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Multienvironment Testing for Trait Stability and G × E Interaction on N2 Fixation Plant Development and Water-Use Efficiency of 21 Elite Groundnut (Arachis hypogaea L.) Genotypes in the Guinea Savanna

机译:多环境试验对几内亚热带稀树草原21种优良花生(Arachis hypogaea L.)基因型的性状稳定性和G×E相互作用对N2固定植物发育和水分利用效率的影响

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摘要

Groundnut production constitutes an integral part of the livelihoods of the people in the Guinea savanna of West Africa. This region accounts for over 70% of the total groundnut production in Ghana, 90% in Nigeria, and 100% in Mali and Burkina Faso. However, harsh environmental conditions often result in drastic yield reductions. In this study, we identified groundnut genotypes with superior symbiotic efficiency, greater pod yield, and plant water-use efficiency from 21 advanced groundnut breeding lines from ICRISAT after testing them at three locations in the Guinea savanna of Ghana over two consecutive years. Average N contribution by the groundnut genotypes ranged from 48 to 108 kg N ha−1, and mean pod yield from 580 to 2,100 kg ha−1. Genotype 17 (ICGV-IS 08837) produced about 2.5-fold more pods than genotype 1 (Chinese), which was the most widely cultivated variety by farmers. Of the 21 genotypes studied, genotype 16 (ICGV 99247) recorded the highest shoot δ13C value and was superior in water-use efficiency, which was consistent with stability estimates and mean performance. We also measured the effects of G × E on pod yield, N2 fixation, shoot δ13C, and mega-environments for testing groundnut in the Guinea savanna, and these were all significant, although the effect was minimal on shoot δ13C values. Of the locations studied, Nyankpala and Damongo were more discriminating, and each constituted a mega-environment for conducting future groundnut trials in the Guinea savanna. Genotype 3 (ICG 6222) emerged as the best cultivar for the Damongo mega-environment, while genotype 17 was the best genotype for the Nyankpala mega-environment. The genotypes exhibiting the highest sensitivity of N2 fixation in the environment included genotype 3 (ICG 6222), genotype 4 (ICGV 00068), and genotype 10 (ICGV 03315) (bi > 1.3), while Pi estimates ranked genotypes 3, 10, and 17 as the best groundnut cultivars in terms of symbiotic N contribution. Based on the results of this study, genotype 17 (ICGV-IS 08837), genotype 3 (ICG 6222), genotype 10 (ICGV 03315), and genotype 4 (ICGV 00068), which were the most outstanding in terms of the overall pod yield, shoot biomass production, and amount of N-fixed, were the most suitable candidates to recommend for use in developing new varieties for the Guinea savanna of Ghana. Genotype 17 (ICGV-IS 08837) has already been released as a commercial variety for the Guinea savanna of Ghana since October 2018.
机译:花生的生产是西非几内亚热带稀树草原人民生活的组成部分。该地区占加纳花生总产量的70%以上,尼日利亚为90%,马里和布基纳法索为100%。但是,恶劣的环境条件通常会导致产量大幅下降。在这项研究中,我们在连续两年对加纳几内亚热带稀树草原的三个位置进行了测试之后,从ICRISAT的21个先进花生育种系中鉴定了具有优异共生效率,较高豆荚产量和植物水分利用效率的花生基因型。花生基因型的平均氮素贡献量在48至108 kg N ha -1 之间,平均豆荚产量在580至2,100 kg ha -1 之间。基因型17(ICGV-IS 08837)产生的豆荚比基因型1(中国人)多2.5倍,后者是农民种植最广泛的品种。在研究的21个基因型中,基因型16(ICGV 99247)记录了最高的芽δ 13 C值,并且在水分利用效率方面表现优异,这与稳定性估计值和平均性能一致。我们还测量了G×E对几内亚热带稀树草原的花生产量,N2固定,芽δ 13 C以及巨型环境中花生试验的影响,尽管这些影响是显着的δ 13 C值最小。在所研究的地点中,Nyankpala和Damongo更具区分性,它们各自构成了一个巨大的环境,可供将来在几内亚热带稀树草原进行花生试验。基因型3(ICG 6222)成为Damongo巨型环境的最佳品种,而基因型17是Nyankpala巨型环境的最佳基因型。在环境中表现出最高的N2固定敏感性的基因型包括基因型3(ICG 6222),基因型4(ICGV 00068)和基因型10(ICGV 03315)(bi> 1.3),而Pi估计基因型3、10和就共生N贡献而言,花生是17个最佳花生品种。根据这项研究的结果,就整个豆荚而言,基因型17(ICGV-IS 08837),基因型3(ICG 6222),基因型10(ICGV 03315)和基因型4(ICGV 00068)最为突出产量,枝条生物量生产和固氮量是推荐用于加纳几内亚热带稀树草原开发新品种的最合适候选人。自2018年10月以来,基因型17(ICGV-IS 08837)已作为加纳的几内亚热带稀树草原的商业品种发布。

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