
生物多样性 ›› 2025, Vol. 33 ›› Issue (8): 25086. DOI: 10.17520/biods.2025086 cstr: 32101.14.biods.2025086
收稿日期:2025-03-13
接受日期:2025-09-23
出版日期:2025-08-20
发布日期:2025-10-16
通讯作者:
*E-mail: xjge@scbg.ac.cn
基金资助:
Ying Feng1, Feng Song2, Guangzhao Jin3, Komiljon Tojibaev4, Xuejun Ge3,*(
)
Received:2025-03-13
Accepted:2025-09-23
Online:2025-08-20
Published:2025-10-16
Contact:
*E-mail: xjge@scbg.ac.cn
Supported by:摘要:
本研究旨在系统解析沙拐枣属(Calligonum)的物种多样性、分布格局及环境适应机制, 为其分类修订提供科学依据。研究方法包括: 整合全球分类学数据及全球生物多样性信息网络(GBIF)等多源数据库, 以厘清其全球分布格局; 基于Tashkent Plant Herbarium (TASH)馆藏标本开展中亚地区瘦果形态测量与比较; 结合多学科文献, 探讨其系统发育关系、染色体变异及生态适应机制。结果表明: 沙拐枣属广泛分布于自撒哈拉至中亚的干旱区域, 其中中亚为分布与多样性中心(共记载34种), 中国作为分布东缘共发现23种, 与中亚共有种有17种, 呈现典型的环古地中海间断分布格局, 这可能与喜马拉雅隆升等地质事件相关。该属分布受水分、温度和土壤因子的共同影响, 主要集中于年降水量低于200 mm的干旱区, 物种间水分利用策略差异显著, 低温与季节性温度变化限制其向北扩散, 土壤偏好低盐、强碱性及沙壤类型。通过生理调节与化学计量等多层次策略适应干旱环境, 并表现出明显的生态位分化。依据传统形态分类可将其划分为4个组, 但分子系统学研究表明其组间存在交叉与嵌入, 传统分类体系亟待修订。果实形态变异显著, 基翅组可能为杂交起源, 表现为果实偏大。细胞遗传学分析显示染色体以二倍体和四倍体为主, 二倍体多分布于环境稳定区域, 而多倍体更常见于生境异质性较高的地区。系统发育分析支持该属为单系群, 但种间关系复杂, 存在高遗传分化、有限基因流及非单系起源等现象, 干旱加剧可能进一步促进了种系分化。沙拐枣属作为中亚干旱区关键类群, 具有丰富的物种多样性及快速演化潜力。今后需整合基因组学与生态学等多学科方法, 深化对其物种形成与适应机制的认识, 并推进以种质保存与生态修复为核心的综合保护策略, 以实现该属及其生态功能的长期可持续存续。
冯缨, 宋凤, 金光照, 葛学军 (2025) 中亚荒漠区沙拐枣属的分布格局与物种多样性. 生物多样性, 33, 25086. DOI: 10.17520/biods.2025086.
Ying Feng, Feng Song, Guangzhao Jin, Komiljon Tojibaev, Xuejun Ge (2025) Distribution patterns and species diversity of the genus Calligonum in the desert regions of Central Asia. Biodiversity Science, 33, 25086. DOI: 10.17520/biods.2025086.
