1 |
李新荣,赵洋,回嵘,等.中国干旱区恢复生态学研究进展及趋势评述[J].地理科学进展,2014,33(11):1435-1443.
|
2 |
赵芸,贾荣亮,滕嘉玲,等.腾格里沙漠人工固沙植被演替过程中生物土壤结皮盖度对沙埋的响应[J].生态学报,2017,37(18):6138-6148.
|
3 |
李新荣,谭会娟,回嵘,等.中国荒漠与沙地生物土壤结皮研究[J].科学通报,2018,63(23):2320-2334.
|
4 |
Heredia-Velásquez A M, Giraldo-Silva A, Nelson C,et al.Dual use of solar power plants as biocrust nurseries for large-scale arid soil restoration[J].Nature Sustainability,2023(4):1-10.
|
5 |
Jankowski A.Cold adaptation drives variability in needle structure and anatomy in Pinus sylvestris L.along a 1,900 km temperate-boreal transect[J].Functional Ecology,2017,31:2212-2223.
|
6 |
Wright I J, Reich P B, Westoby M,et al.The worldwide leaf economics spectrum[J].Nature,2004,428(6985):821-827.
|
7 |
Proctor M.Patterns of desiccation tolerance and recovery in bryophytes[J].Plant Growth Regulation,2001,35:147-156.
|
8 |
Belnap J, Weber B.Biological soil crusts as an integral component of desert environments[J].Ecological Processes,2013,10(1186):2192-1709.
|
9 |
Song L, Zhang Y J, Chen X,et al.Water relations and gas exchange of fan bryophytes and their adaptations to microhabitats in an Asian subtropical montane cloud forest[J].Journal of Plant Research,2015,128:573-584.
|
10 |
Tao Y, Zhang Y M.Effects of leaf hair points of a desert moss on water retention and dew formation:implications for desiccation tolerance[J].Journal of Plant Research,2012,125:351-360.
|
11 |
Pan Z, Pitt W G, Zhang Y,et al.The upside-down water collection system of Syntrichia caninervis [J].Nature Plants,2016,2(7):1-5.
|
12 |
张显强,曾建军,谌金吾,等.石漠化干旱环境中石生藓类水分吸收特征及其结构适应性[J].生态学报,2012,32(12):3902-3911.
|
13 |
田悦,刘艳.西藏高寒草原藓类植物群丛特征及其与生态因子的关系[J].生态学杂志,2023,42(5):1035-1042.
|
14 |
Coe K K, Howard N B, Slate M L,et al.Morphological and physiological traits in relation to carbon balance in a diverse clade of dryland mosses[J].Plant,Cell & Environment,2019,42:3140-3151.
|
15 |
Jia R L, Li X R, Liu L C,et al.Responses of biological soil crusts to sand burial in a revegetated area of the Tengger Desert,Northern China[J].Soil Biology & Biochemistry,2008,40:2827-2834.
|
16 |
Jia R L, Zhao Y, Gao Y H,et al.Antagonistic effects of drought and sand burial enable the survival of the biocrust moss Bryum argenteum in an arid sandy desert[J].Biogeosciences,2018,15:1161-1172.
|
17 |
Li X R, Chen Y W, Yang L.Cryptogam diversity and formation of soil crusts in temperate desert[J].Annals of Arid Zone,2004,43:335-353.
|
18 |
赵芸,贾荣亮,高艳红,等.腾格里沙漠人工固沙植被演替过程中生物土壤结皮归一化植被指数的变化特征[J].植物生态学报,2017,41(9):972-984.
|
19 |
Liu W, Zhen L, Qi D H.Variation in leaf traits at different altitudes reflects the adaptive strategy of plants to environmental changes[J].Ecology and Evolution,2020,10:8166-8175.
|
20 |
高艳红,刘立超,贾荣亮,等.沙坡头人工植被年龄为过程的土壤呼吸特征[J].生态学报,2012,32(8):2474-2482.
|
21 |
Li Y, Luo T, Lu Q.Plant height as a simple predictor of the root to shoot ratio:evidence from alpine grasslands on the Tibetan Plateau[J].Journal of Vegetation Science,2008,19(2):245-252.
