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Spanish spelt is unique germplasm for improvement of root hair length in hexaploid wheat

机译:拼写西班牙语是一种独特的种质,可改善六倍体小麦的根头发长度

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Aims Longer root hair length (RHL) increases root surface area, thereby contributing to increased phosphorous uptake. This study aimed to identify useful germplasms and quantitative trait loci (QTL) for RHL improvement in wheat. Methods The genetic variation in RHL was examined using hydroponic culture in 117 hexaploid wheat strains. Rhizosheath size and phosphorous uptake ability were also examined using high P-fixing soils with extremely low phosphorous availability (Andisols). QTL analysis was performed using backcross inbred lines from a cross between a Spanish spelt strain and a bread wheat variety. Results A wide range in genetic variation was found, especially in spelt wheat and landraces of bread wheat, whereas modern bread wheat varieties tended to show shorter RHL. Interestingly, remarkably longer RHL were observed in Spanish spelt strains than in strains from other countries. RHL exhibited a significant positive correlation with rhizosheath size and phosphorous uptake in soils. A QTL on chromosome 2A (QRhl.obu-2A) conferring longer RHL by the allele of a Spanish spelt strain was identified. It was co-located with TaRSL4-2AS, a key regulator of root hair elongation. Conclusions Spanish spelt wheat strains could be unique germplasms that provide a useful allele for increasing RHL to enhance phosphorous uptake ability.
机译:目标较长的根毛长度(RHL)增加根表面积,从而有助于增加磷吸收。本研究旨在鉴定小麦的RHL改善的有用种质和定量性状基因座(QTL)。方法使用117六倍体小麦菌株的水培培养物检测RHL的遗传变异。还使用具有极低的磷的可用性(Andisols)的高p型固定土壤检查了Rhizoheath大小和磷的摄取能力。使用来自西班牙语拼写菌株和面包小麦品种之间的交叉的回C近交线进行QTL分析。结果发现遗传变异范围广泛,特别是在拼写的小麦和面包小麦的地球体内,而现代面包小麦品种往往显示较短的RHL。有趣的是,在西班牙语拼种菌株中观察到比来自其他国家的菌株的显着更长的RHL。 RHL与Rhizohehath大小和土壤中的磷吸收表现出显着的正相关性。鉴定了染色体2A(QRHL.Obu-2a)的QTL通过西班牙拼写菌株等位基因赋予较长的RHL。它与Tarsl4-2as共同定位,是根毛伸长的关键调节器。结论西班牙拼写小麦菌株可能是独特的种质,提供了一种有用的等位基因,用于增加rhL以增强磷的摄取能力。

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