| 组名 Section name | 种名 Species | 种的合并 Taxonomic synonymization |
|---|---|---|
| 泡果组 Sect. Calliphysa | 泡果沙拐枣 C. junceum | C. juncea, C. calliphysa, C. bykovii |
| 刺果组 Sect. Medusa | 精河沙拐枣 C. ebinuricum | 三列沙拐枣 C. trifarium |
| C. rubescens | C. rubens, C. comosum, C. alaschanicum, C. prszewalskii, 小沙拐枣 C. pumilum, C. griseum, C. pellucidum, C. turkestanicum, C. amoenum, C. intertextum, C. jimunaicum | |
| C. microcarpum | C. minimum, C. elatum | |
| C. litwinowii | 戈壁沙拐枣 C. gobicum, 蒙古沙拐枣 C. mongolicum, C. koslovii, 河西沙拐枣 C. potaninii, 甘肃沙拐枣 C. chinense, 柴达木沙拐枣 C. zaidamense, 塔里木沙拐枣 C. roborowskii, C. ferganense, 库尔勒沙拐枣 C. korlaense, 英吉沙沙拐枣 C. yengisaricum | |
| 头状沙拐枣 C. caput-medusae | C. cancellatum, 密刺沙拐枣 C. densum | |
| 翅果组 Sect. Pterococcus | C. tetrapterum | C. bungei, C. denticulatum, C. stenopterum, C. tripterum |
| 淡枝沙拐枣 C. leucocladum | C. aralense, C. batiola, C. gracile, C. lipsky, C. membranaceum var. nudum, C. obtusum, C. patens, C. litvinovii, C. acanthopterum var. subnudum, C. alatiforme, C. alatiforme var. aculeolatum, C. lanciculatum, C. physopterum, C. plicatum, C. rigidum var. australe, C. undulatum var. australe, C. cordipterum, C. elegans, C. integrum, C. karakalpakense, C. margelanicum, C. parvulum, C. uzunachmatense | |
| C. leucocladum subsp. persicum | C. persicum, C. quadripterum, C. golbeckii, C. gypsaceum, C. leucocladiforme, C. orthocarpum, C. roseum, C. elegans subsp. tadshikistanicum, C. alatiforme subsp. roseum, C. patens subsp. pamiroalaicum | |
| 无叶沙拐枣 C. aphyllum | C. cartilagineum, C. eugenii-korovinii, C. spinulosum, C. tenue, C. membranaceum, C. alatum, C. alatum var. dentatum, C. borszczowii, C. humile, C. rigidum, C. undulatum, C. aculeatum, C. rigidum var. aculeatum, C. commune, C. aphyllum var. commune, C. crispatum, C. aphyllum var. crispatum, C. lamellaturn, C. aphyllum var. lamellatum, C. palibinii, C. aphyllum var. androssowii, C. alatum var. involutum, C. oxiciam, C. pseudohumile, C. tortile, C. ustjurtense | |
| 红果沙拐枣 C. rubicundum | C. crispum, C. affine, C. dissectum, C. spinosissimum, C. pavlovii, C. dissectum, C. affine, C. flavidum, C. flavidum var. sectatum, C. russanovii, C. involutum, C. coriaceum, C. aequilaterale var. pyramidatum, C. babakiamim, C. connivens, C. cordiforme, C. diversiforme, C. durum, C. falcilobum, C. inaequale, C. irtyschense, C. josephii, C. kurotschkinae, C. nudatum, C. ozunraicum, C. pappii, C. parvum, C. pseudotenue, C. rubidum, C. sinuoso-aculeolatum, C. subcomplanatum | |
| Calligonum turbineum | C. flavidum var. iliense, C. cartilagineum, C. eugenii-korovinii, C. tenu, C. turbineum var. subulatum, C. aphyllum subsp. heptapotamicum | |
