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顺式玉米素型细胞分裂素在植物中的分布、生物活性、代谢及可能的功能。

Distribution, biological activities, metabolism, and the conceivable function of cis-zeatin-type cytokinins in plants.

机构信息

Laboratory of Hormonal Regulations in Plants, Institute of Experimental Botany, Academy of Sciences of the Czech Republic, Rozvojová 263, 16502 Prague 6, Czech Republic.

出版信息

J Exp Bot. 2011 May;62(8):2827-40. doi: 10.1093/jxb/erq457. Epub 2011 Jan 31.

Abstract

Cytokinins (CKs) are plant hormones affecting numerous developmental processes. Zeatin and its derivatives are the most important group of isoprenoid CKs. Zeatin occurs as two isomers: while trans-zeatin (transZ) was found to be a bioactive substance, cis-zeatin (cisZ) was reported to have a weak biological impact. Even though cisZ derivatives are abundant in various plant materials their biological role is still unknown. The comprehensive screen of land plants presented here suggests that cisZ-type CKs occur ubiquitously in the plant kingdom but their abundance might correlate with a strategy of life rather than with evolutionary complexity. Changing levels of transZ and cisZ during Arabidopsis ontogenesis show that levels of the two zeatin isomers can differ significantly during the life span of the plant, with cisZ-type CKs prevalent in the developmental stages associated with limited growth. A survey of the bioassays employed illustrates mild activity of cisZ and its derivatives. No cis↔trans isomerization, which would account for the effects of cisZ, was observed in tobacco cells and oat leaves. Differences in uptake between the two isomers resulting in distinct bioactivity have not been detected. In contrast, cisZ and transZ have a different metabolic fate in oat and tobacco. Analysis of a CK-degrading enzyme, cytokinin oxidase/dehydrogenase (CKX), reveals that Arabidopsis possesses two isoforms, AtCKX1 expressed in stages of active growth, and AtCKX7, both of which have the highest affinity for the cisZ isomer. Based on the present results, the conceivable function of cisZ-type CKs as delicate regulators of CK responses in plants under growth-limiting conditions is hypothesized.

摘要

细胞分裂素(CKs)是影响众多发育过程的植物激素。玉米素及其衍生物是异戊烯基 CKs 中最重要的一组。玉米素存在两种异构体:虽然反式玉米素(transZ)被发现是一种具有生物活性的物质,但顺式玉米素(cisZ)据报道具有较弱的生物学影响。尽管 cisZ 衍生物在各种植物材料中丰富存在,但它们的生物学作用仍然未知。这里呈现的陆地植物综合筛选表明,cisZ 型 CKs 普遍存在于植物界,但它们的丰度可能与生命策略相关,而不是与进化复杂性相关。拟南芥个体发生过程中 transZ 和 cisZ 水平的变化表明,两种玉米素异构体的水平在植物的整个生命周期中可能有很大差异,cisZ 型 CKs 在与生长受限相关的发育阶段更为普遍。对所采用的生物测定法的调查表明 cisZ 及其衍生物具有温和的活性。在烟草细胞和燕麦叶片中未观察到 cis↔trans 异构化,这会导致 cisZ 的作用。未检测到两种异构体之间的吸收差异导致不同的生物活性。相反,cisZ 和 transZ 在燕麦和烟草中有不同的代谢命运。对细胞分裂素降解酶,细胞分裂素氧化酶/脱氢酶(CKX)的分析表明,拟南芥具有两种同工型,在活跃生长阶段表达的 AtCKX1 和 AtCKX7,它们对 cisZ 异构体的亲和力最高。基于目前的结果,假设 cisZ 型 CKs 作为在生长受限条件下植物中 CK 反应的精细调节剂的可想象功能。

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