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首页> 外文期刊>The Indian journal of genetics & plant breeding >Identification of genotypes and marker validation for grain filling rate and grain filling duration in wheat under conservation agriculture
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Identification of genotypes and marker validation for grain filling rate and grain filling duration in wheat under conservation agriculture

机译:鉴定保护农业小麦籽粒灌装速率及谷物灌浆持续时间的基因型及标志验证

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Increase in ambient temperature beyond threshold level as predicted by global climate models may impact wheat production severely in India if it happens during grain filling stage. Grain filling rate (GFR) and grain filling duration (GFD) are critical determinant for final grain yield realization in wheat. GFR in wheat follow a slow-fast-slow pattern, however, wheat genotypes may have quantitative differences in this pattern. Ninty six diverse wheat genotypes were evaluated for GFR in two phases i.e. during first 20 days after anthesis and thereafter up to physiological maturity and grain filling duration. Out of 96 genotypes, six namely, G958, G1203, G1219, G1275, HD2985 and HDCSW18 were having high GFR during initial phase while seven genotypes viz., G949, G1081, G1124, G1159, G1204, HD3059 and HD2380 exhibited high GFR at terminal phase of grain development. Genotypes, G1263, G1207, G1423 along with some of the released varieties, HD2285, WH1105 and HD2864 were having higher GFD. Correlation between the two traits were not significant (r = -0.17959). ANOVA for GFR and GFD indicated highly significant variability among the genotypes. QTLs identified for GFR and GFD elsewhere were validated in Indian breeding material under conservation agriculture. Two SSR markers viz., XCfd42 and Xwmc500 explained about 6% and 1% variation for GFR, respectively. Similarly, already reported marker Xwmc382 was able to explain about 8% of variation for GFD in the Indian breeding material. It has been postulated from the study that by crossing the genotypes with high GFR in different grain growth stages like HD CSW 18 and HD 3059, genotypes with consistently high grain filling rate throughout the grain growth stage can be developed. The markers XCfd42 and Xwmc 382 can be further explored for fine mapping to integrate in the breeding programme for selection.
机译:随着全球气候模型预测的阈值水平的阈值水平的增加可能会在谷物灌装阶段发生时严重影响小麦生产。籽粒灌装速率(GFR)和谷物灌装持续时间(GFD)是小麦最终谷物产量实现的关键决定因素。小麦的GFR遵循缓慢缓慢的模式,然而,小麦基因型可能具有这种模式的定量差异。评估六种不同的小麦基因型在两个阶段中评估GFR,即在开花前的前20天后,此后达到生理成熟度和谷物填充持续时间。在96个基因型中,六个即G958,G1203,G1219,G1275,HD2985和HDCSW18在初始阶段具有高GFR,而七种基因型VIZ,G1159,G1204,HD3059和HD2380在终端上展出了高GFR粮食发展阶段。基因型,G1263,G1207,G1423以及一些释放品种HD2285,WH1105和HD2864具有更高的GFD。两个特征之间的相关性不显着(r = -0.17959)。 GFR和GFD的ANOVA表明基因型中的显着变异性。在保护农业下,在印度育种材料中验证了为GFR和GFD确定的QTL。两个SSR标记VIZ,XCFD42和XWMC500分别对GFR分别解释了约6%和1%的变化。类似地,已经报道的标记XWMC382能够在印度育种材料中解释GFD的约8%的变化。它已从研究中发布,通过在HD CSW18和HD 3059等不同晶粒生长阶段的高GFR中交叉基因型,可以开发在整个晶粒生长阶段的始终如一的高颗粒灌装速率的基因型。可以进一步探索标记XCFD42和XWMC 382以进行精细映射以集成在育种程序中进行选择。

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