P. B. Priya, T. Pradeep, K. Sumalini, D. Vishnuvardhan Reddy
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引用次数: 0
摘要
在当前气候变化的严峻形势下,从广义上讲,培育能够抵御压力(尤其是非生物压力)的玉米栽培品种至关重要。要利用为特定农业生态系统培育的玉米杂交种的实际潜力,现有种质的多样化是不可或缺的。与单交种相比,双交种与环境的相互作用较小,其广泛的亲本使其在不同的栽培条件下有更好的表现。在本研究中,研究了交配系统(即自花授粉、同胞交配和开放授粉)对高产玉米双交种的影响,以确定健壮和多样化的重组体。连续三季对(BML-32 x BML-6)x(BML-10 x BML-7)双交种施加三种交配系统,并对由此产生的 S3(F4)群体的性状相互关系进行评估。结果表明,与自花授粉和开放授粉相比,兄弟姐妹交配在其后代的产量及其归因性状之间建立了更强且数量最多的正相关,分别增加了 7 个和 12 个正相关。因此,在品系开发过程中采用同胞交配循环可能会带来更有效的选择过程。然而,路径分析的结果并没有因交配类型的不同而产生显著差异,尽管同胞交配的残差效应最低。
Influence of Mating Systems on Trait Associations in Segregating Populations of Maize (Zea mays L.) Double Cross
In the present challenging scenario of climate change, it is essential to breed maize cultivars that withstand stress especially abiotic stresses in a broader sense. Diversification of existing germplasm is invariable to harness the actual potential of maize hybrids which are bred for specific agroecosystems. Double crosses interact less with environment compared to single crosses and their broad parentage enables better performance under varied situations of cultivation. In the present study, impact of mating systems ie., self pollination, sib mating and open pollination was studied in a high yielding double cross of maize so as to identify robust and diverse recombinants. The double cross, (BML-32 x BML-6) x (BML-10 x BML-7) was imposed with the three types of mating systems for three consecutive seasons and the resultant S3 (F4) populations were evaluated for trait interrelationssips. It was observed that sib mating established stronger and highest number of positive correlations with seven and twelve additional positive correlations than self and open pollinations respectively among the yield and its attributing traits in its progenies. Therefore deploying sib mating cycles during line development may result in more effective selection processes. Results of path analysis, however, did not significantly vary with the mating type though sib mating showed lowest residual effect.