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对相对生长速率不同的两种大车前自交系的比叶面积和光合作用的分析。

Analysis of specific leaf area and photosynthesis of two inbred lines of Plantago major differing in relative growth rate.

作者信息

Dijkstra Paul, Lambers Hans

机构信息

Department of Plant Biology, University of Groningen, P.O. Box 14, 9750 AA Haren, The Netherlands.

Department of Plant Ecology, University of Utrecht, Lange Nieuwstraat 106, 3512 PN Utrecht, The Netherlands.

出版信息

New Phytol. 1989 Nov;113(3):283-290. doi: 10.1111/j.1469-8137.1989.tb02405.x.

Abstract

Two inbred lines of Plantago major L., differing in relative growth rate (RGR), were studied in order to elucidate physiological factors responsible for this difference. The slow growing inbred line of P. major ssp. major L. (line W9) had a lower specific leaf area (SLA) compared with that of the fast growing P. major ssp. pleiosperma Pilger (line A4). Photosynthetic activity per unit leaf area was higher than that of A4, but expressed per unit leaf dry weight W9 exhibited a lower activity than A4. Photosynthetic capacity (per unit leaf dry weight or nitrogen) was identical for both lines. The amount of chlorophyll a per unit dry weight or leaf area was higher for line W9. Differences in the chemical composition of the leaf dry weight of the two lines did not explain the lower SLA or lower photosynthetic activity per unit leaf dry weight of the slow growing line. The lower SLA of W9 was mainly caused by the lower water content per unit dry weight. A higher amount of cell wall material per unit leaf dry weight was found. We conclude that the lower SLA of W9 resulted in a greater shading within the leaf, a lower light absorption and lower photosynthetic rate per unit leaf dry weight. Consequently, this resulted in a lower RGR. The significance of these characters for growth under trampling and soil compaction is discussed.

摘要

为了阐明导致相对生长速率(RGR)存在差异的生理因素,对两种生长速率不同的大车前(Plantago major L.)自交系进行了研究。大车前亚种大车前(Plantago major ssp. major L.)生长缓慢的自交系(W9系)与生长迅速的大车前亚种多籽大车前(Plantago major ssp. pleiosperma Pilger)(A4系)相比,比叶面积(SLA)较低。单位叶面积的光合活性高于A4系,但以单位叶干重表示时,W9系的光合活性低于A4系。两种自交系的光合能力(单位叶干重或氮)相同。W9系单位干重或叶面积的叶绿素a含量更高。两系叶片干重的化学成分差异并不能解释生长缓慢系较低的比叶面积或单位叶干重较低的光合活性。W9系较低的比叶面积主要是由于单位干重含水量较低。发现单位叶干重的细胞壁物质含量更高。我们得出结论,W9系较低的比叶面积导致叶片内部遮荫更大、光吸收更低以及单位叶干重光合速率更低。因此,这导致了较低的相对生长速率。讨论了这些特征对践踏和土壤压实条件下生长的意义。

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