Müntz K, Belozersky M A, Dunaevsky Y E, Schlereth A, Tiedemann J
Institut für Pflanzengenetik und Kulturpflanzenforschung (IPK), Corrensstr. 3, D-06466 Gatersleben, Germany.
J Exp Bot. 2001 Sep;52(362):1741-52. doi: 10.1093/jexbot/52.362.1741.
Though endopeptidases and carboxypeptidases are present in protein bodies of dry quiescent seeds the function of these proteases during germination is still a matter of debate. In some plants it was demonstrated that endopeptidases of dry protein bodies degrade storage proteins of these organelles. Other studies describe cases where this did not happen. The role that stored proteinases play in the initiation of storage protein breakdown in germinating seeds thus remains unclear. Numerous reviews state that the initiation of reserve protein mobilization is attributed to de novo formed endopeptidases which together with stored carboxypeptidases degrade the bulk of proteins in storage organs and tissues after seeds have germinated. The evidence that the small amounts of endopeptidases in protein bodies of embryonic axes and cotyledons of dry seeds from dicotyledonous plants play an important role in the initiation of storage protein mobilization during early germination is summarized here.
虽然内肽酶和羧肽酶存在于干燥静止种子的蛋白体中,但这些蛋白酶在种子萌发过程中的功能仍存在争议。在一些植物中,已证明干燥蛋白体中的内肽酶可降解这些细胞器的储存蛋白。其他研究则描述了未发生这种情况的案例。因此,储存蛋白酶在萌发种子中储存蛋白分解起始过程中所起的作用仍不清楚。许多综述指出,储备蛋白动员的起始归因于新形成的内肽酶,这些内肽酶与储存的羧肽酶一起在种子萌发后降解储存器官和组织中的大部分蛋白质。本文总结了双子叶植物干燥种子胚轴和子叶蛋白体中少量内肽酶在早期萌发过程中储存蛋白动员起始中起重要作用的证据。