| 基翅组 Sect. Calligonum | Calligonum polygonoides | C. comosum, C. intertextum, C. polygonoides subsp. comosum |
| Calligonum laristanicum | C. polygonoides sub. laristanicum | |
| Calligonum setosum | C. densiforme, C. rotovii, C. acanthopterum var. setosum, C. molle, C. setosum var. majus, C. pulcherrimum, C. kzyl-kumi, C. fragile, C. nardinae, C. aciferum | |
| Calligonum acanthopterum | C. rotula, C. compactum, C. repetekense, C. rotovii | |
| Calligonum bakuense | C. petunnikowii | |
| Calligonum crispum | C. spinosissimum, C. pavlovii, C. crispum var. recticarpum |
表1 沙拐枣属植物的分类学合并(改自Сосков, 2011)
Table 1 Taxonomic merging of Calligonum species (revised from Сосков, 2011)
| 组名 Section name | 种名 Species | 种的合并 Taxonomic synonymization |
|---|---|---|
| 泡果组 Sect. Calliphysa | 泡果沙拐枣 C. junceum | C. juncea, C. calliphysa, C. bykovii |
| 刺果组 Sect. Medusa | 精河沙拐枣 C. ebinuricum | 三列沙拐枣 C. trifarium |
| C. rubescens | C. rubens, C. comosum, C. alaschanicum, C. prszewalskii, 小沙拐枣 C. pumilum, C. griseum, C. pellucidum, C. turkestanicum, C. amoenum, C. intertextum, C. jimunaicum | |
| C. microcarpum | C. minimum, C. elatum | |
| C. litwinowii | 戈壁沙拐枣 C. gobicum, 蒙古沙拐枣 C. mongolicum, C. koslovii, 河西沙拐枣 C. potaninii, 甘肃沙拐枣 C. chinense, 柴达木沙拐枣 C. zaidamense, 塔里木沙拐枣 C. roborowskii, C. ferganense, 库尔勒沙拐枣 C. korlaense, 英吉沙沙拐枣 C. yengisaricum | |
| 头状沙拐枣 C. caput-medusae | C. cancellatum, 密刺沙拐枣 C. densum | |
| 翅果组 Sect. Pterococcus | C. tetrapterum | C. bungei, C. denticulatum, C. stenopterum, C. tripterum |
| 淡枝沙拐枣 C. leucocladum | C. aralense, C. batiola, C. gracile, C. lipsky, C. membranaceum var. nudum, C. obtusum, C. patens, C. litvinovii, C. acanthopterum var. subnudum, C. alatiforme, C. alatiforme var. aculeolatum, C. lanciculatum, C. physopterum, C. plicatum, C. rigidum var. australe, C. undulatum var. australe, C. cordipterum, C. elegans, C. integrum, C. karakalpakense, C. margelanicum, C. parvulum, C. uzunachmatense | |
| C. leucocladum subsp. persicum | C. persicum, C. quadripterum, C. golbeckii, C. gypsaceum, C. leucocladiforme, C. orthocarpum, C. roseum, C. elegans subsp. tadshikistanicum, C. alatiforme subsp. roseum, C. patens subsp. pamiroalaicum | |
| 无叶沙拐枣 C. aphyllum | C. cartilagineum, C. eugenii-korovinii, C. spinulosum, C. tenue, C. membranaceum, C. alatum, C. alatum var. dentatum, C. borszczowii, C. humile, C. rigidum, C. undulatum, C. aculeatum, C. rigidum var. aculeatum, C. commune, C. aphyllum var. commune, C. crispatum, C. aphyllum var. crispatum, C. lamellaturn, C. aphyllum var. lamellatum, C. palibinii, C. aphyllum var. androssowii, C. alatum var. involutum, C. oxiciam, C. pseudohumile, C. tortile, C. ustjurtense | |
