Méthy M, Alpert P, Roy J
C. N. R. S.-CEPE, Route de Mende, BP 5051, 34033, Montpellier Cedex, France.
Oecologia. 1990 Sep;84(2):265-271. doi: 10.1007/BF00318283.
Plant canopy shade reduces photosynthetic photon flux density (PPFD) and ratio of red to far-red light (z). Both effects can cause plants to increase potential for light acquisition through vertical growth and leaf area expansion. Clonal plants such as Eichhornia crassipes might alternatively increase light interception via horizontal growth of stolons or rhizomes and placement of new ramets in less shaded microsites. Effect of simulated canopy shade and component effects of PPFD and z were tested by filtering or adding light uniformly, to a whole group of connected ramets, or locally, to individual ramets within a group. In uniform treatments, low PPFD reduced total growth but low z did not. Low PPFD and low z independently reduced stolon and ramet production and caused etiolation of petioles; effect of low PPFD plus low z on ramet production was greater than that of either factor alone. Lateral clonal growth thus did not seem to be a response to uniform shading; instead, uniformly low PPFD or low z increased partitioning to established ramets. Low z changed partitioning without changing total growth. In local treatments, reduction of growth of individual ramets due to low PPFD and inhibition of new ramet production attributable to spectral composition of light were mitigated when connected ramets were unshaded; plants may respond differently to patchy than to uniform shade.
植物冠层遮荫会降低光合光子通量密度(PPFD)以及红光与远红光的比例(z)。这两种效应都会使植物通过垂直生长和叶面积扩展来增加获取光照的潜力。像凤眼莲这样的克隆植物可能会通过匍匐茎或根状茎的水平生长以及在阴影较少的微生境中放置新的分株来增加对光的截获。通过对一整组相连分株均匀地过滤或添加光照,或者对组内单个分株局部地进行处理,来测试模拟冠层遮荫的效果以及PPFD和z的组成效应。在均匀处理中,低PPFD降低了总生长量,但低z并没有。低PPFD和低z分别降低了匍匐茎和分株的产生,并导致叶柄黄化;低PPFD加低z对分株产生的影响大于单独任何一个因素的影响。因此,横向克隆生长似乎不是对均匀遮荫的反应;相反,均匀的低PPFD或低z增加了对已形成分株的分配。低z改变了分配但没有改变总生长量。在局部处理中,当相连分株未被遮荫时,由于低PPFD导致的单个分株生长减少以及由于光的光谱组成导致的新分株产生受到抑制的情况会得到缓解;植物对斑驳遮荫的反应可能与对均匀遮荫的反应不同。