Department of Physiology and Cell Biology, Molecular Plant Nutrition, Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Gatersleben, Germany.
Department of Physiology and Cell Biology, Metalloid Transport, Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Gatersleben, Germany.
Physiol Plant. 2021 Apr;171(4):809-822. doi: 10.1111/ppl.13340. Epub 2021 Feb 9.
Boron (B) is an essential mineral element for plant growth, and the seed B pool of crops can be crucial when seedlings need to establish on low-B soils. To date, it is poorly understood how B accumulation in grain crops is genetically controlled. Here, we assessed the genotypic variation of the B concentration in grains of a spring barley (Hordeum vulgare L.) association panel that represents broad genetic diversity. We found a large genetic variation of the grain B concentration and detected in total 23 quantitative trait loci (QTLs) using genome-wide association mapping. HvNIP2;2/HvLsi6, encoding a potential B-transporting membrane protein, mapped closely to a major-effect QTL accounting for the largest proportion of grain B variation. Based on transport studies using heterologous expression systems and gene expression analysis, we demonstrate that HvNIP2;2/HvLsi6 represents a functional B channel and that expression variation in its transcript level associates with root and shoot B concentrations as well as with root dry mass formation under B-deficient conditions.
硼(B)是植物生长所必需的矿物质元素,当幼苗需要在低硼土壤上生长时,作物的种子 B 库可能是至关重要的。迄今为止,人们对谷物作物中硼的积累是如何受到遗传控制的还知之甚少。在这里,我们评估了代表广泛遗传多样性的春大麦(Hordeum vulgare L.)关联群体中籽粒硼浓度的基因型变异。我们发现籽粒硼浓度存在很大的遗传变异,并使用全基因组关联作图总共检测到 23 个数量性状位点(QTL)。编码潜在硼转运膜蛋白的 HvNIP2;2/HvLsi6 紧密映射到一个主要效应 QTL,该 QTL 占籽粒硼变异的最大比例。基于使用异源表达系统和基因表达分析的转运研究,我们证明 HvNIP2;2/HvLsi6 代表一个功能性硼通道,其转录水平的表达变化与根和地上部硼浓度以及在硼缺乏条件下根干质量形成有关。