Identification of subtropical breeding lines for ideal plant architecture in maize through multiple selection indices.

IF 2 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Govinda Rai Sarma, Rajkumar U Zunjare, Vignesh Muthusamy, Ravindra K Kasana, Ikkurti Gopinath, Bhavna Singh, Godawari S Pawar, Neha Sharma, Hriipulou Duo, Rashmi Chhabra, Rakesh K Devlash, Satish K Guleria, Viswanathan Chinnusamy, Firoz Hossain
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Abstract

High plant density assumes significance for higher yield per unit area. However, reports on breeding for ideal plant architecture (IPA) in maize are limited due to lack of comprehensive characterization of germplasm. Here, we assessed genetic variation and identified inbreds for 14 plant architectural traits among 48 subtropical maize inbreds through multi-location analysis. Wide genetic variation for (i) stalk-related traits, viz., plant height (100.5-209.8 cm), ear height (26.4-106.3 cm), internode number (3.8-10.9), and internode length (8.1-15 cm); (ii) leaf-related traits, viz., leaf length (39.7-77.1 cm), leaf width (5.2-10.5 cm), leaf area (158.6-568.4 cm2), leaf angle (18.4-84.6°), leaf orientation value (2.2-71.3), number of leaves above-ear (3.2-7.2), and husk number (5.7-14.4); and (iii) tassel-related traits, viz., tassel height (21.8-34.9 cm), number of tassel branches (3.9-16.6), and tassel branching angle (10.2-78.4°) were observed. All traits showed significant variation due to environment and genotype × environment interactions. Correlation analysis implied that narrow leaf angle would produce compact tassel as well (r = 0.53, p < 0.001). Internode number and leaf width (r = - 0.33, p = 0.031), number of leaves and leaf length (r = 0.42, p = 0.004), plant height and leaf length (r = 0.39, p = 0.005), and leaf length and tassel height (r = 0.44, p = 0.003) were also associated. HKI-1105, CML-568, BAUIM-4, and BAUIM-2 were the most stable and promising inbreds with IPA using three popular selection indices (AMMI-TGSI, WAASBY-I, and MTSI). These promising inbreds could serve as suitable donors for germplasm diversification, besides generating hybrid combinations for high plant density. This is the first comprehensive analysis to characterize sub-tropically adapted maize inbreds for plant architectural traits.

利用多重选择指标鉴定亚热带玉米理想株型选育系。
高的植物密度对提高单位面积产量具有重要意义。然而,由于缺乏对种质资源的全面表征,关于玉米理想植株结构(IPA)的育种报道有限。通过多定位分析,对48个亚热带玉米自交系的14个植物结构性状进行了遗传变异评估和自交系鉴定。(1)茎秆相关性状,即株高(100.5 ~ 209.8 cm)、穗高(26.4 ~ 106.3 cm)、节间数(3.8 ~ 10.9)和节间长(8.1 ~ 15 cm)具有广泛的遗传变异;(ii)叶相关性状,即叶长(39.7 ~ 77.1 cm)、叶宽(5.2 ~ 10.5 cm)、叶面积(158.6 ~ 568.4 cm2)、叶角(18.4 ~ 84.6°)、叶取向值(2.2 ~ 71.3)、穗上叶数(3.2 ~ 7.2)、果皮数(5.7 ~ 14.4);(3)雄穗相关性状,即雄穗高度(21.8 ~ 34.9 cm)、分枝数(3.9 ~ 16.6)和分枝角(10.2 ~ 78.4°)。由于环境和基因型与环境的交互作用,所有性状均表现出显著的变异。相关分析表明,叶片角度越窄,穗状花序越紧凑(r = 0.53, p
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来源期刊
Journal of Applied Genetics
Journal of Applied Genetics 生物-生物工程与应用微生物
CiteScore
4.30
自引率
4.20%
发文量
62
审稿时长
6-12 weeks
期刊介绍: The Journal of Applied Genetics is an international journal on genetics and genomics. It publishes peer-reviewed original papers, short communications (including case reports) and review articles focused on the research of applicative aspects of plant, human, animal and microbial genetics and genomics.
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