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在番茄中表达葡萄 ACS1 可减少乙烯的产生,并在茎和根形成过程中改变生长素和乙烯之间的平衡。

Expression of grape ACS1 in tomato decreases ethylene and alters the balance between auxin and ethylene during shoot and root formation.

机构信息

College of Horticulture, Henan Agricultural University, 95 Wenhua Road, 450002 Zhengzhou, People's Republic of China.

College of Horticulture, Henan Agricultural University, 95 Wenhua Road, 450002 Zhengzhou, People's Republic of China.

出版信息

J Plant Physiol. 2018 Jul;226:154-162. doi: 10.1016/j.jplph.2018.04.015. Epub 2018 May 4.

Abstract

Ethylene plays an important role in the grape rachis, where its production can be 10 times higher than in the berry. VvACS1 is the only rachis-specific ACC synthase (ACS) gene, and its expression is coincident with ethylene production in the rachis of Vitis vinifera 'Thompson seedless'. VvACS1 was cloned and ectopically expressed in tomato (Solanum lycopersicum 'Moneymaker'). Lateral buds were increased in two- or four-week-old 35s∷VvACS1 transgenic tomato plants after transplanting. Compared with wild-type (WT) plants, the transgenic tomato plants showed higher expression of the VvACS1 gene in the flowers, leaves, rachis, and fruits. There was no obvious difference of ACS activity in the fruit of tomato, and only increased ACS activity in the rachis of tomato. Ethylene production was decreased in flowers, leaves, and fruits (seven weeks after full bloom), while the relative expression of endogenous tomato ACS1 and ACS6 genes was not down-regulated by the ectopic expression of VvACS1. These results imply that post-transcriptional or post-translational regulation of ACS may occur, resulting in lower ethylene production in the transgenic tomato plants. Moreover, expression of VvACS1 in tomato resulted in decreased auxin and increased zeatin contents in the lateral buds, as well as reduced or delayed formation of adventitious roots in lateral bud cuttings. RNA-Seq and qRT-PCR analyses of rooted lateral bud cuttings indicated that the relative expression levels of the genes for zeatin O-glucosyltransferase-like, auxin repressed/dormancy-associated protein, and ERF transcription factors were higher in transgenic tomatoes than in WT, suggesting that ethylene may regulate auxin transport and distribution in shoots and that adventitious root formation employs coordination between auxin and ethylene.

摘要

乙烯在葡萄果穗中起着重要作用,其产量是浆果的 10 倍。VvACS1 是唯一的果穗特异性 ACC 合酶(ACS)基因,其表达与葡萄‘Thompson 无核籽’果穗中乙烯的产生一致。VvACS1 在番茄(Solanum lycopersicum‘Moneymaker’)中被克隆并异位表达。在移栽后,2 或 4 周龄的 35s∷VvACS1 转基因番茄植株的侧芽数量增加。与野生型(WT)植株相比,转基因番茄植株在花朵、叶片、果穗和果实中 VvACS1 基因的表达水平更高。番茄果实中的 ACS 活性没有明显差异,只有番茄果穗中的 ACS 活性增加。转基因番茄植株花朵、叶片和果实中的乙烯产量下降(完全开花后 7 周),而内源番茄 ACS1 和 ACS6 基因的相对表达水平并未因 VvACS1 的异位表达而下调。这些结果表明,ACS 可能发生了转录后或翻译后调控,导致转基因番茄植株中乙烯产量降低。此外,VvACS1 在番茄中的表达导致侧芽中的生长素含量降低,玉米素含量增加,侧芽扦插中不定根的形成减少或延迟。生根侧芽扦插的 RNA-Seq 和 qRT-PCR 分析表明,转基因番茄中 zeatin O-葡萄糖基转移酶样、生长素抑制/休眠相关蛋白和 ERF 转录因子的基因相对表达水平高于 WT,表明乙烯可能调节生长素在地上部分的运输和分布,不定根的形成需要生长素和乙烯的协调。

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