| 红果沙拐枣 C. rubicundum | C. crispum, C. affine, C. dissectum, C. spinosissimum, C. pavlovii, C. dissectum, C. affine, C. flavidum, C. flavidum var. sectatum, C. russanovii, C. involutum, C. coriaceum, C. aequilaterale var. pyramidatum, C. babakiamim, C. connivens, C. cordiforme, C. diversiforme, C. durum, C. falcilobum, C. inaequale, C. irtyschense, C. josephii, C. kurotschkinae, C. nudatum, C. ozunraicum, C. pappii, C. parvum, C. pseudotenue, C. rubidum, C. sinuoso-aculeolatum, C. subcomplanatum | |
| Calligonum turbineum | C. flavidum var. iliense, C. cartilagineum, C. eugenii-korovinii, C. tenu, C. turbineum var. subulatum, C. aphyllum subsp. heptapotamicum | |
| 基翅组 Sect. Calligonum | Calligonum polygonoides | C. comosum, C. intertextum, C. polygonoides subsp. comosum |
| Calligonum laristanicum | C. polygonoides sub. laristanicum | |
| Calligonum setosum | C. densiforme, C. rotovii, C. acanthopterum var. setosum, C. molle, C. setosum var. majus, C. pulcherrimum, C. kzyl-kumi, C. fragile, C. nardinae, C. aciferum | |
| Calligonum acanthopterum | C. rotula, C. compactum, C. repetekense, C. rotovii | |
| Calligonum bakuense | C. petunnikowii | |
| Calligonum crispum | C. spinosissimum, C. pavlovii, C. crispum var. recticarpum |
图1 中亚分布沙拐枣果实多样性。1: C. acanthopterum; 2: 无叶沙拐枣; 3: 乔木状沙拐枣; 4: 头状沙拐枣; 5: 心形沙拐枣; 6: C. coriaceum; 7: 密刺沙拐枣; 8: C. dubjanskyi; 9: C. eriopodum; 10: 泡果沙拐枣; 11: 淡枝沙拐枣; 12: C. litwinowi; 13: C. matteianum; 14: C. microcarpum; 15: C. molle; 16: C. murex; 17: C. orthotrichum; 18: C. paletzkianum; 19: C. platyacanthum; 20: C. rotula; 21: C. rubescens; 22: C. comosum; 23: C. griseum; 24: 红果沙拐枣; 25: C. santoanum; 26: 粗糙沙拐枣; 27: C. undulatum; 28: C. tetrapterum; 29: C. tortile; 30: C. triste; 31: C. macrocarpum; 32: 蒙古沙拐枣; 33: C. erinaceum; 34: C. elatum; 35: 塔里木沙拐枣。
Fig. 1 Fruit diversity of Calligonum in Central Asia. 1, C. acanthopterum; 2, C. aphyllum; 3, C. arborescens; 4, C. caput-medusae; 5, C. cordatum; 6, C. coriaceum;7, C. densum; 8, C. dubjanskyi; 9, C. eriopodum; 10, C. junceum; 11, C. leucocladum; 12, C. litwinowi; 13, C. matteianum; 14, C. microcarpum; 15, C. molle; 16, C. murex; 17, C. orthotrichum; 18, C. paletzkianum; 19, C. platyacanthum; 20, C. rotula; 21, C. rubescens; 22, C. comosum; 23, C. griseum; 24, C. rubicundum; 25, C. santoanum; 26, C. squarrosum; 27, C. undulatum; 28, C. tetrapterum; 29, C. tortile; 30, C. triste; 31, C. macrocarpum; 32, C. mongolicum; 33, C. erinaceum; 34, C. elatum; 35, C. roborowskii.
