Suppr超能文献

在不同水分条件下与谷物蛋白质和矿物质营养成分浓度相关的基因组位点。

Genomic loci associated with grain protein and mineral nutrients concentrations in under contrasting water regimes.

作者信息

Alemu Muluken Demelie, Ben-Zeev Shiran, Barak Vered, Tutus Yusuf, Cakmak Ismail, Saranga Yehoshua

机构信息

R. H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, Israel.

Crop Research, Ethiopian Institute of Agricultural Research, Addis Ababa, Ethiopia.

出版信息

Front Plant Sci. 2024 Dec 20;15:1458408. doi: 10.3389/fpls.2024.1458408. eCollection 2024.

Abstract

Climate change is becoming a global challenge, threating agriculture's capacity to meet the food and nutritional requirements of the growing population. Underutilized crops present an opportunity to address climate change and nutritional deficiencies. Tef is a stress-resilient cereal crop, producing gluten-free grain of high nutritional quality. However, knowledge is lacking on tef's diversity of grain nutritional properties, their interaction with environmental conditions (e.g., water availability) and the underlying genomic loci. We assessed the effect of water availability on tef grain nutrient concentrations and identify the associated genomic loci. A collection of 223 tef genotypes, a subset of tef diversity panel 300 (TDP-300), were grown in the field under well-watered and water-limited conditions in 2021, and phenotyped for 11 traits including: grain protein and mineral concentrations and seed color. A genome-wide association study was conducted using 28,837 single-nucleotide polymorphisms (SNPs) and phenotypic data to identify marker-trait associations (MTAs). Tef grain nutrient concentrations exhibited wide genetic diversity with a significant influence of environment. Protein and most micronutrients were more concentrated under water-limited conditions, whereas most macronutrients were higher in the well-watered environment. A total of 59 SNPs were associated with one or more of the studied traits, resulting in 65 MTAs detected under both water treatments, and providing insights into the genetic basis of grain nutrients. Five SNPs reflected multiple associations, with four detecting the same trait under both treatments (multiple-environment effect), and one associated with both Zn and K (pleiotropic effect). In addition, two pairs of closely linked SNPs reflected multiple-environment effects. While multiple-environment associations provide greater support for the integrity of these MTAs, the pleiotropic locus hints at a common mechanism controlling two mineral ions. The identified MTAs shed new light on the genomic architecture of tef's nutritional properties and provide the basis to enhance tef grain nutritional quality alongside drought resilience.

摘要

气候变化正成为一项全球性挑战,威胁着农业满足不断增长人口的粮食和营养需求的能力。未充分利用的作物为应对气候变化和营养缺乏问题提供了契机。画眉草是一种具有抗逆性的谷类作物,能产出营养品质高的无麸质谷物。然而,关于画眉草籽粒营养特性的多样性、其与环境条件(如水分供应)的相互作用以及潜在的基因组位点,人们还缺乏了解。我们评估了水分供应对画眉草籽粒养分浓度的影响,并确定了相关的基因组位点。2021年,在田间充分供水和水分受限条件下种植了一组223份画眉草基因型材料,它们是画眉草多样性面板300(TDP - 300)的一个子集,并对包括籽粒蛋白质和矿物质浓度以及种子颜色在内的11个性状进行了表型分析。利用28,837个单核苷酸多态性(SNP)和表型数据进行了全基因组关联研究,以确定标记 - 性状关联(MTA)。画眉草籽粒养分浓度表现出广泛的遗传多样性,且受环境影响显著。在水分受限条件下,蛋白质和大多数微量营养素的浓度更高,而在充分供水的环境中,大多数常量营养素的含量更高。共有59个SNP与一个或多个研究性状相关,在两种水分处理下共检测到65个MTA,这为籽粒养分的遗传基础提供了见解。五个SNP反映了多重关联,其中四个在两种处理下检测到相同性状(多环境效应),一个与锌和钾都相关(多效性效应)。此外,两对紧密连锁的SNP反映了多环境效应。虽然多环境关联为这些MTA的完整性提供了更大支持,但多效性位点暗示了控制两种矿质离子的共同机制。所确定的MTA为画眉草营养特性的基因组结构提供了新的认识,并为提高画眉草籽粒营养品质以及抗旱能力提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c1f/11695128/68d946244e78/fpls-15-1458408-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验