白三叶草(Trifolium repens L.)白色叶痕变异的遗传和可塑性。

IF 3.6 2区 生物学 Q1 PLANT SCIENCES
Wen-His Kuo, Eimear Cunningham, Emily Guo, Kenneth M Olsen
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引用次数: 0

摘要

背景和目的:叶片变色是植物中常见的现象,具有多种适应功能。然而,其遗传基础在很大程度上仍未得到解决;尤其是通过改变叶片组织结构影响光反射而产生的变异。白三叶在基于结构的白色叶痕变色方面具有天然的多态性。因此,它提供了一个有用的系统来研究这种表型的遗传基础,并评估改变叶片结构对光合效率造成的潜在损失。本研究试图绘制控制白三叶草白色叶痕的基因座图谱,并评估白色叶痕、叶片厚度和光合效率之间的关系:方法:我们利用基于参考基因组的 SNP 标记,从 F3 绘图群体中生成了高密度遗传连锁图谱。通过详细的表型评估对白叶痕和叶片厚度进行量化,以检验组织厚度如何影响变色表型。进行了数量性状基因座(QTL)作图,以确定其遗传基础。光合效率测量用于检验变色与光合产出之间的生理权衡:主要结果:V基因座是导致白色叶痕多态性的一个主要基因,被绘制到了5号染色体的远端,还绘制了几个对变色强度有加成作用的修饰基因座。白色叶痕的存在和强度与叶片厚度的增加有关;然而,变色程度的增加并未对光合效率产生明显影响:我们成功绘制了白三叶草白色叶痕的主要基因座以及几个修饰基因座,揭示了这种基于结构的变异的复杂基础。变色叶片的光合作用明显不受影响,这对变色在光合作用效率和其他适应功能之间造成适应性权衡的观点提出了挑战。这一发现表明,其他因素可能会维持白三叶草的白色叶痕多态性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetics and plasticity of white leaf mark variegation in white clover (Trifolium repens L.).

Background and aims: Leaf variegation is common in plants and confers diverse adaptive functions. However, its genetic underpinnings remain largely unresolved; this is particularly true for variegation that arises through modified leaf tissue structure that affects light reflection. White clover is naturally polymorphic for structure-based white leaf mark variegation. It therefore provides a useful system to examine the genetic basis of this phenotype, and to assess potential costs to photosynthetic efficiency resulting from modified leaf structures. This study sought to map the loci controlling the white leaf mark in white clover and evaluate the relationship between white leaf mark, leaf thickness, and photosynthetic efficiency.

Methods: We generated a high-density genetic linkage map from an F3 mapping population, employing reference genome-based SNP markers. White leaf mark was quantified through detailed phenotypic evaluations alongside leaf thickness to test how tissue thickness may affect the variegation phenotype. Quantitative trait locus (QTL) mapping was performed to characterize their genetic bases. Photosynthetic efficiency measurements were used to test for physiological trade-offs between variegation and photosynthetic output.

Key results: The V locus, a major gene responsible for the white leaf mark polymorphism, was mapped to the distal end of chromosome 5, and several modifier loci were also mapped that contribute additively to variegation intensity. The presence and intensity of white leaf mark was associated with greater leaf thickness; however, increased variegation did not detectably affect photosynthetic efficiency.

Conclusions: We have successfully mapped the major locus governing the white leaf mark in white clover, along with several modifier loci, revealing a complex basis for this structure-based variegation. The apparent absence of compromised photosynthesis in variegated leaves challenges the notion that variegation creates fitness trade-offs between photosynthetic efficiency and other adaptive functions. This finding suggests that other factors may maintain the white leaf mark polymorphism in white clover.

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来源期刊
Annals of botany
Annals of botany 生物-植物科学
CiteScore
7.90
自引率
4.80%
发文量
138
审稿时长
3 months
期刊介绍: Annals of Botany is an international plant science journal publishing novel and rigorous research in all areas of plant science. It is published monthly in both electronic and printed forms with at least two extra issues each year that focus on a particular theme in plant biology. The Journal is managed by the Annals of Botany Company, a not-for-profit educational charity established to promote plant science worldwide. The Journal publishes original research papers, invited and submitted review articles, ''Research in Context'' expanding on original work, ''Botanical Briefings'' as short overviews of important topics, and ''Viewpoints'' giving opinions. All papers in each issue are summarized briefly in Content Snapshots , there are topical news items in the Plant Cuttings section and Book Reviews . A rigorous review process ensures that readers are exposed to genuine and novel advances across a wide spectrum of botanical knowledge. All papers aim to advance knowledge and make a difference to our understanding of plant science.
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