| [1] | An SQ, Wu HM, Zhang QW, Hao YG (1995) Karyotype studies on four sand-fixing shrubs including Hedysarum fruticosum. Journal of Inner Mongolia Forestry College, 42(4), 41-48. (in Chinese with English abstract) |
| [安守芹, 邬惠梅, 张庆玮, 郝玉光 (1995) 羊柴等四种沙生灌木的核型研究. 内蒙古林学院学报, 42(4), 41-48.] | |
| [2] | Aлександрова ЛА, Сосков Ю (1969) Xрошные чнсла Buбоа pоба Calligonum L. Всвязн с снстеmатнкон рода, Ботж, 54, 196-201. (in Russian) |
| [3] | Barbolini N, Woutersen A, Dupont-Nivet G, Silvestro D, Tardif D, Coster PMC, Meijer N, Chang C, Zhang HX, Wei H, Licht A, Rydin C, Koutsodendris A, Han F, Rohrmann A, Liu X, Zhang Y, Donnadieu Y, Fluteau F, Ladant J, Le-Hir G, Hoorn C (2020) Cenozoic evolution of the steppe-desert biome in Central Asia. Science Advances, 6, eabb8227. |
| [4] | Cосков ЮД (1968) Использование закона гомологических рядов НИ Вавилова в систематике на примере изучения рода Calligonum L. Ботанический журнал, 53, 470-479. (in Russian) |
| [5] | Cосков ЮД (1974) Секция Calligonum Рода Calligonum L. Новости сист. Высших раст, 12, 147-159. (in Russian) |
| [6] | Cосков ЮД (1975) Новые серии подвиды и гибриды в роде Calligonum L. Ботанический журнал, 60(8), 1162-1163. (in Russian) |
| [7] | Cосков ЮД (2011) Род Calligonum L. Жузгун (систематика, география, эволюция, интродукция). РИЦ СибНСХБ, Новосибирск. (in Russian) |
| [8] | Dhief A, Neffati M, Aschi-Smiti S (2012) Taxonomic study of the Tunisian Calligonum genus using the morphological and anatomical traits. International Journal of Biological Sciences, 1(2), 18-33. |
| [9] |
Duan HR, Zhang Q, Tian FP, Hu Y, Wang CM, Lu Y, Yuan HJ, Yang HS, Cui GX (2022) Complete chloroplast genome of Calligonum mongolicum Turcz. and comparative analysis with other Calligonum species. Journal of Applied Research on Medicinal and Aromatic Plants, 27, 100370.
DOI URL |
| [10] | Feng Y, Duan SM, Mu SY, Zhao L, Zhao XH (2012) Geographic distribution and ecology of C4 plants in Xinjiang. Arid Land Geography, 35(1), 145-153. (in Chinese with English abstract) |
| [冯缨, 段士民, 牟书勇, 赵莉, 赵兴华 (2012) 新疆荒漠地区C4植物的生态分布与区系分析. 干旱区地理, 35(1), 145-153.] | |
| [11] |
Feng Y, Pan BR, Shen GM (2010) On classification of Calligonum juochiangense and C. pumilum (Polygonaceae). Nordic Journal of Botany, 28, 661-664.
DOI URL |
| [12] | Feng Y, Wen ZB, Li Y, Li WJ (2021) Climatic factors influencing geographical replacement in the desert genus Calligonum Sect. Medusa (Polygonaceae) in Xinjiang, China. Pakistan Journal of Botany, 53, 1339-1342. |
| [13] |
Gasmi A, Triki T, Ali Benabderrahim M, Nagaz K, Guasmi F (2022) Assessing phenolic and molecular diversity of Arta (Calligonum comosum L.), a wild Tunisian desert plant. South African Journal of Botany, 151, 166-174.
DOI URL |
| [14] |
Gulnur S, Pan BR (2009) Chromosome numbers of three Calligonum L. species (Polygonaceae). Nordic Journal of Botany, 27, 284-286.
DOI URL |
| [15] | Hu SZ, Lu YT, Wu Z, Zheng D, Shen GM (1963) Desert Expedition in the Junggar Basin of Xinjiang, pp. 43-54. Science Press, Beijing. (in Chinese) |
| [胡式之, 芦云亭, 吴正, 郑度, 沈冠冕 (1963) 新疆准噶尔盆地沙漠考察, 43-54页. 科学出版社, 北京.] | |
| [16] | Huang CB, Zeng FJ, Lei JQ (2015) The ecophysiological response of Calligonum caput-medusae to different water condition in extremely arid region. Bulletin of Botanical Research, 39, 225-232. (in Chinese with English abstract) |
| [黄彩变, 曾凡江, 雷加强 (2015) 极端干旱区头状沙拐枣对水分条件变化的生理生态响应. 植物研究, 39, 225-232.] | |
| [17] | Hабиев ММ (1971) Calligonum L. кандым. В Кн. Определитель растении средиАэии. (in Russian) |
| [18] | IPBES (2019) Global Assessment Report on the Biodiversity and Ecosystem Services of the Intergovernmental Science- Policy Platform on Biodiversity and Ecosystem Services. IPBES Secretariat. Bonn, Germany. |
| [19] |
Isabel L, Daniel S, Pedro JM, José IMC, Santiago MB, Muthama M, Marcial E (2020) The evolutionary history of sedges (Cyperaceae) in Madagascar. Journal of Biogeography, 48, 917-932.
