Molecular, Cellular, and Developmental Biology Department, University of California at Santa Barbara, Santa Barbara, CA 93106, USA.
Plant Mol Biol. 2011 Mar;75(4-5):347-63. doi: 10.1007/s11103-011-9733-9. Epub 2011 Jan 19.
The plant hormone abscisic acid (ABA) is a key regulator of seed development. In addition to promoting seed maturation, ABA inhibits seed germination and seedling growth. Many components involved in ABA response have been identified, including the transcription factors ABA insensitive (ABI)4 and ABI5. The genes encoding these factors are expressed predominantly in developing and mature seeds, and are positive regulators of ABA mediated inhibition of seed germination and growth. The direct effects of ABI4 and ABI5 in ABA response remain largely undefined. To address this question, plants over-expressing ABI4 or ABI5 were used to allow identification of direct transcriptional targets. Ectopically expressed ABI4 and ABI5 conferred ABA-dependent induction of slightly over 100 genes in 11 day old plants. In addition to effector genes involved in seed maturation and reserve storage, several signaling proteins and transcription factors were identified as targets of ABI4 and/or ABI5. Although only 12% of the ABA- and ABI-dependent transcriptional targets were induced by both ABI factors in 11 day old plants, 40% of those normally expressed in seeds had reduced transcript levels in both abi4 and abi5 mutants. Surprisingly, many of the ABI4 transcriptional targets do not contain the previously characterized ABI4 binding motifs, the CE1 or S box, in their promoters, but some of these interact with ABI4 in electrophoretic mobility shift assays, suggesting that sequence recognition by ABI4 may be more flexible than known canonical sequences. Yeast one-hybrid assays demonstrated synergistic action of ABI4 with ABI5 or related bZIP factors in regulating these promoters, and mutant analyses showed that ABI4 and these bZIPs share some functions in plants.
植物激素脱落酸(ABA)是种子发育的关键调节剂。除了促进种子成熟外,ABA 还抑制种子萌发和幼苗生长。已经鉴定出许多参与 ABA 反应的成分,包括转录因子 ABA 不敏感(ABI)4 和 ABI5。编码这些因子的基因主要在发育和成熟的种子中表达,是 ABA 介导的抑制种子萌发和生长的正调节剂。ABI4 和 ABI5 在 ABA 反应中的直接作用在很大程度上仍未得到定义。为了解决这个问题,使用过表达 ABI4 或 ABI5 的植物来鉴定直接转录靶标。异位表达的 ABI4 和 ABI5 在 11 天大的植物中赋予了 ABA 依赖性诱导的略超过 100 个基因。除了参与种子成熟和储备储存的效应基因外,还鉴定了几种信号蛋白和转录因子作为 ABI4 和/或 ABI5 的靶标。尽管在 11 天大的植物中,只有 12%的 ABA 和 ABI 依赖的转录靶标被这两个 ABI 因子诱导,但在 abi4 和 abi5 突变体中,正常在种子中表达的 40%的转录本水平降低。令人惊讶的是,许多 ABI4 转录靶标不含有其启动子中先前表征的 ABI4 结合基序,CE1 或 S 盒,但其中一些在电泳迁移率变动分析中与 ABI4 相互作用,表明 ABI4 的序列识别可能比已知的经典序列更灵活。酵母单杂交测定表明 ABI4 与 ABI5 或相关 bZIP 因子在调节这些启动子方面协同作用,突变分析表明 ABI4 和这些 bZIP 在植物中具有一些共同功能。