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首页> 外文期刊>Scientific reports. >Genotype?×?Environment interactions of Nagina22 rice mutants for yield traits under low phosphorus, water limited and normal irrigated conditions
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Genotype?×?Environment interactions of Nagina22 rice mutants for yield traits under low phosphorus, water limited and normal irrigated conditions

机译:低磷,缺水和正常灌溉条件下Nagina22水稻突变体的基因型××环境互作关系

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Multi environment testing helps identify stable genotypes especially for adverse abiotic stress situations. In the era of climate change and multiple abiotic stresses, it becomes important to analyze stability of rice lines under both irrigated and stress conditions. Mutants are an important genetic resource which can help in revealing the basis of natural variation. We analyzed 300 EMS induced mutants of aus rice cultivar Nagina22 (N22) for their G?×?E interaction and stability under low phosphorus (P), water limited and irrigated conditions. Environmental effect and interaction were more significant than genotypic contribution on grain yield (GY), productive tillers (TN) and plant height (PH) under these three environmental conditions in dry season, 2010. GY and TN were more affected by low P stress than by water limited condition, but PH was not significantly different under these two stresses. Mutants G17, G209, G29, G91, G63 and G32 were stable for GY in decreasing order of stability across the three environments but G254 and G50 were stable only in low P, G17 and G45 only in water limited and G295 and G289 only in normal irrigated condition. We then selected and evaluated 3 high yielding mutants, 3 low yielding mutants and N22 for their stability and adaptability to these 3 environments in both wet and dry seasons for six years (2010–2015). The most stable lines based on the combined analysis of 12 seasons were G125 (NH210) under normal condition, G17 (NH686), G176 (NH363) and G284 (NH162) in low P condition and G176 (NH363) under water limited condition. G176 was the best considering all 3 conditions. When screened for 15 Pup1 gene-specific markers, G176 showed alleles similar to N22. While two other low-P tolerant lines G17 and G65 showed N22 similar alleles only at k-1 and k-5 but a different allele or null allele at 13 other loci. These stable mutants are a valuable resource for varietal development and to discover genes for tolerance to multiple abiotic stresses.
机译:多环境测试有助于确定稳定的基因型,尤其是在不利的非生物胁迫情况下。在气候变化和多种非生物胁迫时代,分析水稻在灌溉和胁迫条件下的稳定性变得至关重要。突变体是重要的遗传资源,可以帮助揭示自然变异的基础。我们分析了300个EMS诱导的澳大利亚水稻品种Nagina22(N22)的突变体在低磷(P),缺水和灌溉条件下的GΔ×ΔE相互作用和稳定性。在这三个环境条件下,2010年旱季,环境效应和相互作用对基因型的影响比谷物产量(GY),生产分till(TN)和株高(PH)更重要。低磷胁迫对GY和TN的影响比对基因型的影响更大。在有限的水分条件下,但在这两个压力下PH值没有显着差异。突变体G17,G209,G29,G91,G63和G32在三种环境中的稳定性按递减顺序对GY稳定,但G254和G50仅在低P时稳定,G17和G45仅在缺水时稳定,而G295和G289仅在正常情况下稳定灌溉条件。然后,我们选择并评估了3个高产突变体,3个低产突变体和N22在六年(2010-2015年)的湿季和旱季对这三种环境的稳定性和适应性。根据12个季节的综合分析,最稳定的品系是正常条件下的G125(NH210),低磷条件下的G17(NH686),G176(NH363)和G284(NH162)和缺水条件下的G176(NH363)。考虑到所有三个条件,G176是最好的。当筛选15个Pup1基因特异性标记时,G176显示了与N22类似的等位基因。而另外两个低磷耐受性品系G17和G65仅在k-1和k-5处显示N22类似等位基因,而在其他13个基因座处显示不同的等位基因或无效等位基因。这些稳定的突变体是用于品种开发和发现耐受多种非生物胁迫的基因的宝贵资源。

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