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大麦和番茄茎和根分生组织转录组谱分析揭示了光周期敏感性的生理变化基础。

Transcriptome profiling of barley and tomato shoot and root meristems unravels physiological variations underlying photoperiodic sensitivity.

机构信息

University of Bonn, Institute of Crop Science and Resource Conservation, Plant Breeding, Bonn, Germany.

University of Bonn, Institute of Crop Science and Resource Conservation, Crop Bioinformatics, Bonn, Germany.

出版信息

PLoS One. 2022 Sep 12;17(9):e0265981. doi: 10.1371/journal.pone.0265981. eCollection 2022.

Abstract

The average sowing date of crops in temperate climate zones has been shifted forwards by several days, resulting in a changed photoperiod regime at the emergence stage. In the present study, we performed a global transcriptome profiling of plant development genes in the seedling stage of root and shoot apical meristems of a photoperiod-sensitive species (barley) and a photoperiod insensitive species (tomato) in short-day conditions (8h). Variant expression indicated differences in physiological development under this short day-length regime between species and tissues. The barley tissue transcriptome revealed reduced differentiation compared to tomato. In addition, decreased photosynthetic activity was observed in barley transcriptome and leaf chlorophyll content under 8h conditions, indicating a slower physiological development of shoot meristems than in tomatoes. The photomorphogenesis controlling cryptochrome gene cry1, with an effect on physiological differentiation, showed an underexpression in barley compared to tomato shoot meristems. This might lead to a cascade of suspended sink-source activities, which ultimately delay organ development and differentiation in barley shoot meristems under short photoperiods.

摘要

温带气候区作物的平均播种日期已经提前了数天,导致在出苗阶段光周期发生变化。在本研究中,我们在短日照条件下(8 小时)对感光性物种(大麦)和非感光性物种(番茄)的根和茎顶端分生组织幼苗阶段的植物发育基因进行了全球转录组分析。表达模式的差异表明,在这种短日照条件下,不同物种和组织的生理发育存在差异。与番茄相比,大麦组织的转录组显示出分化减少。此外,在 8 小时条件下,大麦转录组和叶片叶绿素含量观察到光合作用活性降低,表明与番茄相比,茎分生组织的生理发育较慢。对生理分化有影响的光形态建成控制隐花色素基因 cry1 在大麦中的表达低于番茄,这可能导致一系列停滞的源库活动,最终导致大麦茎分生组织在短日照下器官发育和分化延迟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/204d/9467324/27f303751039/pone.0265981.g001.jpg

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