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不同农业环境下新育成玉米杂交种农艺性状的多变量分析

Multivariate Analysis of Agronomic Traits in Newly Developed Maize Hybrids Grown under Different Agro-Environments.

作者信息

Omar Mohamed, Rabie Hassan A, Mowafi Saber A, Othman Hisham T, El-Moneim Diaa Abd, Alharbi Khadiga, Mansour Elsayed, Ali Mohamed M A

机构信息

Makien hybrids, Beni-Suef 62729, Egypt.

Department of Crop Science, Faculty of Agriculture, Zagazig University, Zagazig 44519, Egypt.

出版信息

Plants (Basel). 2022 Apr 28;11(9):1187. doi: 10.3390/plants11091187.

Abstract

Developing high-yielding maize hybrids is essential under the fast-growing global population and abrupt global climate change. Planting density is one of the imperative components for enhancing maize productivity. This study assessed newly developed maize hybrids under three planting densities on two sowing dates. The evaluated hybrids were 40 maize genotypes comprised of 36 F1-developed hybrids and 4 commercial high-yielding check hybrids. The developed hybrids were generated from selected maize inbred lines according to their adaptive traits to high planting density, such as prolificacy, erect leaves, short plants, early silking, anthesis-silking interval, and small tassel size. The applied planting densities were high, intermediate, and low, with 95,000, 75,000, and 55,000 plants/ha, respectively, under timely and late sowing. The high planting density displayed the uppermost grain yield compared with the intermediate and low densities at both sowing dates. The developed hybrid G36 exhibited the highest agronomic performance under high planting density at timely and late sowing. Additionally, G38, G16, G37, G23, G5, G31, G18, G7, G2, G20, G29, and G17 displayed high agronomic traits at both sowing dates. Joint regression and AMMI analyses revealed significant genotype, agro-environment, and genotype × agro-environment interaction effects for grain yield. The AMMI biplot displayed that G39 was closest to the ideal stable hybrid, and the hybrids G36, G18, G38, G17, G2, and G37 were considered desirable stable hybrids. Moreover, the GGE biplot indicated that a high planting density at an optimal sowing date could be considered a representative environment for discriminating high-yielding maize hybrids. The designated promising hybrids are recommended for further inclusion in maize breeding due to their stability and high yields.

摘要

在全球人口快速增长和全球气候变化加剧的背景下,培育高产玉米杂交种至关重要。种植密度是提高玉米产量的关键因素之一。本研究在两个播种期对新培育的玉米杂交种进行了三种种植密度的评估。评估的杂交种包括40个玉米基因型,其中有36个F1代杂交种和4个商业高产对照杂交种。这些培育出的杂交种是由选定的玉米自交系培育而成,这些自交系具有适应高密度种植的性状,如多穗性、叶片直立、植株矮小、吐丝早、雌雄开花间隔期短以及雄穗小。在适时播种和晚播条件下,应用的种植密度分别为高、中、低,每公顷植株数分别为95,000、75,000和55,000株。在两个播种期,与中等和低密度相比,高密度种植的籽粒产量最高。培育出的杂交种G36在适时播种和晚播的高密度条件下表现出最高的农艺性能。此外,G38、G16、G37、G23、G5、G31、G18、G7,、G2、G20、G29和G17在两个播种期均表现出较高的农艺性状。联合回归和AMMI分析表明,籽粒产量存在显著的基因型、农业环境和基因型×农业环境互作效应。AMMI双标图显示G39最接近理想的稳定杂交种,杂交种G36、G18、G38、G17、G2和G37被认为是理想的稳定杂交种。此外,GGE双标图表明,在最佳播种期的高密度种植可被视为鉴别高产玉米杂交种的代表性环境。由于其稳定性和高产性,推荐将指定的有前景的杂交种进一步纳入玉米育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b15/9102415/c4662a8087a4/plants-11-01187-g001.jpg

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