|
22 |
Wang L, Zhao L, Song X,et al.Morphological traits of Bryum argenteum and its response to environmental variation in arid and semi-arid areas of Tibet[J].Ecological Engineering,2019,136:101-107.
|
23 |
Proctor M C F.Bryophyte Biology[M].Cambridge,UK:Cambridge University Press,2008:237-268.
|
24 |
代远萌,李满乐,徐铭泽,等.毛乌素沙地沙丘不同固定阶段黑沙蒿叶性状特征[J].植物生态学报,2022,46(11):1376-1387.
|
25 |
李耀琪,王志恒.植物叶片形态的生态功能、地理分布与成因[J].植物生态学报,2021,45(10):1154-1172.
|
26 |
Jia R L, Li X R, Liu L C,et al.Effects of sand burial on dew deposition on moss soil crust in a revegetated area of the Tengger Desert,Northern China[J].Journal of Hydrology,2014,519:2341-2349.
|
27 |
张甜,贾荣亮,高艳红,等.沙坡头人工固沙植被演替过程中主要结皮生物生态位和种间关联变化特征[J].中国沙漠,2021,41(4):100-108.
|
28 |
Jenna T B, Ekwealor T A, Clark O,et al.Natural ultraviolet radiation exposure alters photosynthetic biology and improves recovery from desiccation in a desert moss[J].Journal of Experimental Botany,2018,72(11):4161-4179.
|
29 |
仝治国.中国几种旱生藓类的新分布[J].内蒙古大学学报(自然科学版),1963,5(2):73-82.
|
30 |
Liu L, Jiang Y, Song X,et al.Temperature,not precipitation,drives the morphological traits of Didymodon rigidulus in Tibet[J].Ecological Indicators,2021,133:108401.
|
31 |
徐杰,白学良,田桂泉,等.腾格里沙漠固定沙丘结皮层藓类植物的生态功能及与土壤环境因子的关系[J].中国沙漠,2005,25(2):92-100.
|
32 |
张利权.浙江省松阳县黄山松种群的密度与生物量动态[J].植物生态学与地植物学学报,1991,15(3):216-223.
|
33 |
孙强,卜兆君,王升忠,等.哈泥贫营养泥炭沼泽毛壁泥炭藓种群密度制约初探[J].湿地科学,2005,3(2):116-120.
|
34 |
Li X R, Tian F, Jia R L,et al.Do biological soil crusts determine vegetation changes in sandy deserts?Implications for managing artificial vegetation[J].Hydrological Processes,2010,24(25):3621-3630.
|
35 |
Li J, Li X, Chen C.Degradation and reorganization of thylakoid protein complexes of Bryum argenteum in response to dehydration and rehydration[J].The Bryologist,2014,117(2):110-118.
|
36 |
Slate M L, McLeod M L, Callaway R M.Positive interactions between an exotic invader and moss biocrusts vary across life stage and correspond with the effect of water pulses on soil nitrogen[J].Functional Ecology,2021,35(9):2108-2118.
|
37 |
马和平,王瑞红,屈兴乐,等.不同生境对藏东南地面生苔藓多样性和生物量的影响[J].植物生态学报,2022,46(5):552-560.
|
38 |
王渟渟,张桥英,张运春,等.喜旱莲子草在增温背景下的密度制约与生长权衡[J].生态学报,2022,42(22):9100-9110.
|
39 |
安璐,吴兆飞,范春雨,等.长白山次生杨桦林种群空间点格局及密度制约效应[J].生态学报,2021,41(4):1461-1471.
|
40 |
Zamfir M, Goldberg D E.The effect of initial density on interactions between bryophytes at individual and community levels[J].Journal of Ecology,2000,88(4):243-255.
|
41 |
卜兆君,陈旭,姜丽红,等.藓类植物相互作用的研究进展[J].应用生态学报,2009,20(2):460-466.
|
42 |
Coe K, Carter B, Slate M,et al.Moss functional trait ecology:trends,gaps,and biases in the current literature[J].American Journal of Botany,2024,111(2):e16288.
|