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多胁迫环境下早熟玉米自交系的测交表现和配合力分析。

Testcross performance and combining ability of early maturing maize inbreds under multiple-stress environments.

机构信息

CSIR- Crops Research Institute, P. O. Box 3785, Kumasi, Ghana.

Department of Crop and Soil Sciences, Faculty of Agriculture, Kwame Nkrumah University of Science and Technology, Kumasi, Ghana.

出版信息

Sci Rep. 2019 Sep 24;9(1):13809. doi: 10.1038/s41598-019-50345-3.

Abstract

Availability of multiple-stress tolerant maize is critical for improvement in maize production in West and Central Africa (WCA). A study was carried out to (i) assess a set of inbred lines for combining ability under stressed and optimal conditions, (ii) determine the performance of the testcrosses under different conditions, and (iii) identify outstanding hybrids across the conditions. Two hundred and five testcrosses were planted with five hybrid checks under Striga-infested, low soil nitrogen, drought and optimal conditions between 2015 and 2016 in Nigeria. The grain yield inheritance under optimal condition was largely regulated by additive gene effect whereas non-additive gene effects largely regulated grain yield under the three stresses. Four of the inbreds had significant positive general combining ability effects each under low N and drought, and three under Striga infestation for grain yield. The inbreds could be vital sources of beneficial alleles for development and improvement of tropical yellow maize hybrids and populations. Hybrids TZEI 443 x ENT 13 and TZEI 462 x TZEI 10 were high yielding and stable; they out-performed the three early maturing released hybrids in WCA. The new hybrids should be extensively assessed and released in the sub-region to improve food security.

摘要

在西非和中非(WCA),多种逆境耐受型玉米的供应对于提高玉米产量至关重要。本研究旨在:(i)评估一组自交系在胁迫和最佳条件下的配合力;(ii)确定测交种在不同条件下的表现;(iii)鉴定不同条件下的优秀杂种。2015 年至 2016 年期间,在尼日利亚,205 个测交种与 5 个杂种对照在受寄生杂草侵害、低土壤氮、干旱和最佳条件下种植。在最佳条件下,籽粒产量的遗传主要受加性基因效应调控,而在三种胁迫下,非加性基因效应主要调控籽粒产量。有 4 个自交系在低氮和干旱条件下,以及 3 个自交系在寄生杂草侵染下,每个自交系的一般配合力效应均为显著正效应。这些自交系可能是开发和改良热带黄玉米杂种和群体的有益等位基因的重要来源。杂种 TZEI 443 x ENT 13 和 TZEI 462 x TZEI 10 产量高且稳定;它们在 WCA 中优于三种早熟的已发布杂种。新杂种应在该次区域内进行广泛评估和推广,以提高粮食安全。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fda9/6760492/4aa4099f28e3/41598_2019_50345_Fig1_HTML.jpg

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