DOI URL |
| [20] |
Larridon I, Galán Díaz J, Bauters K, Escudero M (2021) What drives diversification in a pantropical plant lineage with extraordinary capacity for long-distance dispersal and colonization? Journal of Biogeography, 48, 64-77.
DOI URL |
| [21] | Linnaeus C (1753) Species Plantarum, Vol. 1. Impensis Laurentii Salvii, Holmiae. |
| [22] | Liu YX (1995) A study on origin and formation of the Chinese desert floras. Acta Phytotaxonomica Sinica, 33, 131-143. (in Chinese with English abstract) |
| [刘媖心 (1995) 试论我国沙漠地区植物区系的发生与形成. 植物分类学报, 33, 131-143.] | |
| [23] |
Luo Y, Peng QW, He M S, Zhang M X, Liu Y Y, Gong Y M, Eziz A, Li K H, Han W X (2020) N, P and K stoichiometry and resorption efficiency of nine dominant shrub species in the deserts of Xinjiang, China. Ecological Research, 35, 625-637.
DOI URL |
| [24] | Mabberley DJ (1990) The Plant Book. Cambridge University Press, Cambridge. |
| [25] | Mao ZM, Pan BR (1986) The classification and distribution of the genus Calligonum L. in China. Acta Phytotaxonomica Sinica, 24, 98-107. (in Chinese with English abstract) |
| [毛祖美, 潘伯荣 (1986) 我国沙拐枣属的分类与分布. 植物分类学报, 24, 98-107.] | |
| [26] | Maryamgul A, Gulnur S, Liu B, Yin LK, Pan BR (2012) Taxonomy of two Calligonum species inferred from morphological and molecular data. Vegetos, 25, 232-236. |
| [27] | Mусаев ИФ, Сосков ЮД (1977) О Географии и филогении представителей рода Calligonum L. Ботанический журнал, 62, 1415-1431. (in Russian) |
| [28] | Pan BR (2006) Native Calligonum plants and their ex situ conservation and utilization. China Botanic Gardens, 16(9), 78-83. (in Chinese with English abstract) |
| [潘伯荣 (2006) 国产沙拐枣属植物及其迁地保护与利用. 中国植物园, 16(9), 78-83.] | |
| [29] | Pavlov NV (1970) Flora of the USSR (Vol. 5), pp. 411-457. Academii Nauk SSSR, Moskva. |
| [30] |
Shi W, Pan BR, Gaskin JF, Kang XS (2009) Morphological variation and chromosome studies in Calligonum mongolicum and C. pumilum (Polygonaceae) suggests the presence of only one species. Nordic Journal of Botany, 27, 81-85.
DOI URL |
| [31] |
Song F, Li T, Burgess KS, Feng Y, Ge XJ (2020) Complete plastome sequencing resolves taxonomic relationships among species of Calligonum L. (Polygonaceae) in China. BMC Plant Biology, 20, 261-276.
DOI PMID |
| [32] | Tan Y, Zhang Q, Pan BR (2008) Study on physical and chemical properties of soil under Caligonum L. communities in China. Arid Land Geography, 25(6), 88-96. (in Chinese with English abstract) |
| [谭勇, 张强, 潘伯荣 (2008) 我国沙拐枣属(Calligonum L.)天然群落物种多样性与土壤因子的耦合关系. 干旱区地理, 25(6), 88-96.] | |
| [33] |
Tao Y, Zhou XB, Yin BF, Dimeyeva L, Zhang J, Zang YX, Zhang YM (2023) Combining multiple plant attributes to reveal differences in community structure in two distant deserts in Central Asia. Plants, 12, 3286.
