印度源珍珠粟不朽群体重要农艺性状的qtl定位

Sushil Kumar , Charles Thomas Hash , Govind Singh , T. Nepolean , Rakesh K. Srivastava
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引用次数: 5

摘要

珍珠粟(Pennisetum glaucum, L.)r . Br。是一种耐候性强的营养谷物,是生活在干旱地区的人们必不可少的主食。珍珠粟种子产量稳定性有了大幅度提高,珍珠粟可种植面积减少。在珍珠谷子中配置早花、粗种和矮秆基因型是提高珍珠谷子产量和提高低投入农场适应性的重要育种策略。为此,利用ICMS 8511-S1-17-2-1-1-B-P03 × AIMP 92901-S1-183-2-2-B-08杂交组合的317个重组自交系(RIL)群体,对开花时间(FT)、株高(PH)、穗长(PL)和千粒重(TGW)等重要农艺性状进行了定位。广义遗传力估计从高到非常高,范围从0.52 (PL)到0.86 (PH)。FT与PH呈显著正相关。在LG 1上发现了一个FT关键QTL, 15个PH关键QTL分布在10条染色体上,5个PL关键QTL分布在4条染色体上,2个TGW关键QTL分布在3和7连锁群上。检测到两个主要的PH QTL,分别位于LG4B/8 cM和LG7/110 cM上。TGW对LG7影响较大的QTL表型方差(R2)为24.3%。PH和PL的R2分别为5.2 ~ 24.5%和5.0 ~ 11.5%。本研究中定位的FT和其他农艺性状的qtl可以通过标记辅助育种和基因组选择来开发优秀的杂交亲本基因型/品种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mapping QTLs for important agronomic traits in an Iniadi-derived immortal population of pearl millet

Pearl millet [Pennisetum glaucum (L.) R. Br.] is a climate-hardy nutricereal and an essential staple for the people living in dry regions. Substantial improvement has been achieved for seed yield stability in pearl millet, the cultivable area under pearl millet reduces. Deployment of early-flowering, bold-seeded and dwarf genotypes in pearl millet is a vital breeding strategy to improve grain production and enhance the adaptability of pearl millet in low-input farms. Therefore, an experiment was performed for mapping agronomically important traits like flowering time (FT), plant height (PH), panicle length (PL), and 1000-grain weight (TGW) in 317 recombinant inbred line (RIL) population derived from ICMS 8511-S1-17-2-1-1-B-P03 × AIMP 92901-S1-183-2-2-B-08 cross. Broad-sense heritability estimates were high to very high, ranging from 0.52 (PL) to 0.86 (PH). FT showed a significant positive correlation with PH. A key QTL for FT was mapped on LG 1, 15 QTLs for PH scattered on 10 chromosomes, five QTLs for PL dispersed on four chromosomes, and two QTLs for TGW spanned linkage groups 3 and 7. One QTL on LG1 was common for FT and PH. Two major QTLs for PH, one each on LG4B/8 cM and LG7/110 cM were detected. The large effect QTL for TGW on LG7 had a phenotypic variance (R2) of 24.3%. The R2 for PH and PL ranged between 5.2 - 24.5% and 5.0–11.5%, respectively. The QTLs mapped for FT and other agronomic traits in the current study can be exploited to develop elite hybrid parental genotypes/cultivars through marker-assisted breeding and genomic selection.

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