Manavella Pablo A, Arce Agustín L, Dezar Carlos A, Bitton Frédérique, Renou Jean-Pierre, Crespi Martin, Chan Raquel L
Cátedra de Biología Celular y Molecular, Facultad de Bioquímica y Ciencias Biológicas, Universidad Nacional del Litoral, CONICET, CC 242 Ciudad Universitaria 3000, Santa Fe, Argentina.
Plant J. 2006 Oct;48(1):125-37. doi: 10.1111/j.1365-313X.2006.02865.x.
Hahb-4 is a member of the Helianthusannuus (sunflower) subfamily I of HD-Zip proteins that is transcriptionally regulated by water availability and abscisic acid. Transgenic Arabidopsis thaliana plants overexpressing this transcription factor (TF) exhibit a characteristic phenotype that includes a strong tolerance to water stress. Here we show that this TF is a new component of ethylene signalling pathways, and that it induces a marked delay in senescence. Plants overexpressing Hahb-4 are less sensitive to external ethylene, enter the senescence pathway later and do not show the typical triple response. Furthermore, transgenic plants expressing this gene under the control of its own inducible promoter showed an inverse correlation between ethylene sensitivity and Hahb-4 levels. Potential targets of Hahb-4 were identified by comparing the transcriptome of Hahb-4-transformed and wild-type plants using microarrays and quantitative RT-PCR. Expression of this TF has a major repressive effect on genes related to ethylene synthesis, such as ACO and SAM, and on genes related to ethylene signalling, such as ERF2 and ERF5. Expression studies in sunflower indicate that Hahb-4 transcript levels are elevated in mature/senescent leaves. Expression of Hahb-4 is induced by ethylene, concomitantly with several genes homologous to the targets identified in the transcriptome analysis (HA-ACOa and HA-ACOb). Transient transformation of sunflower leaves demonstrated the action of Hahb-4 in the regulation of ethylene-related genes. We propose that Hahb-4 is involved in a novel conserved mechanism related to ethylene-mediated senescence that functions to improve desiccation tolerance.
Hahb-4是向日葵HD-Zip蛋白亚家族I的成员,其转录受水分供应和脱落酸调控。过表达该转录因子(TF)的转基因拟南芥植株表现出一种特征性表型,包括对水分胁迫的强耐受性。我们在此表明,该TF是乙烯信号通路的一个新组分,并且它能显著延缓衰老。过表达Hahb-4的植株对外部乙烯不太敏感,进入衰老途径较晚,且不表现出典型的三重反应。此外,在其自身诱导型启动子控制下表达该基因的转基因植株显示出乙烯敏感性与Hahb-4水平之间呈负相关。通过使用微阵列和定量RT-PCR比较Hahb-4转化植株和野生型植株的转录组,鉴定出了Hahb-4的潜在靶标。该TF的表达对与乙烯合成相关的基因(如ACO和SAM)以及与乙烯信号传导相关的基因(如ERF2和ERF5)具有主要的抑制作用。向日葵中的表达研究表明,Hahb-4转录水平在成熟/衰老叶片中升高。Hahb-4的表达由乙烯诱导,同时伴随着几个与转录组分析中鉴定出的靶标同源的基因(HA-ACOa和HA-ACOb)。向日葵叶片的瞬时转化证明了Hahb-4在乙烯相关基因调控中的作用。我们提出,Hahb-4参与了一种与乙烯介导的衰老相关的新型保守机制,该机制的作用是提高耐旱性。