Page 23 - 《广西植物》2023年第11期
P. 23
11 期 周友秀等: 海岸草本植物细根、叶片功能性状及其与土壤因子的关系 1 9 8 3
772. [陈金艺ꎬ 张静ꎬ 李素慧ꎬ 等ꎬ 2020.模拟喀斯特异质 内变异研究 [J]. 生态学报ꎬ41(20): 8237-8245.]
性小生境下三叶鬼针草地上地下协同生长对策 [J]. 植 HE YQꎬ SHI XJꎬ CHEN GJꎬ et al.ꎬ 2022. Response and
物科学学报ꎬ 38(6): 762-772.] adaptation of leaf functional traits of Eurya emarginata to
CHEN YFꎬ LIN CLꎬ ZHANG Sꎬ et al.ꎬ 2022. Functional environmental factors [J]. Acta Ecol Sinꎬ 42(6): 2418-
characteristics of Castanopsis fargesii fine roots and their 2429. [何雅琴ꎬ 史晓洁ꎬ 陈国杰ꎬ 等ꎬ 2022. 滨柃叶功能
relationship with soil factors at different elevations in Guoyan 性状 对 环 境 因 子 的 响 应 [ J]. 生 态 学 报ꎬ 42(6):
Mountain [J]. J Trop Subtrop Botꎬ 30(3): 413-422. [陈逸 2418-2429.]
飞ꎬ 林晨蕾ꎬ 张硕ꎬ 等ꎬ 2022. 郭岩山不同海拔丝栗栲细 HOU ZAꎬ LI PFꎬ GONG YSꎬ et al.ꎬ 2001. Effect of salt stress
根功能性状及其与土壤因子的关系 [J]. 热带亚热带植 on growth and nutrient absorptionin Leymus chinesis under
物学报ꎬ 30(3): 413-422.] salinity soil [J]. J Shihezi Univ (Nat Sci Ed)ꎬ 5(1): 6-
CHENG JJꎬ ZHANG XNꎬ ZHANG ZYꎬ et al.ꎬ 2022. Analysis 10. [侯振安ꎬ 李品芳ꎬ 龚元石ꎬ 2001. 盐渍土壤环境对羊
on differences in leaf functional traits of desert plants under 草生长与养分吸收的效应 [J]. 石河子大学学报(自然科
interspecific association pattern in different water ̄salt 学版)ꎬ 5(1): 6-10.]
environments of Ebinur Lake [J]. J Plant Resour Environꎬ HUANG AMꎬ FANG Yꎬ SUN Jꎬ et al.ꎬ 2023. Fine root traits of
31(3): 18-25. [程久菊ꎬ 张雪妮ꎬ 张子洋ꎬ 等ꎬ 2022. 艾 Phyllostachys edulis at different altitudes in Wuyi Mountain
比湖不同水盐环境荒漠植物种间关联格局下的叶片功能 [J]. Acta Ecol Sinꎬ 43(1): 398-407. [黄爱梅ꎬ方毅ꎬ孙
性状差 异 分 析 [ J]. 植 物 资 源 与 环 境 学 报ꎬ 31(3): 俊ꎬ等ꎬ 2023. 武夷山不同海拔毛竹细根功能性状 [J]. 生
18-25.] 态学报ꎬ43(1): 398-407.]
CHU DSꎬ ZHENG Xꎬ QIN SHꎬ et al.ꎬ 2020. Characteristics of KLEIMAN Dꎬ AARSSEN LWꎬ 2007. The leaf size/ number
soil salinity and its effects on poplar growth in a silting trade ̄off in trees [J]. J Ecolꎬ 95(2) : 376-382.
coastal area of Northern Jiangsu Province [J]. J Nanjing For KRAMER ̄WALTER KRꎬ BELLINGHAM PJꎬ MILLAR TRꎬ et
Univ (Nat Sci Ed)ꎬ 44(6): 140-146. [储冬生ꎬ 郑旭ꎬ 秦 al.ꎬ 2016. Root traits are multidimensional: specific root
盛华ꎬ 等ꎬ 2020. 苏北淤泥质海岸土壤盐分特征及其对杨 length is independent from root tissue density and the plant
树生长的影响 [J].南京林业大学学报(自然科学版)ꎬ 44 economic spectrum [J]. J Ecolꎬ 104(5): 1299-1310.
