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硼的化学与生物学

Chemistry and biology of boron.

作者信息

Loomis W D, Durst R W

机构信息

Department of Biochemistry and Biophysics, Oregon State University, Corvallis 97331.

出版信息

Biofactors. 1992 Apr;3(4):229-39.

PMID:1605832
Abstract

Boron is an essential nutrient for certain organisms, notably vascular plants and diatoms. Cyanobacteria require boron for formation of nitrogen-fixing heterocysts and boron may be beneficial to animals. Boron deficiency in plants produces manifold symptoms: many functions have been postulated. Deficiency symptoms first appear at growing points, within hours in root tips and within minutes or seconds in pollen tube tips, and are characterized by cell wall abnormalities. Boron-deficient tissues are brittle or fragile, while plants grown on high boron levels may have unusually flexible or resilient tissues. Borate forms cyclic diesters with appropriate diols or polyols. The most stable are formed with cis-diols on a furanoid ring. Two compounds have this structure physiologically: ribose in ribonucleotides and RNA, and apiose in the plant cell wall. Germanium can substitute for boron in carrot cell cultures. Both boron and germanium are localized primarily in the cell wall. We postulate that borate-apiofuranose ester cross-links are the auxin-sensitive acid-growth link in vascular plants, that the cyanobacterial heterocyst envelope depends on borate cross-linking of mannopyranose and/or galactopyranose residues in a polysaccharide-lipid environment, and that boron in diatoms forms ester cross-links in the polysaccharide cell wall matrix rather than boron-silicon interactions. Complexing of ribonucleotides is probably a factor in boron toxicity.

摘要

硼是某些生物体必需的营养元素,特别是维管植物和硅藻。蓝细菌形成固氮异形胞需要硼,并且硼可能对动物有益。植物缺硼会产生多种症状:人们已提出多种功能假设。缺硼症状首先出现在生长点,根尖在数小时内出现,花粉管尖端在数分钟或数秒内出现,其特征是细胞壁异常。缺硼组织脆或易碎,而在高硼水平下生长的植物可能具有异常柔韧或有弹性的组织。硼酸盐与适当的二醇或多元醇形成环状二酯。最稳定的是在呋喃环上与顺式二醇形成的。有两种化合物在生理上具有这种结构:核糖核苷酸和RNA中的核糖,以及植物细胞壁中的芹糖。在胡萝卜细胞培养物中,锗可以替代硼。硼和锗主要定位于细胞壁。我们推测硼酸盐 - 芹糖呋喃糖酯交联是维管植物中生长素敏感的酸生长连接,蓝细菌异形胞包膜依赖于多糖 - 脂质环境中甘露吡喃糖和/或半乳吡喃糖残基的硼酸盐交联,并且硅藻中的硼在多糖细胞壁基质中形成酯交联而不是硼 - 硅相互作用。核糖核苷酸的络合可能是硼毒性的一个因素。

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