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猕猴桃SVP3基因的过表达影响生殖发育并抑制花瓣中的花青素生物合成,但对营养生长、休眠或开花时间没有影响。

Overexpression of the kiwifruit SVP3 gene affects reproductive development and suppresses anthocyanin biosynthesis in petals, but has no effect on vegetative growth, dormancy, or flowering time.

作者信息

Wu Rongmei, Wang Tianchi, McGie Tony, Voogd Charlotte, Allan Andrew C, Hellens Roger P, Varkonyi-Gasic Erika

机构信息

The New Zealand Institute for Plant & Food Research Limited (Plant & Food Research) Mt Albert, Private Bag 92169, Auckland 1142, New Zealand.

The New Zealand Institute for Plant & Food Research Limited (Plant & Food Research) Palmerston North, Private Bag 11600, Palmerston North 4442, New Zealand.

出版信息

J Exp Bot. 2014 Sep;65(17):4985-95. doi: 10.1093/jxb/eru264. Epub 2014 Jun 19.

Abstract

SVP-like MADS domain transcription factors have been shown to regulate flowering time and both inflorescence and flower development in annual plants, while having effects on growth cessation and terminal bud formation in perennial species. Previously, four SVP genes were described in woody perennial vine kiwifruit (Actinidia spp.), with possible distinct roles in bud dormancy and flowering. Kiwifruit SVP3 transcript was confined to vegetative tissues and acted as a repressor of flowering as it was able to rescue the Arabidopsis svp41 mutant. To characterize kiwifruit SVP3 further, ectopic expression in kiwifruit species was performed. Ectopic expression of SVP3 in A. deliciosa did not affect general plant growth or the duration of endodormancy. Ectopic expression of SVP3 in A. eriantha also resulted in plants with normal vegetative growth, bud break, and flowering time. However, significantly prolonged and abnormal flower, fruit, and seed development were observed, arising from SVP3 interactions with kiwifruit floral homeotic MADS-domain proteins. Petal pigmentation was reduced as a result of SVP3-mediated interference with transcription of the kiwifruit flower tissue-specific R2R3 MYB regulator, MYB110a, and the gene encoding the key anthocyanin biosynthetic step, F3GT1. Constitutive expression of SVP3 had a similar impact on reproductive development in transgenic tobacco. The flowering time was not affected in day-neutral and photoperiod-responsive Nicotiana tabacum cultivars, but anthesis and seed germination were significantly delayed. The accumulation of anthocyanin in petals was reduced and the same underlying mechanism of R2R3 MYB NtAN2 transcript reduction was demonstrated.

摘要

类似SVP的MADS结构域转录因子已被证明可调控一年生植物的开花时间以及花序和花的发育,同时对多年生植物的生长停止和顶芽形成有影响。此前,在多年生木本藤本植物猕猴桃(猕猴桃属)中描述了四个SVP基因,它们在芽休眠和开花中可能具有不同作用。猕猴桃SVP3转录本局限于营养组织,并且由于它能够拯救拟南芥svp41突变体,因此作为开花抑制因子发挥作用。为了进一步表征猕猴桃SVP3,在猕猴桃物种中进行了异位表达。SVP3在美味猕猴桃中的异位表达不影响植株的整体生长或内休眠持续时间。SVP3在毛花猕猴桃中的异位表达也导致植株营养生长正常、芽萌发和开花时间正常。然而,由于SVP3与猕猴桃花同源异型MADS结构域蛋白相互作用,观察到花、果实和种子发育显著延长且异常。由于SVP3介导的对猕猴桃花组织特异性R2R3 MYB调节因子MYB110a以及编码关键花青素生物合成步骤的基因F3GT1转录的干扰,花瓣色素沉着减少。SVP3的组成型表达对转基因烟草的生殖发育有类似影响。在日中性和光周期响应的烟草品种中,开花时间不受影响,但开花和种子萌发显著延迟。花瓣中花青素的积累减少,并且证明了R2R3 MYB NtAN2转录本减少的相同潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6512/4144777/ed51af08173c/exbotj_eru264_f0001.jpg

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