Suppr超能文献

地上和地下表型对外源生长素的响应在不同突变体和自然群体中从幼苗到生殖成熟阶段有所不同。

Above and belowground phenotypic response to exogenous auxin across mutants and natural accessions varies from seedling to reproductive maturity.

机构信息

Department of Biology, College of Charleston, Charleston, SC, United States.

Department of Plant Science, The Pennsylvania State University, University Park, PA, United States.

出版信息

PeerJ. 2024 Feb 9;12:e16873. doi: 10.7717/peerj.16873. eCollection 2024.

Abstract

BACKGROUND

Plant hormones influence phenology, development, and function of above and belowground plant structures. In seedlings, auxin influences the initiation and development of lateral roots and root systems. How auxin-related genes influence root initiation at early life stages has been investigated from numerous perspectives. There is a gap in our understanding of how these genes influence root size through the life cycle and in mature plants. Across development, the influence of a particular gene on plant phenotypes is partly regulated by the addition of a poly-A tail to mRNA transcripts alternative polyadenylation (APA). Auxin related genes have documented variation in APA, with auxin itself contributing to APA site switches. Studies of the influence of exogenous auxin on natural plant accessions and mutants of auxin pathway gene families exhibiting variation in APA are required for a more complete understanding of genotype by development by hormone interactions in whole plant and fitness traits.

METHODS

We studied homozygous mutant lines with inserts in auxin-related genes previously identified to exhibit variation in number of APA sites. Our growth chamber experiment included wildtype Col-0 controls, mutant lines, and natural accession phytometers. We applied exogenous auxin through the life cycle. We quantified belowground and aboveground phenotypes in 14 day old, 21 day old seedlings and plants at reproductive maturity. We contrasted root, rosette and flowering phenotypes across wildtype, auxin mutant, and natural accession lines, APA groups, hormone treatments, and life stages using general linear models.

RESULTS

The root systems and rosettes of mutant lines in auxin related genes varied in response to auxin applications across life stages and varied between genotypes within life stages. In seedlings, exposure to auxin decreased size, but increased lateral root density, whereas at reproductive maturity, plants displayed greater aboveground mass and total root length. These differences may in part be due to a shift which delayed the reproductive stage when plants were treated with auxin. Root traits of auxin related mutants depended on the number of APA sites of mutant genes and the plant's developmental stage. Mutants with inserts in genes with many APA sites exhibited lower early seedling belowground biomass than those with few APA sites but only when exposed to exogenous auxin. As we observed different responses to exogenous auxin across the life cycle, we advocate for further studies of belowground traits and hormones at reproductive maturity. Studying phenotypic variation of genotypes across life stages and hormone environments will uncover additional shared patterns across traits, assisting efforts to potentially reach breeding targets and enhance our understanding of variation of genotypes in natural systems.

摘要

背景

植物激素影响植物地上和地下结构的物候、发育和功能。在幼苗中,生长素影响侧根和根系的起始和发育。生长素相关基因如何影响早期生命阶段的根起始,已经从多个角度进行了研究。然而,我们对于这些基因如何通过生命周期以及在成熟植物中影响根大小的了解还存在空白。在整个发育过程中,特定基因对植物表型的影响部分受到添加到 mRNA 转录物上的 poly-A 尾巴的调节——可变多聚腺苷酸化(APA)。生长素相关基因的 APA 存在变异,而生长素本身也会导致 APA 位点转换。需要对表现出 APA 变异的生长素途径基因家族的自然植物品系和突变体进行外源生长素处理的研究,以更全面地了解整个植物和适应度性状中激素互作对基因型发育的影响。

方法

我们研究了先前确定在 APA 位点数量上存在变异的生长素相关基因的纯合突变系。我们的生长室实验包括野生型 Col-0 对照、突变系和自然品系植物计。我们通过整个生命周期施加外源生长素。我们在 14 天龄、21 天龄幼苗和生殖成熟植株中量化了地下和地上表型。我们使用广义线性模型对比了野生型、生长素突变体和自然品系、APA 组、激素处理和生命阶段的根、莲座叶和开花表型。

结果

生长素相关基因的突变系的根系和莲座叶在整个生命阶段对外源生长素的应用有不同的反应,并且在生命阶段内的基因型之间也存在差异。在幼苗中,暴露于生长素会降低大小,但会增加侧根密度,而在生殖成熟时,植物表现出更高的地上生物量和总根长。这些差异可能部分归因于生长素处理时生殖阶段的延迟。生长素相关突变体的根特性取决于突变基因的 APA 位点数量和植物的发育阶段。具有许多 APA 位点的突变基因的突变体在早期幼苗期的地下生物量低于具有少数 APA 位点的突变体,但只有在暴露于外源生长素时才会如此。由于我们在整个生命周期中观察到对外源生长素的不同反应,我们主张进一步研究生殖成熟时的地下性状和激素。研究基因型在整个生命阶段和激素环境下的表型变异,将揭示性状之间更多的共享模式,有助于潜在地达到育种目标,并增强我们对自然系统中基因型变异的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a67b/10860551/b546c8514d77/peerj-12-16873-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