Rohde Antje, Prinsen Els, De Rycke Riet, Engler Gilbert, Van Montagu Marc, Boerjan Wout
Department of Plant Systems Biology, Flanders Interuniversity Institute for Biotechnology, Ghent University, K.L. Ledeganckstraat 35, B-9000 Gent, Belgium.
Plant Cell. 2002 Aug;14(8):1885-901. doi: 10.1105/tpc.003186.
The Arabidopsis ABSCISIC ACID-INSENSITIVE3 (ABI3) protein plays a crucial role during late seed development and has an additional function at the vegetative meristem, particularly during periods of growth-arresting conditions and quiescence. Here, we show that the ABI3 homolog of poplar (PtABI3) is expressed in buds during natural bud set. Expression occurs clearly after perception of the critical daylength that initiates bud set and dormancy in poplar. In short-day conditions mimicking natural bud set, the expression of a chimeric PtABI3::beta-glucuronidase (GUS) gene occurred in those organs and cells of the apex that grow actively but will undergo arrest: the young embryonic leaves, the subapical meristem, and the procambial strands. If PtABI3 is overexpressed or downregulated, bud development in short-day conditions is altered. Constitutive overexpression of PtABI3 resulted in apical buds with large embryonic leaves and small stipules, whereas in antisense lines, bud scales were large and leaves were small. Thus, PtABI3 influences the size and ratio of embryonic leaves and bud scales/stipules that differentiate from the primordia under short-day conditions. These observations, together with the expression of PtABI3::GUS in embryonic leaves but not in bud scales/stipules, support the idea that wild-type PtABI3 is required for the relative growth rate and differentiation of embryonic leaves inside the bud. These experiments reveal that ABI3 plays a role in the cellular differentiation of vegetative tissues, in addition to its function in seeds.
拟南芥脱落酸不敏感蛋白3(ABI3)在种子发育后期发挥关键作用,并且在营养分生组织中具有额外功能,尤其是在生长停滞和静止期。在此,我们表明杨树的ABI3同源蛋白(PtABI3)在自然芽形成期间在芽中表达。其表达在感知到启动杨树芽形成和休眠的临界日长后明显出现。在模拟自然芽形成的短日条件下,嵌合的PtABI3::β-葡萄糖醛酸酶(GUS)基因在顶端那些活跃生长但将停止生长的器官和细胞中表达:幼嫩的胚性叶、亚顶端分生组织和原形成层束。如果PtABI3过表达或下调,短日条件下的芽发育会改变。PtABI3的组成型过表达导致顶端芽具有大的胚性叶和小的托叶,而在反义株系中,芽鳞大而叶小。因此,PtABI3影响在短日条件下从原基分化而来的胚性叶与芽鳞/托叶的大小和比例。这些观察结果,连同PtABI3::GUS在胚性叶而非芽鳞/托叶中的表达,支持了野生型PtABI3是芽内胚性叶相对生长速率和分化所必需的这一观点。这些实验表明,ABI3除了在种子中的功能外,还在营养组织的细胞分化中发挥作用。