红莴苣叶基因对人工光照条件下莴苣叶红色的遗传效应。

Q3 Agricultural and Biological Sciences
Plant-environment interactions (Hoboken, N.J.) Pub Date : 2022-09-02 eCollection Date: 2022-08-01 DOI:10.1002/pei3.10089
Kaede C Wada, Noritoshi Inagaki, Hiroaki Sakai, Hiroto Yamashita, Yusuke Nakai, Zui Fujimoto, Jun-Ichi Yonemaru, Hironori Itoh
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引用次数: 0

摘要

有些莴苣品种会积累花青素,作为功能性食品成分。众所周知,莴苣叶在人工光照下生长时,红色表现不稳定,因此需要在人工光照栽培中更稳定地表现红色的栽培品种。在本研究中,我们的目的是剖析在人工光照下生长的各种莴苣叶栽培品种呈现红色的遗传结构。我们调查了 133 个叶用莴苣品系中红色莴苣叶(RLL)基因的基因型,其中一些是从公开的重测序数据中获得的。通过研究 RLL 基因的等位基因组合,我们进一步分析了这些基因对莴苣叶产生红色色素的贡献。通过酚类化合物的定量分析和相应的转录组数据,我们发现 RLL1(bHLH)和 RLL2(MYB)的基因表达水平依赖性调控是人工光照栽培下红叶莴苣花青素高积累的基本机制。我们的数据表明,RLL 基因型的不同组合会导致不同栽培品种花青素积累量的差异,有些基因型组合即使在人工光照下也能更有效地产生红色。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genetic effects of <i>Red Lettuce Leaf</i> genes on red coloration in leaf lettuce under artificial lighting conditions.

Genetic effects of <i>Red Lettuce Leaf</i> genes on red coloration in leaf lettuce under artificial lighting conditions.

Genetic effects of <i>Red Lettuce Leaf</i> genes on red coloration in leaf lettuce under artificial lighting conditions.

Genetic effects of Red Lettuce Leaf genes on red coloration in leaf lettuce under artificial lighting conditions.

Some cultivars of lettuce accumulate anthocyanins, which act as functional food ingredients. Leaf lettuce has been known to be erratic in exhibiting red color when grown under artificial light, and there is a need for cultivars that more stably exhibit red color in artificial light cultivation. In this study, we aimed to dissect the genetic architecture for red coloring in various leaf lettuce cultivars grown under artificial light. We investigated the genotype of Red Lettuce Leaf (RLL) genes in 133 leaf lettuce strains, some of which were obtained from publicly available resequencing data. By studying the allelic combination of RLL genes, we further analyzed the contribution of these genes to producing red coloring in leaf lettuce. From the quantification of phenolic compounds and corresponding transcriptome data, we revealed that gene expression level-dependent regulation of RLL1 (bHLH) and RLL2 (MYB) is the underlying mechanism conferring high anthocyanin accumulation in red leaf lettuce under artificial light cultivation. Our data suggest that different combinations of RLL genotypes cause quantitative differences in anthocyanin accumulation among cultivars, and some genotype combinations are more effective at producing red coloration even under artificial lighting.

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来源期刊
CiteScore
2.70
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