Study of Hetrosis in Sunflower (Helianthus Annuus L.)

S. Kumari, R. Sheoran, P. Godara
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Abstract

The present investigation entitled “Heterosis studies in sunflower (Helianthus annuus L.) was undertaken to estimate the heterosis for seed yield and its components in sunflower. The 15 CMS lines and 5 restorer lines were crossed in line x tester model to produce 76 hybrids. The crosses were made at research area of Oilseed Section, Department of Genetics and Plant Breeding, CCS HAU, Hisar during the spring season of 2014. Hybrids and parents were evaluated under four different environments i.e. Summer 2014, last week of August (E1) and First week of Sept. (E2) and during spring 2015, i.e. first week of February (E3) and last week of February (E4). Data on five randomly selected plants from each genotype in each replication were recorded on different quantitative characters viz. plant height (cm), head diameter (cm), stem diameter (cm) days to 50% flowering, days to maturity, hundred seed weight (g), seed yield per plant (g), oil content (%), hull content (%), percent seed filling, germination (%), electrical conductivity (µScm1 g-1), viability (%), vigour index I, vigour index II, palmitic acid (%), stearic acid (%), oleic acid (%) and linoleic acid (%) in all the test environments. Hybrids CMS 207 A x HRHA 5-3, CMS 852 A x RHA 271, CMS 207 A x RHA 297, CMS 234 A x 6D-1 and CMS 207 A x 6D-1 were found better and superior for heterosis , seed yield and its contributing trait and also for oil content. The hybrids with good heterotic value could be directly used for heterosis breeding because of their dominant nature. The use of genotypes in hybridization from these results is likely to produce more heterotic combination in future.
向日葵(Helianthus Annuus L.)杂种优势研究
本研究以向日葵(Helianthus annuus L.)杂种优势为研究对象,对向日葵种子产量及其构成因素的杂种优势进行了评价。将15个CMS系和5个恢复系在系x试验模式下杂交,得到76个杂交种。杂交于2014年春季在希萨尔省农业大学遗传与植物育种部油籽科研究区进行。在2014年夏季,8月最后一周(E1)和9月第一周(E2)以及2015年春季,2月第一周(E3)和2月最后一周(E4)四个不同的环境下,对杂种和亲本进行了评估。在每个重复中,从每个基因型中随机选择5株植物,记录其不同数量性状的数据,即株高(cm)、头粗(cm)、茎粗(cm)、开花至50%的天数、成熟天数、百粒重(g)、单株种子产量(g)、含油量(%)、壳含量(%)、结实率(%)、发芽率(%)、电导率(µScm1 g-1)、活力(%)、活力指数I、活力指数II、棕榈酸(%)、硬脂酸(%)、所有测试环境中的油酸(%)和亚油酸(%)。CMS 207a × HRHA 5-3、CMS 852 A × RHA 271、CMS 207a × RHA 297、CMS 234a × 6D-1和CMS 207a × 6D-1在杂种优势、籽粒产量及其贡献性状和含油量方面均表现出较好的优势。杂种优势价值好的杂交种,由于其显性特性,可以直接用于杂种优势育种。利用这些结果进行基因型杂交,将来可能产生更多的杂种优势组合。
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