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烟草中的主要成花促进因子NtFT5是作物改良的一个有前景的靶点。

The Major Floral Promoter NtFT5 in Tobacco () Is a Promising Target for Crop Improvement.

作者信息

Schmidt Florentin J, Zimmermann Marius M, Wiedmann David R, Lichtenauer Sophie, Grundmann Lena, Muth Jost, Twyman Richard M, Prüfer Dirk, Noll Gundula A

机构信息

Institute of Plant Biology and Biotechnology, University of Münster, Münster, Germany.

Department of Functional and Applied Genomics, Fraunhofer Institute for Molecular Biology and Applied Ecology IME, Münster, Germany.

出版信息

Front Plant Sci. 2020 Jan 10;10:1666. doi: 10.3389/fpls.2019.01666. eCollection 2019.

Abstract

The ()-like gene family encodes key regulators of flower induction that affect the timing of reproduction in many angiosperm species. Agricultural research has therefore focused on such genes to improve the success of breeding programs and enhance agronomic traits. We recently identified a novel -like gene () that encodes a day-neutral floral activator in the model tobacco crop . However, further characterization is necessary to determine its value as a target for breeding programs. We therefore investigated the function of NtFT5 by expression analysis and mutagenesis. Expression analysis revealed that is transcribed in phloem companion cells, as is typical for -like genes. However, high levels of mRNA accumulated not only in the leaves but also in the stem. Loss-of-function mutants (generated using CRISPR/Cas9) were unable to switch to reproductive growth under long-day conditions, indicating that NtFT5 is an indispensable major floral activator during long-days. Backcrossing was achieved by grafting the mutant scions onto wild-type rootstock, allowing the restoration of flowering and pollination by a wild-type donor. The resulting heterozygous / plants flowered with a mean delay of only ~2 days, demonstrating that one functional allele is sufficient for near-normal reproductive timing. However, this minor extension of the vegetative growth phase also conferred beneficial agronomic traits, including a >10% increase in vegetative leaf biomass on the main shoot and the production of more seeds. The agronomic benefits of the heterozygous plants persisted under various abiotic stress conditions, confirming that is a promising target for crop improvement to address the effects of climate change.

摘要

()样基因家族编码花诱导的关键调节因子,影响许多被子植物物种的繁殖时间。因此,农业研究集中在这类基因上,以提高育种计划的成功率并增强农艺性状。我们最近在模式烟草作物中鉴定出一个新的()样基因(),它编码一种日中性花激活因子。然而,需要进一步表征以确定其作为育种计划目标的价值。因此,我们通过表达分析和诱变研究了NtFT5的功能。表达分析表明,与()样基因一样,它在韧皮部伴细胞中转录。然而,高水平的()mRNA不仅在叶片中积累,也在茎中积累。功能丧失突变体(使用CRISPR/Cas9产生)在长日条件下无法转向生殖生长,表明NtFT5是长日期间不可或缺的主要花激活因子。通过将突变体接穗嫁接到野生型砧木上实现回交,使野生型供体恢复开花和授粉。产生的杂合()/植株开花平均仅延迟约2天,表明一个功能等位基因足以实现接近正常的生殖时间。然而,营养生长期的这种轻微延长也赋予了有益的农艺性状,包括主茎上营养叶生物量增加>10%以及产生更多种子。杂合植株的农艺效益在各种非生物胁迫条件下持续存在,证实()是作物改良以应对气候变化影响的一个有前景的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61bb/6966700/81c309df3b1f/fpls-10-01666-g001.jpg

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