[1]WANG H,HE S,FAN Y,et al.Light intensity is a crucial factor that regulates growth,physiological traits,antioxidant defense,and metabolite acquisition in Dendrobium denneanum[J].Physiology and Molecular Biology of Plants,2025,31(6):895-911.[2]邹佳奕,张龙.铁皮石斛ZF-HD基因家族鉴定与表达分析[J].北方园艺,2025(12):19-28.[3]LI C,ZHANG Y,WANG Y,et al.Chloroplast genome,an effective strategy for identifying hybrid species,using Dendrobium‘Black Gold’ as an example[J].BMC Plant Biology,2025,25(1):1257.[4]陈小玲,黄佳维,陈前程,等.石斛兰遗传育种和栽培技术研究进展[J].北方园艺,2025(6):130-135.[5]SAHU S K,KAUR P,VYAS M,et al.Emerging role of Dendrobium orchid plants in diabetes:Phytochemistry aspects,SAR,and therapeutic potential[J].Mini Reviews in Medicinal Chemistry,2025,25(21):1657-1684.[6]YUAN Y,LI C,QIU S,et al.Exploring the medicinal potential of Dendrobium:Uncovering the spatial distribution of flavonoids and alkaloids in 15 species of Dendrobium using MALDI-MSI[J].Scientia Horticulturae,2024,338:113738.[7]秦惠珍,邹蓉,邓丽丽,等.3种观赏性石斛的光合特性比较研究[J].广西科学院学报,2022,38(2):147-154.[8]XUE Q,YANG J,YU W,et al.The climate changes promoted the chloroplast genomic evolution of Dendrobium orchids among multiple photosynthetic pathways[J].BMC Plant Biology,2023,23(1):189.[9]WANG Y,TONG Y,CHU H,et al.Effects of different light qualities on seedling growth and chlorophyll fluorescence parameters of Dendrobium officinale[J].Biologia,2017,72(7):735-744.[10]胡秉芬,黄华梨,季元祖,等.分光光度法测定叶绿素含量的提取液的适宜浓度[J].草业科学,2018,35(8):1965-1974.[11]叶子飘,于强.光合作用光响应模型的比较[J].植物生态学报,2008,32(6):1356-1361.[12]叶子飘,于强.光合作用对胞间和大气CO2响应曲线的比较[J].生态学杂志,2009,28(11):2233-2238.[13]张晶,赵成章,李雪萍,等.嘉峪关草湖湿地芦苇净光合速率与叶面积和叶厚度的关系[J].生态学报,2018,38(17):6084-6091.[14]BANU S,YADAV P P.Chlorophyll:The ubiquitous photocatalyst of nature and its potential as an organo-photocatalyst in organic syntheses[J].Organic & Biomolecular Chemistry,2022,20(44):8584-8598.[15]欧阳子龙,徐婷,贾湘璐,等.极小种群广西青梅群落林下植物相对叶绿素含量及微生境特征[J].生命科学研究,2025,29(3):224-233.[16]何春霞,李吉跃,张燕香,等.5种绿化树种叶片比叶重、光合色素含量和δ~(13)C的开度与方位差异[J].植物生态学报,2010,34(2):134-143.[17]沈允钢,程建峰.光合作用与农业生产[J].植物生理学通讯,2010(6):513-516.[18]陈丰农,桑佳茂,姚睿,等.铁皮石斛品质影响因素快速无损检测及光谱特性分析[J].光谱学与光谱分析,2021,41(10):3276-3280.[19]徐云昌鸟,于力文,吴庆生,等.霍山石斛的光合特性研究[J].应用生态学报,1993,4(1):18-21.[20]陆雯芸,房克,边红武,等.气孔发育及其调控因素的研究进展[J].植物生理学报,2016,52(6):782-788.[21]顾骏飞,周振翔,李志康,等.水稻低叶绿素含量突变对光合作用及产量的影响[J].作物学报,2016,42(4):551-560.[22]吕朝燕,高智席,邓富梅,等.两种石斛属植物光合特性对干旱胁迫及复水的响应[J].节水灌溉,2023(2):111-120,127.[23]陈淑钦,陈清西.铁皮石斛栽培及光合特性研究进展[J].江苏农业科学,2015,43(7):262-264.[24]陈妮,彭丽辉,江海都,等.四种珍稀濒危石斛属植物光合特性及叶片显微结构的比较研究[J].广西植物,2025,45(1):1-14.[25]陈根云,俞冠路,陈悦,等.光合作用对光和二氧化碳响应的观测方法探讨[J].植物生理与分子生物学学报,2006(6):691-696.[26]YAN H.Responses of leaf ion content,photosynthesis and chlorophyll fluorescence to nacl stress in soybean[J].Russian Journal of Plant Physiology,2022,69(6):131.[27]朱华,罗静,张淼,等.光照对铁皮石斛影响的研究进展[J].壮瑶药研究,2023(3):65-68.[28]郑治洪,邵先强,邱志龙,等.不同施肥处理对金钗石斛光合特性的影响[J].湖北农业科学,2022,61(24):90-94.[29]朱巧玲,冷佳奕,叶庆生.束花石斛和黄花石斛的光合特性研究[J].华南师范大学学报(自然科学版),2013,45(2):97-103.[30]朱巧玲,冷佳奕,叶庆生.黑毛石斛和长距石斛的光合特性[J].植物学报,2013,48(2):151-159.[31]邓嘉懿,高晓钰,单航,等.洱海沉水植物的光合特性与分布水深的关系[J].水生生物学报,2023,47(7):1157-1167.