Department of Horticulture, Oregon State University, Corvallis, OR, 97331, USA.
Wageningen Seed Laboratory, Laboratory of Plant Physiology, Wageningen University, Wageningen, the Netherlands.
Plant J. 2019 Oct;100(1):7-19. doi: 10.1111/tpj.14485. Epub 2019 Sep 9.
More than 70% of global food supply depends on seeds. The major seed reserves, such as proteins, lipids, and polysaccharides, are produced during seed maturation. Here, we report that DELAY OF GERMINATION 1-LIKE 4 (DOGL4) is a major inducer of reserve accumulation during seed maturation. The DOGL family proteins are plant-specific proteins of largely unknown biochemical function. DOGL4 shares only limited homology in amino acid sequence with DOG1, a major regulator of seed dormancy. DOGL4 was identified as one of the outstanding abscisic acid (ABA)-induced genes in our RNA sequencing analysis, whereas DOG1 was not induced by ABA. Induction of DOGL4 caused the expression of 70 seed maturation-specific genes, even in germinating seeds, including the major seed reserves ALBUMIN, CRUCIFERIN and OLEOSIN. Although DOG1 affects the expression of many seed maturation genes, the major seed reserve genes induced by DOGL4 are not altered by the dog1 mutation. Furthermore, the reduced dormancy and longevity phenotypes observed in the dog1 seeds were not observed in the dogl4 mutants, suggesting that these two genes have limited functional overlap. Taken together, these results suggest that DOGL4 is a central factor mediating reserve accumulation in seeds, and that the two DOG1 family proteins have diverged over the course of evolution into independent regulators of seed maturation, but retain some overlapping function.
超过 70%的全球食物供应依赖种子。主要的种子储备,如蛋白质、脂质和多糖,是在种子成熟过程中产生的。在这里,我们报告 DELAY OF GERMINATION 1-LIKE 4(DOGL4)是种子成熟过程中储备积累的主要诱导因子。DOGL 家族蛋白是植物特异性蛋白,其生化功能在很大程度上未知。DOGL4 与 DOG1 (主要的种子休眠调节剂)在氨基酸序列上只有有限的同源性。DOGL4 被鉴定为我们的 RNA 测序分析中突出的脱落酸(ABA)诱导基因之一,而 DOG1 不受 ABA 诱导。DOGL4 的诱导导致 70 个种子成熟特异性基因的表达,即使在萌发的种子中也是如此,包括主要的种子储备蛋白白蛋白、芸薹素和油体蛋白。尽管 DOG1 影响许多种子成熟基因的表达,但 DOGL4 诱导的主要种子储备基因不受 dog1 突变的影响。此外,在 dog1 种子中观察到的休眠和寿命表型降低的现象在 dogl4 突变体中没有观察到,这表明这两个基因的功能重叠有限。总之,这些结果表明 DOGL4 是介导种子中储备积累的核心因子,而这两个 DOG1 家族蛋白在进化过程中已经分化为独立的种子成熟调节剂,但保留了一些重叠的功能。