Institut Valencià d'Investigacions Agràries (IVIA), Centre de Genómica. Apartat Oficial 46113, Montcada (València), Spain.
J Exp Bot. 2012 Oct;63(17):6079-91. doi: 10.1093/jxb/ers270. Epub 2012 Oct 1.
Leaf abscission is a common response of plants to drought stress. Some species, such as citrus, have evolved a specific behaviour in this respect, keeping their leaves attached to the plant body during water stress until this is released by irrigation or rain. This study successfully reproduced this phenomenon under controlled conditions (24h of water stress followed by 24h of rehydration) and used it to construct a suppression subtractive hybridization cDNA library enriched in genes involved in the early stages of rehydration-promoted leaf abscission after water stress. Sequencing of the library yielded 314 unigenes, which were spotted onto nylon membranes. Membrane hybridization with petiole (Pet)- and laminar abscission zone (LAZ)-enriched RNA samples corresponding to early steps in leaf abscission revealed an almost exclusive preferential gene expression programme in the LAZ. The data identified major processes such as protein metabolism, cell-wall modification, signalling, control of transcription and vesicle production, and transport as the main biological processes activated in LAZs during the early steps of rehydration-promoted leaf abscission after water stress. Based on these findings, a model for the early steps of citrus leaf abscission is proposed. In addition, it is suggested that CitbHLH1, the putative citrus orthologue of Arabidopsis BIGPETAL, may play major roles in the control of abscission-related events in citrus abscission zones.
叶片脱落是植物对干旱胁迫的一种常见反应。一些物种,如柑橘,在这方面已经进化出了一种特殊的行为,即在水分胁迫期间保持叶片附着在植物体上,直到通过灌溉或降雨释放水分。本研究在受控条件下成功地再现了这一现象(24 小时的水分胁迫后进行 24 小时的复水),并利用它构建了一个抑制性消减杂交 cDNA 文库,该文库富集了与水分胁迫后复水促进叶片脱落的早期阶段相关的基因。对文库的测序得到了 314 个单基因,这些单基因被点样到尼龙膜上。用与叶片脱落早期步骤相对应的叶柄(Pet)和叶片离层区(LAZ)富集 RNA 样品进行膜杂交,揭示了 LAZ 中几乎完全优先表达的基因表达程序。数据确定了主要的过程,如蛋白质代谢、细胞壁修饰、信号转导、转录控制和囊泡产生以及运输,作为在水分胁迫后复水促进叶片脱落的早期阶段 LAZs 中激活的主要生物学过程。基于这些发现,提出了柑橘叶片脱落的早期步骤模型。此外,还提出拟南芥 BIGPETAL 的柑橘同源物 CitbHLH1 可能在柑橘离层区与脱落相关事件的控制中发挥主要作用。