Meurs C, Basra A S, Karssen C M, van Loon L C
Department of Plant Physiology, Agricultural University, Arboretumlaan 4, 6703 BD Wageningen, The Netherlands.
Plant Physiol. 1992 Apr;98(4):1484-93. doi: 10.1104/pp.98.4.1484.
In contrast to wild-type seeds of Arabidopsis thaliana and to seeds deficient in (aba) or insensitive to (abi3) abscisic acid (ABA), maturing seeds of recombinant (aba,abi3) plants fail to desiccate, remain green, and lose viability upon drying. These double-mutant seeds acquire only low levels of the major storage proteins and are deficient in several low mol wt polypeptides, both soluble and bound, and some of which are heat stable. A major heat-stable glycoprotein of more than 100 kilodaltons behaves similarly; during seed development, it shows a decrease in size associated with the abi3 mutation. In seeds of the double mutant from 14 to 20 days after pollination, the low amounts of various maturation-specific proteins disappear and many higher mol wt proteins similar to those occurring during germination are induced, but no visible germination is apparent. It appears that in the aba,abi3 double mutant seed development is not completed and the program for seed germination is initiated prematurely in the absence of substances protective against dehydration. Seeds may be made desiccation tolerant by watering the plants with the ABA analog LAB 173711 or by imbibition of isolated immature seeds, 11 to 15 days after pollination, with ABA and sucrose. Whereas sucrose stimulates germination and may protect dehydration-sensitive structures from desiccation damage, ABA inhibits precocious germination and is required to complete the program for seed maturation and the associated development of desiccation tolerance.
与拟南芥野生型种子以及缺乏脱落酸(aba)或对脱落酸不敏感(abi3)的种子相比,重组(aba,abi3)植物的成熟种子无法干燥,保持绿色,并且干燥后失去活力。这些双突变种子仅积累少量主要贮藏蛋白,并且缺乏几种低分子量多肽,包括可溶性和结合性的,其中一些是热稳定的。一种分子量超过100千道尔顿的主要热稳定糖蛋白表现类似;在种子发育过程中,它的大小减小与abi3突变有关。在授粉后14至20天的双突变种子中,各种成熟特异性蛋白的少量消失,并且诱导出许多类似于萌发期间出现的较高分子量蛋白,但没有明显的可见萌发。看来,在aba,abi3双突变体中,种子发育未完成,并且在没有防止脱水的物质的情况下,种子萌发程序过早启动。通过用脱落酸类似物LAB 173711给植物浇水或通过用脱落酸和蔗糖浸泡授粉后11至15天的离体未成熟种子,可以使种子具有耐干燥性。虽然蔗糖刺激萌发并可能保护对脱水敏感的结构免受干燥损伤,但脱落酸抑制早熟萌发,并且是完成种子成熟程序和相关耐干燥性发育所必需的。