Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore-560012, India.
Plant Cell Physiol. 2011 Dec;52(12):2123-35. doi: 10.1093/pcp/pcr142. Epub 2011 Oct 19.
GH3 proteins control auxin homeostasis by inactivating excess auxin as conjugates of amino acids and sugars and thereby controlling cellular bioactive auxin. Since auxin regulates many aspects of plant growth and development, regulated expression of these genes offers a mechanism to control various developmental processes. OsMGH3/OsGH3-8 is expressed abundantly in rice florets and is regulated by two related and redundant transcription factors, OsMADS1 and OsMADS6, but its contribution to flower development is not known. We functionally characterize OsMGH3 by overexpression and knock-down analysis and show a partial overlap in these phenotypes with that of mutants in OsMADS1 and OsMADS6. The overexpression of OsMGH3 during the vegetative phase affects the overall plant architecture, whereas its inflorescence-specific overexpression creates short panicles with reduced branching, resembling in part the effects of OsMADS1 overexpression. In contrast, the down-regulation of endogenous OsMGH3 caused phenotypes consistent with auxin overproduction or activated signaling, such as ectopic rooting from aerial nodes. Florets in OsMGH3 knock-down plants were affected in carpel development and pollen viability, both of which reduced fertility. Some of these floret phenotypes are similar to osmads6 mutants. Taken together, we provide evidence for the functional significance of auxin homeostasis and its transcriptional regulation during rice panicle branching and floret organ development.
GH3 蛋白通过将过量的生长素与氨基酸和糖形成轭合物而使其失活,从而控制细胞内生物活性的生长素。由于生长素调节植物生长和发育的许多方面,因此这些基因的调控表达提供了一种控制各种发育过程的机制。OsMGH3/OsGH3-8 在水稻小花中大量表达,并受两个相关且冗余的转录因子 OsMADS1 和 OsMADS6 调控,但它对花发育的贡献尚不清楚。我们通过过表达和敲低分析对 OsMGH3 进行了功能表征,并发现这些表型与 OsMADS1 和 OsMADS6 突变体的表型部分重叠。在营养阶段过表达 OsMGH3 会影响整个植株的结构,而花序特异性过表达会导致短而分枝少的穗,在一定程度上类似于 OsMADS1 过表达的效果。相比之下,内源 OsMGH3 的下调导致生长素过量产生或激活信号转导的表型,例如气生节点上的异位生根。OsMGH3 敲低植物的小花在心皮发育和花粉活力方面受到影响,这两者都会降低育性。这些小花表型中的一些与 osmads6 突变体相似。总之,我们提供了证据表明生长素稳态及其在水稻穗分枝和小花器官发育过程中的转录调控具有功能意义。