Based on the data of Landsat-TM in 1986 and 2000 and with the applied indices of landscape pattern, an analysis is carried out on the landscape pattern with its evolution in Yuanmou County of Yunnan Province inside th...Based on the data of Landsat-TM in 1986 and 2000 and with the applied indices of landscape pattern, an analysis is carried out on the landscape pattern with its evolution in Yuanmou County of Yunnan Province inside the Jinshajiang Xerothermic valley area and a forecast is given on the changing tendency of the landscape pattern in the county with Markov Chain Model. The result shows that the production landscape like irrigated farmland and construction land in town and country as well as ecological building landscape in boondocks were enlarged during 1986-2000. Also the patch shape was regularized and the patch shape index and dimensionality were degraded. The landscape pattern was tattered and the heterogeneity index and Evenness degree were increased but the dominance degree was degraded. The key elements with lower stability cover grassland. water body and bush land. The future transformation of landscape pattern will centralize in construction land's occupation in irrigated farmland, non-irrigated farmland and grassland, the transformation of non-irrigated farmland to irrigated farmland,forest and sparse wodland or orchard,construction land's occupation in grassland and cultivation of it into sloping non-irrigated farmland and forest's degeneracy to bush land, sparse woodland and grassland. The main measures to improve virtuous development of landscape in the xerothermic valley are suggested.展开更多
以2年生三叶漆(T erm inth ia p an icu la ta)幼苗为实验材料,研究了生长于全自然光和遮荫条件(光强相当于自然光强的50%)下幼苗的光合特性和叶绿素荧光参数对不同土壤水分条件的响应,探讨了其对干旱和强光胁迫的生理适应机制.结果表明...以2年生三叶漆(T erm inth ia p an icu la ta)幼苗为实验材料,研究了生长于全自然光和遮荫条件(光强相当于自然光强的50%)下幼苗的光合特性和叶绿素荧光参数对不同土壤水分条件的响应,探讨了其对干旱和强光胁迫的生理适应机制.结果表明,叶片相对含水量(RW C)、叶水势(Ψ)、最大光合速率(Pm ax)、表观量子效率(AQY)、暗呼吸速率(Rd)和光合色素含量都随干旱胁迫的加剧而下降.Pm ax、AQY、Rd和比叶重(LM A)随光强的增加而升高,色素含量则随光强升高而降低.Ch la/b、C ar/Ch l随干旱程度和光强的增加有升高的趋势.PSⅡ的最大光能转换效率(Fv/Fm)和光化学量子效率(ФPSⅡ)在日间光较强时明显降低,说明发生了光抑制.电子传递速率(ETR)和非光化学猝灭系数(N PQ)随日间光强的增大而升高,表明三叶漆可能通过增强光呼吸和热耗散抵御光抑制、保护光合机构.二元方差分析表明,水分和光强具有明显的交互作用.全自然光下严重干旱的幼苗仍有较高的Pm ax(9.65μm o l.m-2.-s 1),说明三叶漆对干旱和强光具有极强的适应能力,这也是其成为干热河谷植被优势种的重要原因.展开更多
基金Supported by the National Key Technologies Research and Development Programme(2001BA901A40, 2001BA606A07)
文摘Based on the data of Landsat-TM in 1986 and 2000 and with the applied indices of landscape pattern, an analysis is carried out on the landscape pattern with its evolution in Yuanmou County of Yunnan Province inside the Jinshajiang Xerothermic valley area and a forecast is given on the changing tendency of the landscape pattern in the county with Markov Chain Model. The result shows that the production landscape like irrigated farmland and construction land in town and country as well as ecological building landscape in boondocks were enlarged during 1986-2000. Also the patch shape was regularized and the patch shape index and dimensionality were degraded. The landscape pattern was tattered and the heterogeneity index and Evenness degree were increased but the dominance degree was degraded. The key elements with lower stability cover grassland. water body and bush land. The future transformation of landscape pattern will centralize in construction land's occupation in irrigated farmland, non-irrigated farmland and grassland, the transformation of non-irrigated farmland to irrigated farmland,forest and sparse wodland or orchard,construction land's occupation in grassland and cultivation of it into sloping non-irrigated farmland and forest's degeneracy to bush land, sparse woodland and grassland. The main measures to improve virtuous development of landscape in the xerothermic valley are suggested.
文摘以2年生三叶漆(T erm inth ia p an icu la ta)幼苗为实验材料,研究了生长于全自然光和遮荫条件(光强相当于自然光强的50%)下幼苗的光合特性和叶绿素荧光参数对不同土壤水分条件的响应,探讨了其对干旱和强光胁迫的生理适应机制.结果表明,叶片相对含水量(RW C)、叶水势(Ψ)、最大光合速率(Pm ax)、表观量子效率(AQY)、暗呼吸速率(Rd)和光合色素含量都随干旱胁迫的加剧而下降.Pm ax、AQY、Rd和比叶重(LM A)随光强的增加而升高,色素含量则随光强升高而降低.Ch la/b、C ar/Ch l随干旱程度和光强的增加有升高的趋势.PSⅡ的最大光能转换效率(Fv/Fm)和光化学量子效率(ФPSⅡ)在日间光较强时明显降低,说明发生了光抑制.电子传递速率(ETR)和非光化学猝灭系数(N PQ)随日间光强的增大而升高,表明三叶漆可能通过增强光呼吸和热耗散抵御光抑制、保护光合机构.二元方差分析表明,水分和光强具有明显的交互作用.全自然光下严重干旱的幼苗仍有较高的Pm ax(9.65μm o l.m-2.-s 1),说明三叶漆对干旱和强光具有极强的适应能力,这也是其成为干热河谷植被优势种的重要原因.