
金线莲和白及组培苗菌根真菌接种效应研究
The Inoculation Effect of Mycorrhizal Fungi in Tissue Culture Seedlings of Anoectochilus roxburghii (Wall.) Lindl. and Bletilla striata (Thunb. ex A. Murray) Rchb. f.
为了进一步探究金线莲和白及组培苗与接种菌株在菌根共生培养体系中的相互关系,以金线莲和白及无菌组培苗为材料,接种菌株建立组培苗菌根共生培养体系,通过测定各生长阶段组培苗的形态指标和生理指标,来比较组培苗对不同菌株的反应。金线莲A2菌株处理对组培苗地上和地下部分生长均有明显促进作用,其平均鲜重增长率分别比A1、CK1处理高20.9%、19.1%;A2处理的叶片数、株高、根增长率、根数、根长分别比CK1处理高21.7%、2.7 cm、16.9%、48.3%、65.8%。白及B1、B2菌株处理对组培苗地上和地下部分生长均有促进作用,B1、B2处理生长指标都高于对照,B1处理的鲜重增长率、叶片数、株高、根增长率、根数、根长分别比CK2处理高3.9%、41.8%、3.7 cm、25.8%、33.0%、52.6%。综合来看,除了A1菌株在前期有一定的负面影响,其他菌株在整个共生培养期间对组培苗生长均有积极的促进作用。
This study was conducted to further explore the mutual relationship between tissue-cultured seedlings of Anoectochilus roxburghii (Wall.) Lindl. and Bletilla striata (Thunb. ex A. Murray) Rchb. f. and inoculated strains in the arbuscular mycorrhizal cultivation system. Tissue-cultured seedlings of Anoectochilus roxburghii (Wall.) Lindl. and Bletilla striata (Thunb. ex A. Murray) Rchb. f. were used as materials, and the arbuscular mycorrhizal cultivation system was established by inoculating strains. The morphological and physiological indicators of the tissue-cultured seedlings at different growth stages were measured to compare their responses to different strains. The A2 strain of Anoectochilus roxburghii (Wall.) Lindl. had a significant promoting effect on the aboveground and underground growth of tissue-cultured seedlings. The average fresh weight growth rate of A2 treatment was 20.9% and 19.1% higher than that of A1 and CK1 treatments. The number of leaves, plant height, root growth rate, number of roots, and root length of A2 treatment were 21.7%, 2.7 cm, 16.9%, 48.3%, and 65.8% higher than those of CK1 treatment, respectively. The B1 and B2 strains of Bletilla striata (Thunb. ex A. Murray) Rchb. f. promoted the aboveground and underground growth of tissue-cultured seedlings. The growth indicators of B1 and B2 treatments were higher than the control. The fresh weight growth rate, number of leaves, plant height, root growth rate, number of roots, and root length of B1 treatment were 3.9%, 41.8%, 3.7 cm, 25.8%, 33.0%, and 52.6% higher than those of CK2 treatment, respectively. In conclusion, except for the negative impact of the A1 strain in the early stage, other strains had a positive promoting effect on the growth of tissue-cultured seedlings throughout the symbiotic cultivation period.
金线莲 / 白及 / 组培苗 / 菌根真菌 / 接种 / 共生培养 / 叶绿素含量 / 形态指标 {{custom_keyword}} /
Anoectochilus roxburghii (Wall.) Lindl. / Bletilla striata (Thunb. ex A. Murray) Rchb. f. / tissue-cultured seedlings / mycorrhizal fungi / inoculation / symbiotic culture / chlorophyll content / morphological index {{custom_keyword}} /
[1] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[2] |
徐锦堂, 郭顺星. 供给天麻种子萌发营养的真菌—紫萁小菇[J]. 真菌学报, 1989, 8(3):221-226.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[3] |
郭顺星, 徐锦堂. 白友种子萌发和幼苗生长与紫其小菇等4种真菌的关系[J]. 中国医学科学院学报, 1992, 14(1):51-54,79-80.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[4] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[5] |
赵玥. 两种金线莲生长及与内生真菌共生培养的研究[D]. 北京: 北京协和医学院, 2009.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[6] |
李景蕻, 张丽华. 药用兰科植物组培苗菌根化技术在种苗生产中的应用[J]. 种子, 2015, 34(8):133-134.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[7] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[8] |
袁宁. 白芨组织培养技术体系研究[D]. 成都: 西南交通大学, 2008.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[9] |
李景蕻, 张丽华, 钟静, 等. 不同菌根真菌对铁皮石斛穴盘苗生长及生根的影响[J]. 华北农学报, 2022, 37:172-177.
