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首页> 外文期刊>Journal of Experimental Botany >From promise to application: root traits for enhanced nutrient capture in rice breeding
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From promise to application: root traits for enhanced nutrient capture in rice breeding

机译:从承诺到应用:提高水稻育种养分吸收的根系性状

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摘要

Improving nutrient uptake is an objective in crop breeding, especially in tropical areas where infertile soils dominate and farmers may not have the resources to improve soil fertility through fertilizer application. Scientific endeavors to understand the genetic basis of nutrient acquisition have mostly followed reverse genetic approaches. This has undoubtedly led to improved understanding of basic principles in root development and nutrient transport. However, little evidence suggests that the genes identified are actively utilized in breeding programs, and the bottleneck has been the failure to establish links between allelic variation for identified genes and performance in the field. Screening experiments typically reveal large genotypic variation in performance under nutrient deficiency, strongly suggesting the presence of superior alleles for genes controlling root growth and/or nutrient uptake processes. Progress in sequencing technology has enabled characterizations of allelic variation across whole genomes and an international effort has recently culminated in the sequencing of 3000 rice genomes from the International Rice Research Institute genebank. Queries of the 3000 rice sequence database offer immediate possibilities to assess the extent to which allelic variation exists for candidate genes. By selecting subsets of accessions, allelic effects can be tested, diagnostic markers developed, and new donors identified. Technological and conceptual advances in phenotyping of root traits offer improved possibilities to assure that trait-allele associations are established in ways that link to field performance. Genotype-to-phenotype relationships can thus be predicted and tested with unprecedented precision, facilitating the discovery and transfer of beneficial nutrition-related alleles and associated markers into existing breeding pipelines.
机译:提高养分吸收是作物育种的目标,特别是在不肥土壤占主导地位且农民可能没有资源通过施用肥料来提高土壤肥力的热带地区。了解营养获取的遗传基础的科学努力大多遵循反向遗传方法。无疑,这使人们对根系发育和养分转运的基本原理有了更好的了解。然而,几乎没有证据表明,鉴定出的基因已在育种计划中得到积极利用,而瓶颈在于未能在鉴定出的基因的等位基因变异与田间表现之间建立联系。筛选实验通常显示在营养缺乏时性能的大基因型变异,强烈暗示存在控制根系生长和/或养分吸收过程的基因的优良等位基因。测序技术的进步使得能够表征整个基因组的等位基因变异,国际上的努力最近以国际水稻研究所基因库中的3000个水稻基因组的测序为高潮。 3000水稻序列数据库的查询提供了立即的可能性,以评估候选基因存在等位基因变异的程度。通过选择种质子集,可以测试等位基因效应,开发诊断标记并鉴定新的供体。根性状表型的技术和概念进展为确保以与田间表现相关的方式建立性状-等位基因关联提供了改进的可能性。因此,可以以前所未有的精度预测和测试基因型与表型之间的关系,从而有助于发现有益的营养相关等位基因和相关标记并将其转移到现有的育种管道中。

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