DOI URL |
| [34] | Tavakkoli S, Osaloo SK, Maassoumi AA (2008) Morphological cladistic analysis of Calligonum and Pteropyrum (Polygonaceae) in Iran. Iranian Journal of Biotechnology, 14, 117-125. |
| [35] | Tavakkoli S, Osaloo SK, Maassoumi AA (2010) The phylogeny of Calligonum and Pteropyrum (Polygonaceae) based on nuclear ribosomal DNA ITS and chloroplast trnL-F sequences. Iranian Journal of Biotechnology, 8, 7-15. |
| [36] | Valovich EM, Soscov YD (1971) The chromosome numbers of species of the genus Calligonum L. Botanicheskii Zhurnal, 58, 554-561. |
| [37] | Wang CG, Yang G (1985) Observation of chromosome numbers and analysis of ploidy in Calligonum species in Xinjiang. Arid Zone Research, 2(1), 62-64. (in Chinese with English abstract) |
| [王常贵, 杨戈 (1985) 新疆沙拐枣属植物染色体数目的观察及其倍性分析. 干旱区研究, 2(1), 62-64.] | |
| [38] |
Wen ZB, Xu Z, Zhang HX, Feng Y (2016) Chloroplast phylogeographic patterns of Calligonum Sect. Pterococcus (Polygonaceae)in arid Northwest China. Nordic Journal of Botany, 34, 335-342.
DOI URL |
| [39] |
Wen ZB, Xu Z, Zhang HX, Meng HH, Feng Y, Shi W (2015) Species-level phylogeographical history of the endemic species Calligonum roborovskii and its close relatives in Calligonum section Medusa (Polygonaceae) in arid north-western China. Botanical Journal of the Linnean Society, 180, 542-553.
DOI URL |
| [40] | Wu ZY, Sun H, Zhou ZK, Li DZ, Peng H (2011) Floristic Geography of Seed Plants in China. Science Press, Beijing. (in Chinese) |
| [吴征镒, 孙航, 周浙昆, 李德铢, 彭华 (2011) 中国种子植物区系地理. 科学出版社, 北京.] | |
| [41] | Xu H, Han Y, Chi X, Yu J, Xia M, Han S, Niu Y, Zhang F, Chen S (2025) Integration of de novo chromosome-level genome and population resequencing of Peganum (Nitrariaceae): A case study of speciation and evolutionary trajectories in arid Central Asia. Molecular Ecology Resources, 25, e14078. |
| [42] |
Zhang HJ, Zhang X, Sun YX, Landis JB, Li LJ, Hu GW, Sun J, Tiamiyu BB, Kuang TH, Deng T, Sun H, Wang HC (2022) Plastome phylogenomics and biogeography of the subfam. Polygonoideae (Polygonaceae). Frontiers in Plant Science, 13, 893201.
DOI URL |
| [43] |
Zhang ML (2017) A review on the floristic phytogeography in arid Northwestern China and Central Asia. Biodiversity Science, 25, 147-155. (in Chinese with English abstract)
DOI |
|
[张明理 (2017) 中国西北干旱区和中亚植物区系地理研究. 生物多样性, 25, 147-155.]
