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蓝莓代谢物和果实品质性状的多样性有助于多倍体和物种分化,并为未来的遗传研究制定了策略。

Diversity in Metabolites and Fruit Quality Traits in Blueberry Enables Ploidy and Species Differentiation and Establishes a Strategy for Future Genetic Studies.

作者信息

Mengist Molla F, Grace Mary H, Xiong Jia, Kay Colin D, Bassil Nahla, Hummer Kim, Ferruzzi Mario G, Lila Mary Ann, Iorizzo Massimo

机构信息

Plants for Human Health Institute, North Carolina State University, NCRC, Kannapolis, NC, United States.

USDA-ARS-National Clonal Germplasm Repository, Corvallis, OR, United States.

出版信息

Front Plant Sci. 2020 Apr 3;11:370. doi: 10.3389/fpls.2020.00370. eCollection 2020.

Abstract

Blueberry is well recognized as a rich source of health promoting phytochemicals such as flavonoids and phenolic acids. Multiple studies in blueberry and other crops indicated that flavonoids and phenolic acids function as bioactive compounds in the human body promoting multiple health effects. Despite their importance, information is limited about the levels of variation in bioactive compounds within and between ploidy level and species, and their association with fruit quality traits. Such information is crucial to define a strategy to study the genetic mechanisms controlling these traits and to select for these traits in blueberry breeding programs. Here we evaluated 33 health related phytochemicals belonging to four major groups of flavonoids and phenolic acids across 128 blueberry accessions over two years together with fruit quality traits, including fruit weight, titratable acidity, total soluble acids and pH. Highly significant variation between accessions, years, and accession by year interaction were identified for most of the traits. Cluster analysis grouped phytochemicals by their functional structure (e.g., anthocyanins, flavanols, flavonols, and phenolic acids). Multivariate analysis of the traits resulted in separation of diploid, tetraploid and hexaploid accessions. Broad sense heritability of the traits estimated in 100 tetraploid accessions, ranged from 20 to 90%, with most traits revealing moderate to high broad sense heritability (H > 40%), suggesting that strong genetic factors control these traits. Fruit size can be estimated as a proxy of fruit weight or volume and vice versa, and it was negatively correlated with content of most of phytochemicals evaluated here. However, size-independent variation for anthocyanin content and profile (e.g., acylated vs. non-acylated anthocyanin) exists in the tetraploid accessions and can be explored to identify other factors such as genes related to the biosynthetic pathway that control this trait. This result also suggests that metabolite concentrations and fruit size, to a certain degree can be improved simultaneously in breeding programs. Overall, the results of this study provide a framework to uncover the genetic basis of bioactive compounds and fruit quality traits and will be useful to advance blueberry-breeding programs focusing on integrating these traits.

摘要

蓝莓被公认为是促进健康的植物化学物质(如黄酮类化合物和酚酸)的丰富来源。对蓝莓和其他作物的多项研究表明,黄酮类化合物和酚酸在人体中作为生物活性化合物发挥作用,促进多种健康效应。尽管它们很重要,但关于多倍体水平和物种内部及之间生物活性化合物的变异水平及其与果实品质性状的关联的信息有限。这些信息对于确定研究控制这些性状的遗传机制的策略以及在蓝莓育种计划中选择这些性状至关重要。在这里,我们在两年内评估了128份蓝莓种质中属于四大类黄酮和酚酸的33种与健康相关的植物化学物质,以及果实品质性状,包括果实重量、可滴定酸度、总可溶性酸和pH值。对于大多数性状,在种质、年份以及种质与年份的相互作用之间发现了高度显著的变异。聚类分析根据植物化学物质的功能结构(如花色苷、黄烷醇、黄酮醇和酚酸)对其进行分组。对这些性状的多变量分析导致二倍体、四倍体和六倍体种质的分离。在100份四倍体种质中估计的这些性状的广义遗传力范围为20%至90%,大多数性状显示出中等至高的广义遗传力(H>40%),这表明强大的遗传因素控制着这些性状。果实大小可以作为果实重量或体积的替代指标进行估计,反之亦然,并且它与这里评估的大多数植物化学物质的含量呈负相关。然而,四倍体种质中存在花色苷含量和谱(如酰化与非酰化花色苷)的与大小无关的变异,可以探索这些变异以识别其他因素,如与控制该性状的生物合成途径相关的基因。这一结果还表明,在育种计划中可以在一定程度上同时提高代谢物浓度和果实大小。总体而言,本研究结果提供了一个框架,以揭示生物活性化合物和果实品质性状的遗传基础,并将有助于推进侧重于整合这些性状的蓝莓育种计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8c3/7147330/caa962415565/fpls-11-00370-g001.jpg

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