Hichri Imène, Muhovski Yordan, Žižkova Eva, Dobrev Petre I, Franco-Zorrilla Jose Manuel, Solano Roberto, Lopez-Vidriero Irene, Motyka Vaclav, Lutts Stanley
Groupe de Recherche en Physiologie Végétale, Earth and Life Institute-Agronomy, Université Catholique de Louvain, B-1348 Louvain-la-Neuve, Belgium.
Plant Physiol. 2014 Apr;164(4):1967-90. doi: 10.1104/pp.113.225920. Epub 2014 Feb 24.
The zinc finger superfamily includes transcription factors that regulate multiple aspects of plant development and were recently shown to regulate abiotic stress tolerance. Cultivated tomato (Solanum lycopersicum Zinc Finger2 [SIZF2]) is a cysteine-2/histidine-2-type zinc finger transcription factor bearing an ERF-associated amphiphilic repression domain and binding to the ACGTCAGTG sequence containing two AGT core motifs. SlZF2 is ubiquitously expressed during plant development, and is rapidly induced by sodium chloride, drought, and potassium chloride treatments. Its ectopic expression in Arabidopsis (Arabidopsis thaliana) and tomato impaired development and influenced leaf and flower shape, while causing a general stress visible by anthocyanin and malonyldialdehyde accumulation. SlZF2 enhanced salt sensitivity in Arabidopsis, whereas SlZF2 delayed senescence and improved tomato salt tolerance, particularly by maintaining photosynthesis and increasing polyamine biosynthesis, in salt-treated hydroponic cultures (125 mm sodium chloride, 20 d). SlZF2 may be involved in abscisic acid (ABA) biosynthesis/signaling, because SlZF2 is rapidly induced by ABA treatment and 35S::SlZF2 tomatoes accumulate more ABA than wild-type plants. Transcriptome analysis of 35S::SlZF2 revealed that SlZF2 both increased and reduced expression of a comparable number of genes involved in various physiological processes such as photosynthesis, polyamine biosynthesis, and hormone (notably ABA) biosynthesis/signaling. Involvement of these different metabolic pathways in salt stress tolerance is discussed.
锌指超家族包括调节植物发育多个方面的转录因子,最近研究表明其还能调节植物对非生物胁迫的耐受性。栽培番茄(Solanum lycopersicum Zinc Finger2 [SIZF2])是一种C2H2型锌指转录因子,带有一个与ERF相关的两亲性抑制结构域,并与含有两个AGT核心基序的ACGTCAGTG序列结合。SlZF2在植物发育过程中普遍表达,并在氯化钠、干旱和氯化钾处理下迅速被诱导。它在拟南芥(Arabidopsis thaliana)和番茄中的异位表达损害了植物发育,影响了叶片和花朵形状,同时导致花青素和丙二醛积累,呈现出一般的胁迫反应。SlZF2增强了拟南芥的盐敏感性,而在盐处理的水培培养物(125 mM氯化钠,20天)中,SlZF2延缓了衰老并提高了番茄的耐盐性,特别是通过维持光合作用和增加多胺生物合成来实现。SlZF2可能参与脱落酸(ABA)的生物合成/信号传导过程,因为SlZF被ABA处理迅速诱导,并且35S::SlZF2番茄比野生型植物积累更多的ABA。对35S::SlZF2的转录组分析表明,SlZF2增加和减少了参与各种生理过程(如光合作用、多胺生物合成和激素(特别是ABA)生物合成/信号传导)的相当数量基因的表达。本文讨论了这些不同代谢途径在盐胁迫耐受性中的作用。