(6): 140-146.] LAURE Gꎬ DAMARIS Zꎬ NIKLAUS EZꎬ 2018. Frequency and
DIJKSTRA Pꎬ LAMBERS Hꎬ 1989. Analysis of specific leaf intensity of facilitation reveal opposing patterns along a stress
area and photosynthesis of two inbred lines of Plantago major gradient. [J]. Ecol Evolꎬ 8(4) : 2171-2181.
differing in relative growth rate [J]. New Phytolꎬ 113(3): LI Hꎬ YUAN Lꎬ ZHANG LQꎬ et al.ꎬ 2017. Alternative stable
283-290. states in coastal intertidal wetland ecosystems of Yangtze
EISSENSTAT DMꎬ WELLS CEꎬ YANAI RDꎬ et al. 2000. estuaryꎬ China [ J]. Chin J Appl Ecolꎬ 28 ( 1): 327 -
Building roots in a changing environment: implications for 336. [李蕙ꎬ 袁琳ꎬ 张利权ꎬ 等ꎬ 2017. 长江口滨海湿地潮
root longevity [J]. New Phytolꎬ 147(1): 33-42. 间带生态系统的多稳态特征 [J]. 应用生态学报ꎬ 28(1):
FAN BLꎬ LU Jꎬ QIAN Tꎬ et al.ꎬ 2022. Effects of climate and 327-336.]
soil on leaf acquisition and utilization of carbon and water LI Lꎬ ZHANG Mꎬ ZHENG JMꎬ et al.ꎬ 2022. Functional traits of
resources in different grasslands [J]. Chin J Ecolꎬ 41(4): branches and leaves of 8 bamboo species in the coastal sandy
625-632. [樊宝丽ꎬ 卢晶ꎬ 钱婷ꎬ 等ꎬ 2022. 不同草原类型 land [J]. J For Environꎬ 42(4): 354-363. [李磊ꎬ 张盟ꎬ
下气候和土壤对植物叶片碳水资源获取和利用性状的影 郑俊鸣ꎬ 等ꎬ 2022. 滨海沙地 8 个竹种枝叶功能性状特征
响 [J]. 生态学杂志ꎬ 41(4): 625-632.] [J]. 森林与环境学报ꎬ 42(4): 354-363.]
GAO Tꎬ CHEN Mꎬ DANG CQꎬ et al.ꎬ 2017. Functional traits LI YTꎬ YANG QSꎬ WANG LLꎬet al.ꎬ 2020. Root distribution
of major herbaceous plants in the hydro ̄fluctuation belt of the and soil properties of Fraxinus chinensis plantations with
Three Gorges Reservoir [J]. Pratac Sciꎬ 34(12): 2493 - different forest stand ages in the coastal saline ̄alkali land
2503. [高婷ꎬ 陈淼ꎬ 党成强ꎬ 等ꎬ 2017. 三峡库区消落带 [J]. J NE For Univꎬ 48(8): 50-54. [李永涛ꎬ 杨庆山ꎬ 王
主要草本植物功能性状特征 [J]. 草业科学ꎬ 34(12): 莉莉ꎬ 等ꎬ 2020. 滨海盐碱地不同林龄白蜡人工林根系分
2493-2503.] 布及土壤特性变化 [J]. 东北林业大学学报ꎬ 48(8):
GUO DLꎬ ROBERT JMꎬ JOSEPH JHꎬ 2004. Fine root branch 50-54.]
orders respond differentially to carbon source ̄sink LIU Dꎬ ZHANG Jꎬ ASIM Bꎬ et al.ꎬ 2020. Seasonal dynamics of
manipulations in a long leaf pine forest [ J]. Oecologiaꎬ leaf stoichiometry of Phragmites australis: a case study from
140(3): 450-457. Yangguan Wetlandꎬ Dunhuangꎬ China [J]. Plants (Baselꎬ
HE Yꎬ YAO YPꎬ YAO YPꎬ et al.ꎬ 2021. Interspecific and Switzerland)ꎬ 9(10): 1323-1323.
intraspecific variation of functional traits of woody species in LIU YZꎬ XU Xꎬ LIU Hꎬ et al.ꎬ 2020. Latitude gradient
the dominant Cyclobalanopsis glauca community in the karst variations of leaf functional traits of Spartina alterniflora and
area of Guillin Cityꎬ Southwest China [J]. Acta Ecol Sinꎬ Phragmites australis along the coastal saltmarshes of China
41( 20): 8237 - 8245. [ 何 雁ꎬ 姚 玉 萍ꎬ 姚 义 鹏ꎬ 等ꎬ [J]. J Fudan Univ (Nat Sci Ed)ꎬ 59(4): 381-389. [刘远
2021. 桂林岩溶石山青冈群落植物功能性状的种间和种 瞻ꎬ 徐晓ꎬ 刘浩ꎬ 等ꎬ 2020. 中国滨海盐沼互花米草和芦