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Mapping of QTLs for lateral and axile root growth of tropical maize

机译:热带玉米侧根和腋根生长的QTL定位

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Maize genotypes may adapt to dry environments by avoiding desiccation by means of a deeper root system or by maintaining growth and water extraction at low water potentials. The aim of this study was to determine the quantitative genetic control of root growth and root morphology in a population of 236 recombinant inbred lines (RILs) from the cross between CML444 (high-yielding) c SC-Malawi (low-yielding), which segregates for the response to drought stress at flowering. The RILs and the parental lines were grown on blotting paper in growth pouches until the two-leaf stage under non-stressed conditions; the parents were additionally exposed to desiccation stress induced by polyethylene glycol with a molecular weight of 8000 Dalton (PEG-8000). The lengths of axile and lateral roots were measured non-destructively at 2, 5, 7 and 9 days after germination, by scanning with an A4 scanner followed by digital image analysis. CML444 had a lower rate constant of lateral root elongation (kLat) than SC-Malawi, but the two genotypes did not differ in their response to desiccation. QTLs affecting root vigor, as depicted by increments in kLat, the elongation rate of axile roots (ERAx) and the number of axile roots (NoAx) were identified in bins 2.04 and 2.05. QTLs for NoAx and ERAx collocated with QTLs for yield parameters in bins 1.03-1.04 and 7.03-04. The correspondence of QTLs for axile root traits in bins 1.02-1.03 and 1.08 and QTLs for lateral roots traits in bins 2.04-2.07 in several mapping populations suggests the presence of genes controlling root growth in a wide range of genetic backgrounds.
机译:玉米基因型可通过避免更深的根系干燥或在低水势下保持生长和水分提取来适应干旱环境。这项研究的目的是从CML444(高产)c SC-Malawi(低产)的杂交中确定236个重组自交系(RIL)群体中根系生长和根系形态的定量遗传控制。分离开花时对干旱胁迫的反应。将RIL和亲本系在吸水纸上的生长袋中生长,直到在非胁迫条件下的双叶阶段;父母还暴露于分子量为8000道尔顿(PEG-8000)的聚乙二醇引起的干燥应力。通过使用A4扫描仪进行扫描,然后进行数字图像分析,在发芽后2、5、7和9天无损测量腋窝和侧根的长度。 CML444具有比SC-Malawi更低的侧根伸长率常数(kLat),但两种基因型对干燥的反应没有差异。在分档2.04和2.05中确定了影响根系活力的QTL,如kLat的增加,轴心根的伸长率(ERAx)和轴根数(NoAx)所示。在仓位1.03-1.04和7.03-04中,NoAx和ERAx的QTL与产量参数的QTL并置。在几个作图种群中,仓位1.02-1.03和1.08中轴系根性状的QTL与仓位2.04-2.07中侧根性状的QTL的对应关系表明,在广泛的遗传背景下,存在控制根系生长的基因。

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