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Ecolꎬ 213: 1597-1608.
BANIYA CBꎬ SOLHOY Tꎬ VETAAS ORꎬ 2009. Temporal
changes in species diversity and composition in abandoned
fields in a trans ̄Himalayan landscapeꎬ Nepal [ J]. Plant
Ecolꎬ 201: 383-399.
BAGARIA Gꎬ RODA Fꎬ PINO Jꎬ 2019. Extinction and
colonisation of habitat specialists drive plant species
replacement along a Mediterranean grassland ̄forest
succession [J]. J Veg Sciꎬ 30(2): 331-340.
BOURLIERE Fꎬ HADLEY Mꎬ 1983. Present ̄day savannas: an
overview [J]. Ecosyst Worldꎬ 13: 1-17.
CUI YZꎬ LI Kꎬ LI CFꎬ et al.ꎬ 2006. Growth adaptability study
of Azadirachta indica at different elevations of the dry hot
valley of Yuanmou County of Jinsha River basin [J]. For By ̄
Prod Special Chinꎬ 3: 5-7. [崔永忠ꎬ 李昆ꎬ 李从富ꎬ 等ꎬ
图 6 气候因子和土壤营养对不同海拔 2006. 元谋县金沙江干热河谷不同海拔印楝适应性研究
物种的 CCA 分析 [J]. 中国林副特产ꎬ 3: 5-7.]
Fig. 6 CCA analysis of climatic factors and soil GENG QWꎬ MUHAMMAD Aꎬ YUAN ZXꎬ et al.ꎬ 2022. Plant
species composition and diversity along successional
nutrients for species at different elevations
gradients in arid and semi ̄arid regions of China [ J]. For
Ecol Manageꎬ 524: 120542.
来实现ꎬ其他重要部分将通过在造林困难地段实现 HE QHꎬ HE YHꎬ BAO WKꎬ 2004. Dynamics of soil water
造林ꎬ其中干热河谷的森林重建将是未来提高森林 contents on south ̄facing slope of arid valley area in the upper
Minjiang River [ J]. J Appl Environ Biolꎬ 10 ( 1): 68 -
覆盖率的一部分(马焕成等ꎬ2020)ꎮ 本研究发现ꎬ 74. [何其华ꎬ 何永华ꎬ 包维楷ꎬ 2004. 岷江上游干旱河谷
元江干热河谷自然保护区内的物种多样性丰富ꎬ物 典型阳坡海拔梯度上土壤水分动态 [J]. 应用与环境生
种密度适中ꎬ区域特有种多ꎬ充分证实了建设保护 物学报ꎬ 10(1): 68-74.]
区的重要功能和意义ꎬ说明保护区外退化区域的植 HOU Jꎬ FU BJꎬ 2014. Vegetation dynamics during different
abandoned year spans in the land of the Loess Plateau of
被恢复是可行的ꎮ 从不同海拔树种重要值和适应
China [J]. Environ Monit Assessꎬ 186: 1133-1141.
性来看ꎬ我们建议:低海拔区域可尝试采用厚皮树、 HUANG JHꎬ 1994. The spatial pattern of species diversity and
老人皮、心叶木、白皮乌口树、疏序黄荆和九里香进 its formation mechanism [ J]. Biodivers Sciꎬ 2 (2): 103 -
107. [黄建辉ꎬ 1994. 物种多样性的空间格局及其形成机
行恢复ꎻ中海拔以清香木、老人皮、三叶漆、余甘子、
制初探 [J]. 生物多样性ꎬ 2(2): 103-107.]
鞍叶羊蹄甲、元江杭子梢和天干果为主要树种ꎻ中 HUANG JHꎬ BAI YFꎬ HAN XGꎬ 2001. Effects of species
高海拔可选择铁橡栎、清香木、栓皮栎、元江杭子 diversity on ecosystem functioning: mechanisms and
梢、华西小石积、沙针和余甘子ꎻ高海拔可用锥连 hypotheses [J]. Biodivers Sciꎬ 9(1): 1-7. [黄建辉ꎬ 白永
飞ꎬ 韩兴国ꎬ 2001. 物种多样性与生态系统功能:影响机
栎、栓皮栎、薄叶鼠李、清香木、华西小石积、沙针和
制及有关假说 [J]. 生物多样性ꎬ 9(1): 1-7.]
假虎刺ꎮ 此外ꎬ亟须在自然保护区内部和外部分别 ISERMANN Mꎬ 2011. Patterns in species diversity during
建立固定样地ꎬ探索人为干扰对群落组成和多样性 succession of coastal dunes [ J]. J Coast Resꎬ 27(4):
的影响ꎬ植物群落构建与环境因子的相关性ꎬ以及 661-671.
LEI SYꎬ GU YFꎬ ZHANG YJꎬ et al.ꎬ 2022. Community
植物群落对极端干旱的响应和适应等ꎮ
structure analysis of nirS denitrifying bacteria in farmland
soil at different elevations in the Dry ̄hot Valley of Panzhihua
[J]. Chin J Soil Sciꎬ 53(6): 1368-1375. [雷善钰ꎬ 辜运
参考文献: 富ꎬ 张亚洁ꎬ 等ꎬ 2022. 攀枝花干热河谷区不同海拔高度
农田土壤 nirS 型反硝化细菌的群落结构分析 [J]. 土壤
ANDERSON MJꎬ CRIST TOꎬ CHASE JMꎬ et al.ꎬ 2011. 通报ꎬ 53(6): 1368-1375.]
Navigating the multiple meanings of β diversity: a roadmap LI Pꎬ LI ZBꎬ XUE Jꎬ et al.ꎬ 2011. Effects of altitudinal
for the practicing ecologist [J]. Ecol Lettꎬ 14(1): 19-28. gradient on soil enzyme activity in hot ̄dry valley [ J]. J
ALVAREZ ̄MOLINA LLꎬ MARTINER MLꎬ PEREZ ̄MAQUEO Basic Sci Engꎬ 19(2): 140-149. [李鹏ꎬ 李占斌ꎬ 薛萐ꎬ
Oꎬ et al.ꎬ 2012. Richnessꎬ diversityꎬ and rate of primary 等ꎬ 2011. 不同海拔对干热河谷地区土壤酶活性的影响
succession over 20 years in tropical coastal dunes [J]. Plant [J]. 应用基础与工程科学学报ꎬ 19(2): 140-149.]