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首页> 外文期刊>Current Journal of Applied Science and Technology >Multi-environment Manifestation of Heterosis for Morphological and Quality Traits in Maize (Zea mays L.)
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Multi-environment Manifestation of Heterosis for Morphological and Quality Traits in Maize (Zea mays L.)

机译:玉米形态和品质性状的杂种优势多环境表现。

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An investigation was carried out with 10 parents, their 45 hybrids mated in half-diallel fashion and 4 checks in RBD for estimation of heterosis in two environment ( Kharif, 2014 and Rabi, 2014-15) at the Instructional farm, RCA, MPUAT, Udaipur, India. The average productivity of maize in USA is 11.07 MT ha~(-1) while, in India it is only 3.02 MT ha~(-1) during 2018-19. We lag far behind USA and are still not able to harness the optimum yield potential in maize that could partly be addressed by evolving hybrid maize cultivar. The present study aims to is identify heterotic hybrids that could yield stably with better grain quality over a range of environments. Environment wise Analysis of variance revealed that mean squares due to genotypes were significant for all the traits in both the environments. Partitioning of total genotypic variance indicated significant contribution of parents for all the traits. Mean squares due to crosses were significant for all the traits under study except for days to 50% tasseling. Mean squares due to parents v_(s). crosses were significant for all the traits except for days to 75% brown husk. Bartlett test showed homogeneity of error variance only for one trait i.e. grain oil content. The pooled analysis for grain oil content revealed significant differences between the environments. The mean squares due to genotypes including parents, crosses and parents vs. crosses were also significant. Significance of GE interaction for oil content indicates the influence of environments on the expression of this trait. The partitioning of GE interaction into those that by parents×environment and crosses×environment interaction were also significant. Two hybrids in E_(1), viz., P_(3)×P_(6 )and P_(2)×P_(4 )has shown significant negative economic heterosis for days to 50% tasseling, days to 50% silking and days to 75% brown husk. None of the hybrids has shown significant negative economic heterosis for these traits in E_(2) environment. The hybrid P_(3)×P_(5) exhibited maximum positive economic heterosis (6.71%) for grain oil content over the best check HQPM-5 on pooled basis. The hybrid P_(5)×P_(7) (2.78%) in E_(1 )and P_(5)×P_(10) (2.58%) in E_(2) exhibited maximum positive economic heterosis for grain starch content over the best check HQPM-1. The maximum positive economic heterosis for grain protein content was exhibited by hybrid P_(5)×P_(8 )(4.14 %) in E_(1 )and by P_(3)×P_(5 )(2.49%) in E_(2) over the best check HQPM-5.
机译:在RCA,MPUAT,印度乌代浦。美国的平均玉米产量为11.07 MT ha〜(-1),而印度在2018-19年期间仅为3.02 MT ha〜(-1)。我们远远落后于美国,仍然无法利用玉米的最佳单产潜力,而这可以通过发展杂交玉米品种来部分解决。本研究旨在确定能够在一系列环境中稳定稳定地获得更好的谷物品质的杂种杂种。环境方面的方差分析表明,由于基因型所致的均方对两种环境中的所有性状均具有重要意义。总基因型差异的划分表明父母对所有性状的显着贡献。对于所有研究中的性状,由于杂交引起的均方均显着,除了抽穗至50%抽穗的天数。均方根v_(s)。杂交对所有性状均显着,除了几天到75%的棕皮。 Bartlett检验表明仅对一种性状即谷物油含量的误差方差是均匀的。谷物油含量的汇总分析显示环境之间存在显着差异。由于基因型(包括父母,杂交和父母与杂交)的均方也很显着。 GE相互作用对含油量的重要性表明环境对该特性表达的影响。 GE相互作用分为父母×环境和杂交×环境×相互作用的划分也很重要。 E_(1)中的两个杂种,即P_(3)×P_(6)和P_(2)×P_(4),表现出显着的负经济异质性,持续数天到50%抽穗,天到50%丝滑和数天。至75%的棕色果壳。在E_(2)环境中,这些杂种都没有表现出明显的负面经济异质性。杂种P_(3)×P_(5)在最佳基础HQPM-5的基础上,对谷物油含量表现出最大的正经济异质性(6.71%)。 E_(1)中的杂种P_(5)×P_(7)(2.78%)和E_(2)中的P_(5)×P_(10)(2.58%)表现出最大的正向经济杂种优势最好检查HQPM-1。 E_(1)中杂种P_(5)×P_(8)(4.1​​4%)和E_(2中P_(3)×P_(5)(2.49%)表现出最大的蛋白质正经济异质),最好检查HQPM-5。

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