Department of Integrative Biology, University of Texas at Austin, Austin, TX, 78712, USA.
Texas Institute for Discovery Education in Sciences, University of Texas at Austin, Austin, TX, 78712, USA.
New Phytol. 2022 Feb;233(4):1939-1952. doi: 10.1111/nph.17880. Epub 2021 Dec 18.
Telomere length has been implicated in the organismal response to stress, but the underlying mechanisms are unknown. Here we examine the impact of telomere length changes on the responses to three contrasting abiotic environments in Arabidopsis, and measure 32 fitness, developmental, physiological and leaf-level anatomical traits. We report that telomere length in wild-type and short-telomere mutants is resistant to abiotic stress, while the elongated telomeres in ku70 mutants are more plastic. We detected significant pleiotropic effects of telomere length on flowering time and key leaf physiological and anatomical traits. Furthermore, our data reveal a significant genotype by environment (G × E) interaction for reproductive fitness, with the benefits and costs to performance depending on the growth conditions. These results imply that life-history trade-offs between flowering time and reproductive fitness are impacted by telomere length variation. We postulate that telomere length in plants is subject to natural selection imposed by different environments.
端粒长度与生物体对压力的反应有关,但潜在机制尚不清楚。在这里,我们研究了端粒长度变化对拟南芥三种不同非生物环境反应的影响,并测量了 32 种适应性、发育、生理和叶片解剖特征。我们报告称,野生型和短端粒突变体的端粒长度能够抵抗非生物胁迫,而 ku70 突变体中延长的端粒则更具可塑性。我们检测到端粒长度对开花时间和关键叶片生理和解剖特征的显著多效性影响。此外,我们的数据显示,生殖适应性的基因型与环境(G × E)相互作用非常显著,表现的利弊取决于生长条件。这些结果表明,开花时间和生殖适应性之间的生活史权衡受到端粒长度变化的影响。我们假设植物中的端粒长度受到不同环境施加的自然选择的影响。