Department of Crop and Soil Science, Washington State University, Pullman, Washington 99164-6420, USA.
Plant Physiol. 2013 Aug;162(4):2125-39. doi: 10.1104/pp.113.219451. Epub 2013 Jul 1.
DELLA repression of Arabidopsis (Arabidopsis thaliana) seed germination can be lifted either through DELLA proteolysis by the ubiquitin-proteasome pathway or through proteolysis-independent gibberellin (GA) hormone signaling. GA binding to the GIBBERELLIN-INSENSITIVE DWARF1 (GID1) GA receptors stimulates GID1-GA-DELLA complex formation, which in turn triggers DELLA protein ubiquitination and proteolysis via the SCF(SLY1) E3 ubiquitin ligase and 26S proteasome. Although DELLA cannot be destroyed in the sleepy1-2 (sly1-2) F-box mutant, long dry after-ripening and GID1 overexpression can relieve the strong sly1-2 seed dormancy phenotype. It appears that sly1-2 seed dormancy results from abscisic acid (ABA) signaling downstream of DELLA, since dormant sly1-2 seeds accumulate high levels of ABA hormone and loss of ABA sensitivity rescues sly1-2 seed germination. DELLA positively regulates the expression of XERICO, an inducer of ABA biosynthesis. GID1b overexpression rescues sly1-2 germination through proteolysis-independent DELLA down-regulation associated with increased expression of GA-inducible genes and decreased ABA accumulation, apparently as a result of decreased XERICO messenger RNA levels. Higher levels of GID1 overexpression are associated with more efficient sly1 germination and increased GID1-GA-DELLA complex formation, suggesting that GID1 down-regulates DELLA through protein binding. After-ripening results in increased GA accumulation and GID1a-dependent GA signaling, suggesting that after-ripening triggers GA-stimulated GID1-GA-DELLA protein complex formation, which in turn blocks DELLA transcriptional activation of the XERICO inhibitor of seed germination.
拟南芥(Arabidopsis thaliana)种子萌发的 DELLA 抑制可以通过泛素蛋白酶体途径的 DELLA 蛋白水解或通过非蛋白水解的赤霉素(GA)激素信号来解除。GA 与 GIBBERELLIN-INSENSITIVE DWARF1(GID1)GA 受体结合,刺激 GID1-GA-DELLA 复合物的形成,进而通过 SCF(SLY1)E3 泛素连接酶和 26S 蛋白酶体触发 DELLA 蛋白的泛素化和蛋白水解。虽然在 sleepy1-2(sly1-2)F-box 突变体中不能破坏 DELLA,但长时间的干燥后熟和 GID1 的过表达可以缓解强烈的 sly1-2 种子休眠表型。似乎 sly1-2 种子休眠是由于 DELLA 下游的脱落酸(ABA)信号引起的,因为休眠的 sly1-2 种子积累高水平的 ABA 激素,丧失 ABA 敏感性可挽救 sly1-2 种子的萌发。DELLA 正向调节 XERICO 的表达,XERICO 是 ABA 生物合成的诱导剂。GID1b 的过表达通过与 GA 诱导基因表达增加和 ABA 积累减少相关的非蛋白水解 DELLA 下调来挽救 sly1-2 的萌发,这显然是由于 XERICO 信使 RNA 水平降低的结果。较高水平的 GID1 过表达与更有效的 sly1 萌发和增加的 GID1-GA-DELLA 复合物形成相关,表明 GID1 通过蛋白结合下调 DELLA。后熟导致 GA 积累增加和 GID1a 依赖性 GA 信号转导,表明后熟触发 GA 刺激的 GID1-GA-DELLA 蛋白复合物形成,进而阻止 DELLA 对种子萌发抑制剂 XERICO 的转录激活。