Suppr超能文献

玉米叶片中扩张速率、细胞分裂速率和细胞大小的空间分布:土壤水分状况、蒸发需求和温度影响的综合分析

Spatial distributions of expansion rate, cell division rate and cell size in maize leaves: a synthesis of the effects of soil water status, evaporative demand and temperature.

作者信息

Tardieu F, Reymond M, Hamard P, Granier C, Muller B

机构信息

INRA-ENSAM. Laboratoire d'Ecophysiologie des Plantes sous Stress Environnementaux, Montpellier, France.

出版信息

J Exp Bot. 2000 Sep;51(350):1505-14. doi: 10.1093/jexbot/51.350.1505.

Abstract

The spatial distributions of leaf expansion rate, cell division rate and cell size was examined under contrasting soil water conditions, evaporative demands and temperatures in a series of experiments carried out in either constant or naturally fluctuating conditions. They were examined in the epidermis and all leaf tissues. (1) Meristem temperature affected relative elongation rate by a constant ratio at all positions in the leaf. If expressed per unit thermal time, the distribution of relative expansion rate was independent of temperature and was similar in all experiments with low evaporative demand and no water deficit. This provides a reference distribution, characteristic of the studied genotype, to which any distribution in stressed plants can be compared. (2) Evaporative demand and soil water deficit affected independently the distribution of relative elongation rate and had near-additive effects. For a given stress, a nearly constant difference was observed, at all positions of the leaf, between the relative elongation rates of stressed plants and those of control plants. This caused a reduction in the length of the zone with tissue elongation. (3) Methods for calculating cell division rate in the epidermis and in all leaf tissues are proposed and discussed. In control plants, the zone with cell division was 30 mm and 60 mm long in the epidermis and in whole tissues, respectively. Both this length and relative division rate were reduced by soil water deficit. The size of epidermal and of mesophyll cells was nearly unaffected in the leaf zone with both cell division and tissue expansion, suggesting that water deficit affects tissue expansion rate and cell division rate to the same extent. Conversely, cell size of epidermis and mesophyll were reduced by water deficit in mature parts of the leaf.

摘要

在一系列在恒定或自然波动条件下进行的实验中,研究了在不同土壤水分条件、蒸发需求和温度下叶片扩展速率、细胞分裂速率和细胞大小的空间分布。在表皮和所有叶片组织中对它们进行了研究。(1)分生组织温度以恒定比例影响叶片所有位置的相对伸长率。如果以单位热时间表示,相对扩展速率的分布与温度无关,并且在所有蒸发需求低且无水分亏缺的实验中相似。这提供了一个参考分布,其为所研究基因型的特征,可将胁迫植物中的任何分布与之比较。(2)蒸发需求和土壤水分亏缺独立影响相对伸长率的分布,并具有近乎相加的效应。对于给定的胁迫,在叶片的所有位置,胁迫植物与对照植物的相对伸长率之间观察到近乎恒定的差异。这导致组织伸长区域的长度缩短。(3)提出并讨论了计算表皮和所有叶片组织中细胞分裂速率的方法。在对照植物中,表皮和整个组织中细胞分裂区域的长度分别为30毫米和60毫米。该长度和相对分裂速率均因土壤水分亏缺而降低。在细胞分裂和组织扩展的叶片区域中,表皮和叶肉细胞的大小几乎未受影响,这表明水分亏缺对组织扩展速率和细胞分裂速率的影响程度相同。相反,在叶片成熟部分,水分亏缺会使表皮和叶肉细胞大小减小。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验