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Effects of Different Isolation Methods on Mycelial Growth, Fruiting Phenology and Yield of Morchella sextelata
LIYinshuang, LIXiaohua, ZHAOYouliang, CHENZhen, WANGChunguang, SUYinsen, LUOFafu, LIYirong
Chin Agric Sci Bull ›› 2026, Vol. 42 ›› Issue (11) : 57-64.
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Abbreviation (ISO4): Chin Agric Sci Bull
Editor in chief: Yulong YIN
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Effects of Different Isolation Methods on Mycelial Growth, Fruiting Phenology and Yield of Morchella sextelata
The isolation method of Morchella strains directly affects the genetic stability, fruiting uniformity and yield of the strains. At present, the comparative study of different isolation methods of Morchella sextelata is still weak. In order to compare the effects of tissue isolation and multi-spore isolation on the cultivation performance of Morchella sextelata, and to evaluate the application potential of the two methods in strain breeding of morel, using the same fruiting body of Morchella sextelata as the test material, four strains were obtained by tissue isolation and multi-spore isolation, and their mycelial growth, bag-full time, fruiting phenology and yield were systematically determined. The results showed that all four strains contained both MAT1-1-1 and MAT1-2-1 mating-type genes, and the mycelial growth rate on PDA medium ranged from 14.1 to 15.2 mm/d without significant difference. The bag-full time of multi-spore isolated strain MS2 (26.5 d) was significantly shorter than that of tissue isolated strains TS1 (34.2 d) and TS2 (35.5 d). The interval from sclerotium to primordium of multi-spore isolated strains was shortened by about 2.5 d, and the first harvest time (73.3-74.0 d) was significantly earlier than that of tissue isolated strains (75.0-76.0 d). MS2 had the highest yield (0.45 kg/m2), which was significantly higher than that of TS1 and TS2, while MS1 had the lowest yield (0.35 kg/m2), showing significant differences among strains. Multi-spore isolation could produce greater phenotypic variation and screen out high-yield strains, but required strict selection. Tissue isolation had stable traits but low reproductive efficiency. Strain MS2 had excellent comprehensive characteristics and production application value. The results of this study can provide a scientific basis for the efficient strain isolation, breeding and stable cultivation of Morchella sextelata.
Morchella sextelata / tissue isolation / multi-spore isolation / mating-type genes / yield
| [1] |
赵永昌, 柴红梅, 刘萍, 等. 羊肚菌栽培理论、技术进展及未来热点[J]. 食药用菌, 2025, 33(2):73-85.
|
| [2] |
周杨洁, 明建, 饶哲楠, 等. 羊肚菌多糖免疫调节的分子机制与构效关系研究进展[J]. 食品与机械, 2025, 41(12):171-179.
|
| [3] |
|
| [4] |
Morchella is a kind of important edible and medicinal fungi, which is rich in polysaccharides, enzymes, fatty acids, amino acids and other active components. Extracellular vesicles (EVs) have a typical membrane structure, and the vesicles contain some specific lipids, miRNAs and proteins, and their can deliver the contents to different cells to change their functions. The present study investigated whether Morchella produce extracellular vesicles and its anti-inflammatory effect on lipopolysaccharide (LPS)-induced RAW246.7 macrophages. The experimental results showed that Morchella produced extracellular vesicles and significantly reduced the production of nitric oxide (NO) and reactive oxygen species (ROS) in a model of LPS-induced inflammation. In addition, the expression of inflammatory factor-related genes such as inducible nitric oxide synthase (iNOS), tumor necrosis factor-α (TNF-α), interleukin-6 (IL-6) and cyclooxygenase-2 (COX-2) showed dose-dependent inhibition. Morchella extracellular vesicles also can inhibit the inflammatory response induced by LPS by inhibiting the production of ROS and reducing the phosphorylation levels of the p38 MAPK signaling pathway. These results indicate that the Morchella extracellular vesicles can be used as a potential anti-inflammatory substance in the treatment of inflammatory diseases.
|
| [5] |
李银双, 李晓花, 陈珍, 等. 永兴地区羊肚菌分布资源调查与分子鉴定[J]. 中国农学通报, 2025, 41(18):158-164.
为准确掌握楚雄州永兴乡境内分布的野生羊肚菌物种和发生规律,推动当地野生羊肚菌资源的长期保护利用与栽培驯化研究,对永兴地区的那软、小庄、观音寺、灰坝、拉姑5个地点进行野生羊肚菌资源调查,结合子实体形态特征,采用分子鉴定技术对选取的5份样本进行了分子鉴定与命名。研究结果表明,永兴地区野生羊肚菌的出菇时间为9月底至10月下旬,多发生在降雨后的1~3 d,生长呈弱碱性(pH 7.13~8.20),生长环境以栎树、桦树为主的阔叶混交林为主,仅基于ITS构建系统发育树表明5份羊肚菌均为黄色羊肚菌类群,但不能将羊肚菌属内所有物种准确区分开,采用多基因谱系一致性发育物种识别法基于ITS+LSU+EF1-α+RPB1+RPB2联合构建系统发育树表明永兴地区分布的羊肚菌为Morchella sp. Mes-15和Morchella sp. Mes-19两个黄色支系物种,为首次报道。
|
| [6] |
刘伟, 何培新, 蔡英丽, 等. 羊肚菌衰老特性的测定分析[J]. 食药用菌, 2021, 29(1):44-49.
