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盐度和苄基腺嘌呤对玉米微绒毛发育及功能的影响

Effects of salinity and benzyl adenine on development and function of microhairs of Zea mays L.

作者信息

Ramadan T, Flowers T J

机构信息

Botany Department, Faculty of Science, Assiut University, 71516, Egypt.

出版信息

Planta. 2004 Aug;219(4):639-48. doi: 10.1007/s00425-004-1269-7. Epub 2004 Apr 20.

Abstract

Bicellular microhairs are present on the surfaces of leaves of grasses with the exception of the Pooideae. In some halophytic grasses, these glandular hairs secrete salt, suggesting the intriguing question 'can the microhairs of grasses that do not normally encounter salinity also secrete salt?' Microhairs were counted in replicas of the adaxial and abaxial surfaces of leaves of various ages of maize plants growing either in the absence of salt or in the presence of 40, 80 or 120 mM NaCl. The number of microhairs per unit area of adaxial leaf surface of the youngest leaf almost doubled as the salinity increased from zero to 120 mM NaCl; on the abaxial surface, the number of microhairs increased by 50%. Spraying this leaf with benzyl adenine (BA) caused, when averaged across salinities and surfaces, a 32% increase in the number of microhairs. Salinity reduced leaf area but in all the salinity treatments, spraying with BA increased the total number of microhairs per leaf. Washing leaves of plants provided estimates of the loss of salt from those leaves. There were large differences between the Na:K molar ratios in the washing solution and the leaf tissue, indicating a high selectivity for sodium over potassium for loss from the leaf. BA did not influence the efficiency of salt loss, expressed per microhair, at any salinity level, but did increase loss per leaf. Thus, BA increased salt loss from plants due to its influence on the number of microhairs and leaf area, but not due to its effect on the efficiency of the secretion process per se.

摘要

除了早熟禾亚科外,双细胞微毛存在于禾本科植物叶片表面。在一些盐生禾本科植物中,这些腺毛会分泌盐分,这就引出了一个有趣的问题:“那些通常不会遭遇盐胁迫的禾本科植物的微毛是否也能分泌盐分?”对生长在无盐环境或分别添加40、80或120 mM氯化钠环境中的不同年龄玉米植株叶片的近轴面和远轴面进行复制计数微毛数量。随着盐分从0增加到120 mM氯化钠,最幼嫩叶片近轴叶面单位面积的微毛数量几乎翻倍;在远轴面上,微毛数量增加了50%。用苄基腺嘌呤(BA)喷洒这片叶子,综合不同盐度和叶面情况平均计算,微毛数量增加了32%。盐分降低了叶面积,但在所有盐度处理中,喷洒BA增加了每片叶子微毛的总数。对植株叶片进行冲洗可估算叶片盐分流失情况。冲洗液与叶片组织中的钠钾摩尔比存在很大差异,表明叶片对钠的选择性流失高于钾。在任何盐度水平下,BA都不会影响单个微毛的盐分流失效率,但会增加每片叶子的盐分流失。因此,BA增加了植物的盐分流失,这是由于它对微毛数量和叶面积的影响,而非对分泌过程本身效率的影响。

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