为了探讨菌根真菌与铁皮石斛穴盘苗之间的共生关系,旨在筛选出影响穴盘苗生长的最佳优良共生真菌菌株。以几种不同的兰科菌根真菌和铁皮石斛穴盘苗为试验材料,进行接菌共生培养研究,比较不同菌株对接种共生穴盘苗的影响,结果表明:穴盘苗PS1、PS2、PS3处理的平均鲜质量增长率分别比对照高15.7,7.4,19.7百分点,与对照相比差异均达极显著水平(P<0.01);穴盘苗PS1、PS2、PS3 、PS5处理的根增长率分别比对照高44.4,43.6,30.2,33.4百分点,与对照相比较差异达极显著水平(P<0.01)。同属于瘤菌根菌属的D4菌株在整个培养过程中一直表现出抑制作用,D5菌株培养后期的促进作用比前期更明显。从叶绿素含量变化情况也可看出,除了D4以外其他菌株可明显增加叶绿素的形成,促进穴盘苗生长。筛选出的最佳优良菌株为D1菌株、D2菌株(未知)和D3菌株,它们对铁皮石斛穴盘苗生长有明显促进作用,即将应用于后续铁皮石斛组培苗的移栽驯化。
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[10] |
殷丽青, 孙翊, 周音, 等. 添加物和植物生长调节剂对金线莲和白及离体快速繁殖的影响[J]. 上海交通大学学报(农业科学版), 2014, 4(32):8-13.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[11] |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[12] |
曹春林. 中药鉴定学[M.]上海: 上海科学技术出版社, 1986:139.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[13] |
曾宋君, 黄向力, 陈之林, 等. 白及的无菌播种和组织培养研究[J]. 中药材, 2004(9):625-627.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[14] |
刘光斌, 黄忠, 黄长于, 等. 天然植物白友胶的功能及在化妆品中的应用[J]. 日用化学品科学, 2005, 28(8):22-24.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[15] |
郭顺星, 房慧勇, 陈晓梅, 等. 促进兰科植物种子萌发的一株真菌[P]. 中国, CN 101 91 4456 A. 2010-12-15.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[16] |
王雅俊, 孟志霞, 于雪梅, 等. 促进福建金线莲生长发育的内生真菌筛选研究[J]. 中国药学杂志, 2009, 44(13):976-979.
目的筛选促进金线莲生长发育的优良内生真菌。方法在离体培养条件下,将金线莲试管苗与4株分离自兰科植物的内生真菌在5种供试培养基上共培养,根据菌苗共生特点筛选适宜的双重培养基。在此基础上,将17株分离自兰科植物的真菌与金线莲苗共生培养,以鲜重和增高为指标,筛选可促进金线莲生长发育的内生真菌。结果17株真菌中有1株显著促进金线莲苗增高(PP<0.01),最高促增高可达对照的2.04倍,其中2株为金线莲有益真菌。结论双重培养基和金线莲有益真菌的筛选为研究内生真菌和金线莲的共生机制及人工栽培金线莲新方法奠定了基础。
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[17] |
张燕, 黎斌, 李汝娟, 等. 白芨种子的无菌萌发过程观察和组培快繁研究[J]. 北方园艺, 2013(3):158-160.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[18] |
于雪梅, 郭顺星. 金线莲与内生真菌共生培养体系的建立[J]. 中国中药杂志, 2000, 25(2):81.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[19] |
郭顺星, 曹文芩, 高微微. 铁皮石斛及金钗石斛菌根真菌的分离及其生物活性测定[J]. 中国中药杂志, 2000, 25(6):338-340.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[20] |
柯海丽, 宋希强, 谭志琼, 等. 野生五唇兰根部内生真菌多样性研究[J]. 生物多样性, 2007, 15(5):456-462.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[21] |
常美花, 金亚征, 王莉. 金线莲和白及快繁技术体系研究[J]. 中草药, 2012, 7(43):1412-1417.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[22] |
付传明, 赵志国, 黄宁珍, 等. 金线莲和白及无菌播种产业化繁育技术研究[J]. 广西植物, 2012, 32(2):238-242.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[23] |
李景蕻, 张丽华, 邓樱花, 等. 铁皮石斛组培苗菌根真菌接种效应[J]. 基因组学与应用生物学, 2018, 5:1-6.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[24] |
李景蕻, 张丽华, 张宇. 铁皮石斛不同授粉方式对蒴果发育及种子萌发的影响[J]. 基因组学与应用生物学, 2018, 37(1):413-417.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[25] |
李合生. 植物生理生化实验原理和技术[M]. 北京: 高等教育出版社, 2000:134-137.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[26] |
武丽娜, 朱秀敏, 李冰, 等. 光合细菌在基质培香菜上的应用效果[J]. 北方园艺, 2014(11):30-32.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[27] |
李泊玉. 铅胁迫对红花风铃木幼苗生长和生理的影响[D]. 南宁: 广西大学, 2019.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[28] |
王世佳. 粉垄耕作下蔗地赤红壤结构与养分特征研究[D]. 南宁: 广西大学, 2020.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[29] |
韦艳梅, 周雅琴, 李力, 等. 白及内生真菌多样性研究[J]. 广西植物, 2016, 36(7):832-836,831.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[30] |
陈青青, 聂倩文, 江健伟, 等. 白芨内生真菌的分离鉴定及其群落结构分析[J]. 长江大学学报(自然科学版), 2020, 17(6):75-81,8.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
[31] |
周康, 吴文碟, 宋希强, 等. 金线莲促生内生真菌的筛选与鉴定[J]. 热带生物学报, 2018, 9(4):440-444.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
{{custom_ref.label}} |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
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