ISO 9001:2015 certified institution. The Indian Council of Agricultural Research has ranked this University at eleventh place among all farm universities of the country. The University has been given the mandate for making provision for imparting education in agriculture and other allied branches of learning, furthering the advancement of learning and prosecution of research and undertaking extension of such sciences, especially to the rural people of Himachal Pradesh. Over the years, this University has contributed significantly in transforming the farm scenario of Himachal Pradesh. It has developed human resources, varieties and technologies and transferred these to farming community enabling the State to receive the “Krishikarman award” of Govt. of India four times in row for food grain production among small states of the country. Today, the State has earned its name for hill agricultural diversification and the farming community has imposed its faith in the University.

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  • ThesisItemOpen Access
    Heterosis and combining ability analysis of sub-tropical maize (Zea mays L.) inbred lines
    (Palampur, 2022-10-29) Ambika; Chand, Uttam
    The present investigation entitled “Heterosis and combining ability analysis of sub tropical maize (Zea mays L.) inbred lines” was carried out to assess the nature and magnitude of gene action, estimation of heterosis and combining ability effects for grain yield and its component traits. The experimental material consisted of 7 inbreds, 21 crosses and 3 checks viz., Palam Sankar Makka-2, Bio 9544 and Bio 605 were evaluated in RBD with two replications at Shivalik Agricultural Research and Extension Centre, Kangra during kharif, 2021. Analysis of variance revealed significant differences among genotypes except number of kernel rows per ear suggesting thereby sufficient amount of genetic variability in the experimental material. Analysis of variance for combining ability revealed significant GCA and SCA effects for most of the traits except GCA for days to 50% silking and shelling (%) indicated the preponderance of both additive and non-additive gene action for inheritance of the studied traits. The ratio of GCA variance to SCA variance was less than unity for all traits indicated preponderance of non-additive gene action. P1 (KGI-109) and P3 (DMEL-143) inbred lines were good general combiner for grain yield and may be used as parents for the development of high yielding single cross maize hybrids. The promising cross combinations viz., P1 × P4 (KGI-109 × DMEL-156), P1 × P3 (KGI-109 × DMEL-143), P2 × P3 (LM-18 × DMEL-143), P6 × P7 (DMR139 × KGI-110), P3 × P7 (DMEL-143 × KGI-110) and P2 × P5 (LM 18 × CML139) were identified on the basis of mean performance, SCA effects and significant standard heterosis for grain yield. In addition, these crosses also exhibited resistance to Turcicum leaf blight and moderate resistance to Banded leaf and sheath blight and Maydis leaf blight. These promising hybrids may be commercially exploited after evaluation in multi location trials over the years to assess their suitability in different agro-climatic zones of the state.