DOI |
|
| [44] | Павлов НВ (1936) Род 393 Calligonum L. Флора СССР. Т. 5. Издательство Академии Наук СССР, Ленинград. (in Russian) |
| [45] | Черепанов СК (1981) Сосудистые Pастения СССР. Издательство Наука, Ленинград. (in Russian) |
| [1] | 刘振元, 周婷婷, 王伟民, 韩博平, 谢志才. 城市化对深圳地区河流大型底栖无脊椎动物群落物种多样性和功能多样性的影响机制[J]. 生物多样性, 2025, 33(9): 25135-. |
| [2] | 杨洋, 邹睿, 谯娅琴, 孟想, 涂飞云. 海南省陆生哺乳动物物种多样性[J]. 生物多样性, 2025, 33(8): 25044-. |
| [3] | 章洋, 王彦平. SLOSS争论研究进展: 分析方法、理论机制及保护实践[J]. 生物多样性, 2025, 33(7): 25081-. |
| [4] | 潘正东, 林熙戎, 薛华, 胡治颖, 郭弘艺, 张亚, 吴阿娜, 唐文乔. 上海主要内陆水体鱼类物种多样性本底及群落结构[J]. 生物多样性, 2025, 33(6): 24290-. |
| [5] | 彭文, 邓泽帅, 郑文宝, 龚凌轩, 曾玉枫, 孟昊, 陈军, 杨道德. eDNA技术在两栖动物调查中的应用: 以湖南莽山国家级自然保护区为例[J]. 生物多样性, 2025, 33(6): 24552-. |
| [6] | 张璐璐, 任昭杰, 于宁宁, 赵奉熙, 赵遵田. 甘肃省苔藓植物名录[J]. 生物多样性, 2025, 33(6): 24451-. |
| [7] | 吴晓晴, 张美惠, 葛苏婷, 李漫淑, 达良俊, 宋坤, 沈国春, 张健. 上海近自然林重建过程中木本植物物种多样性与地上生物量的时空动态: 以闵行区生态岛为例[J]. 生物多样性, 2025, 33(5): 24444-. |
| [8] | 王太, 宋福俊, 张永胜, 娄忠玉, 张艳萍, 杜岩岩. 河西走廊内陆河水系鱼类多样性及资源现状[J]. 生物多样性, 2025, 33(4): 24387-. |
| [9] | 张晶晶, 黄文彬, 陈奕廷, 杨泽鹏, 柯伟业, 彭昭杰, 魏世超, 张志伟, 胡怡思, 余文华, 周文良. 广东南澎列岛海洋生态国家级自然保护区造礁石珊瑚多样性及分布特征[J]. 生物多样性, 2025, 33(4): 24424-. |
| [10] | 尚华丹, 张楚晴, 王梅, 裴文娅, 李国宏, 王鸿斌. 中国杨树害虫物种多样性及其地理分布[J]. 生物多样性, 2025, 33(2): 24370-. |
| [11] | 吴昱萱, 王平, 胡晓生, 丁一, 彭甜恬, 植秋滢, 巴德木其其格, 李文杰, 关潇, 李俊生. 呼伦贝尔草地退化现状评估与植被特征变化[J]. 生物多样性, 2025, 33(2): 24118-. |
| [12] | 陈自宏, 张翼飞, 陈凯, 陈见影, 徐玲. 高黎贡山南段昆虫病原真菌物种多样性及影响因素[J]. 生物多样性, 2025, 33(1): 24228-. |
| [13] | 谭珂, 宁瑶, 王仁芬, 王晴, 梁丹萍, 辛子兵, 温放. 中国苦苣苔科植物名录与地理分布数据集[J]. 生物多样性, 2025, 33(1): 23275-. |
| [14] | 韩佳楠, 苏杨, 李霏, 刘君妍, 赵依林, 李琳, 赵建成, 梁红柱, 李敏. 河北省苔藓植物多样性[J]. 生物多样性, 2024, 32(9): 24096-. |
| [15] | 李东红, 郝媛媛, 甘辉林, 张航, 刘耀猛, 他富源, 胡桂馨. 祁连山北麓中段不同类型草地蝗虫种类及分布[J]. 生物多样性, 2024, 32(9): 24119-. |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||
备案号:京ICP备16067583号-7
Copyright © 2022 版权所有 《生物多样性》编辑部
地址: 北京香山南辛村20号, 邮编:100093
电话: 010-62836137, 62836665 E-mail: biodiversity@ibcas.ac.cn