Department of Biology, Carleton College, Northfield, Minnesota 55057.
Plant Physiol. 1991 Dec;97(4):1359-66. doi: 10.1104/pp.97.4.1359.
Gibberellins (GAs) are either required for, or at least promote, the growth of the pea (Pisum sativum L.) fruit. Whether the pericarp of the pea fruit produces GAs in situ and/or whether GAs are transported into the pericarp from the developing seeds or maternal plant is currently unknown. The objective of this research was to investigate whether the pericarp tissue contains enzymes capable of metabolizing GAs from [(14)C]GA(12)-7-aldehyde ([(14)C]GA(12)ald) to biologically active GAs. The metabolism of GAs early in the biosynthetic pathway, [(14)C]GA(12) and [(14)C]GA(12)ald, was investigated in pericarp tissue isolated from 4-day-old pea fruits. [(14)C]GA(12)ald was metabolized primarily to [(14)C]GA(12)ald-conjugate, [(14)C]GA(12), [(14)C]GA(53), and polar conjugate-like products by isolated pericarp. In contrast, [(14)C]GA(12) was converted primarily to [(14)C]GA(53) and polar conjugate-like products. Upon further investigations with intact 4-day-old fruits on the plant, [(14)C]GA(12) was found to be converted to a product which copurified with endogenous GA(20). Lastly, [(2)H]GA(20) and [(2)H]GA(1) were recovered 48 hours after application of [(2)H]- and [(14)C]GA(53) to pericarp tissue of intact 3-day-old pea fruits. These results demonstrate that pericarp tissue metabolizes GAs and suggests a function for pericarp GA metabolism during fruit growth.
赤霉素(GAs)是豌豆(Pisum sativum L.)果实生长所必需的,或者至少促进其生长。目前尚不清楚豌豆果实的果皮是否在原位产生 GAs,以及 GAs 是否从发育中的种子或母体植物运输到果皮中。本研究的目的是研究果皮组织中是否含有能够将 [(14)C]GA(12)-7-醛 ([(14)C]GA(12)ald) 代谢为具有生物活性的 GAs 的酶。在从 4 天大的豌豆果实中分离出的果皮组织中研究了 GAs 早期生物合成途径中的 [(14)C]GA(12) 和 [(14)C]GA(12)ald 的代谢。[(14)C]GA(12)ald 主要代谢为 [(14)C]GA(12)ald 缀合物、[(14)C]GA(12)、[(14)C]GA(53) 和极性缀合物样产物。相比之下,[(14)C]GA(12) 主要转化为 [(14)C]GA(53) 和极性缀合物样产物。在对植物上完整的 4 天大的果实进行进一步研究后,发现 [(14)C]GA(12) 转化为与内源性 GA(20) 共纯化的产物。最后,在将 [(2)H]GA(20) 和 [(2)H]GA(1) 应用于完整的 3 天大的豌豆果实的果皮组织 48 小时后,回收了 [(2)H]GA(20) 和 [(2)H]GA(1)。这些结果表明果皮组织代谢 GAs,并表明果皮 GA 代谢在果实生长过程中的作用。