|
| [7] |
邵改革, 张瑞颖. 羊肚菌生物学和栽培技术研究进展[J]. 中国食用菌, 2025, 44(3):1-11,19.
|
| [8] |
何艳晴, 申超峰, 孙倩楠, 等. 基于继代培养的羊肚菌优良菌株筛选[J]. 食药用菌, 2026, 34(1):59-64.
|
| [9] |
朱锦福, 雷艳, 李鹏业. 粗柄羊肚菌生境及组织分离优化条件的研究[J]. 安徽农业科学, 2012, 40(24):11966-11967.
|
| [10] |
王万坤, 潘家喜, 康超, 等. 云贵地区羊肚菌栽培现状调查与分析[J]. 食药用菌, 2021, 29(6):466-469.
|
| [11] |
赵瑞华, 贺晓龙. 羊肚菌分子鉴定及功能基因研究进展[J]. 微生物学杂志, 2022, 42(1):112-117.
|
| [12] |
|
| [13] |
\n True morels (\n Morchella\n spp., Morchellaceae, Ascomycota) are widely regarded as a highly prized delicacy and are of great economic and scientific value. Recently, the rapid development of cultivation technology and expansion of areas for artificial morel cultivation have propelled morel research into a hot topic.\n
|
| [14] |
Morels are one of the most highly prized edible and medicinal mushrooms worldwide. Therefore, historically, there has been a large international interest in their cultivation. Numerous ecological, physiological, genetic, taxonomic, and mycochemical studies have been previously developed. At the beginning of this century, China finally achieved artificial cultivation and started a high-scale commercial development in 2012. Due to its international interest, its cultivation scale and area expanded rapidly in this country. However, along with the massive industrial scale, a number of challenges, including the maintenance of steady economic profits, arise. In order to contribute to the solution of these challenges, formal research studying selection, species recognition, strain aging, mating type structure, life cycle, nutrient metabolism, growth and development, and multi-omics has recently been boosted. This paper focuses on discussing current morel cultivation technologies, the industrial status of cultivation in China, and the relevance of basic biological research, including, e.g., the study of strain characteristics, species breeding, mating type structure, and microbial interactions. The main challenges related to the morel cultivation industry on a large scale are also analyzed. It is expected that this review will promote a steady global development of the morel industry based on permanent and robust basic scientific knowledge.
|
| [15] |
宋彩云, 刘萍, 李仔密, 等. 梯棱羊肚菌杂交子代单孢菌株在新品种选育中的应用[J]. 食用菌学报, 2024, 31(2):42-49.
|
| [16] |
|
| [17] |
Morchella species are well known world-round as popular and prized edible fungi due to their unique culinary flavor. Recently, several species have been successfully cultivated in China. However, their reproductive modes are still unknown, and their basic biology needs to be elucidated. Here, we use the morel genome information to investigate mating systems and life cycles of fourteen black morel species. Mating type-specific primers were developed to screen and genotype ascospores, hymenia and stipes from 223 ascocarps of the 14 species from Asia and Europe. Our data indicated that they are all heterothallic and their life cycles are predominantly haploid, but sterile haploid fruiting also exists. Ascospores in all species are mostly haploid, homokaryotic, and multinuclear, whereas aborted ascospores without any nuclei were also detected. Interestingly, we monitored divergent spatial distribution of both mating types in natural morel populations and cultivated sites, where the fertile tissue of fruiting bodies usually harbored both mating types, whereas sterile tissue of wild morels constantly had one MAT allele, while the sterile tissue of cultivated strains always exhibited both MAT alleles. Furthermore, MAT1-1-1 was detected significantly more commonly than MAT1-2-1 in natural populations, which strongly suggested a competitive advantage for MAT1-1 strains.
|
| [18] |
苗人云, 刘天海, 罗建华, 等. 羊肚菌营养袋制作原料的化学成分分析及配方优化[J]. 食药用菌, 2020, 28(2):112-118.
|
| [19] |
钟娟, 初奕杉, 王晓艳, 等. 不同方法分离的梯棱羊肚菌菌种的交配型检测[J]. 中国食用菌, 2022, 41(6):19-23.
|
| [20] |
曾婷婷. 羊肚菌菌种的交配型研究[D]. 长沙: 湖南师范大学, 2019.
|
| [21] |
王如江, 孙文化, 方若天, 等. 可栽培黄色羊肚菌Mes-21组织分离物交配型基因缺失现象分析[J]. 中国瓜菜, 2026, 39(3):27-33.
|
| [22] |
王青, 李闯, 汪国莲. 六妹羊肚菌多孢分离和组织分离菌株栽培出菇试验[J]. 中国食用菌, 2023, 42(4):80-84.
|
| [23] |
柴红梅, 刘萍, 马渊浩, 等. 梯棱羊肚菌营养亲和调控行为[J]. 菌物学报, 2024, 43(12):116-127.
|
| [24] |
刘萍, 马渊浩, 赵永昌, 等. 羊肚菌单孢菌株的性亲和与营养体亲和特性[J]. 食用菌学报, 2021, 28(1):40-47.
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