尖叶匐灯藓对不同栽培基质的生长和生理响应
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国家自然科学基金(31960328)


Growth and Physiological Responses of Plagiomnium acutum to Different Cultivation Substrates
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    摘要:

    为探究不同栽培基质对尖叶匐灯藓[Plagiomnium acutum (Lindb.) T. Kop.]生长和生理指标的影响,通过实验筛选出适宜尖叶匐灯藓栽培的最优基质,为尖叶匐灯藓的繁殖栽培提供新的途径和思路。该研究以森林中常见的Ⅱ、Ⅲ、Ⅳ腐解等级的马尾松倒木(W、W、W)和常用的苔藓栽培土壤[颗粒土(SG)、通用营养土(SN)、草炭土(SC)]为栽培基质,设置6组不同基质处理,考察不同基质栽培下尖叶匐灯藓的生长长度、生长盖度、叶绿素含量、可溶性蛋白质总含量以及可溶性糖总含量,并利用Pearson相关性分析和模糊隶属函数综合评价各基质上尖叶匐灯藓总体生长状况及其影响因子。结果表明:(1)各栽培基质间的理化性质存在显著差异,倒木基质(W、W和W)的总孔隙度、持水能力以及全氮含量显著高于SG和SN基质,而SG和SN基质的容重、全磷含量和全钾含量显著高于倒木基质;SC基质除总孔隙度和持水孔隙与倒木基质有显著差异外,其他指标均较为接近。(2)6组不同栽培基质中,倒木基质(W、W、W)可以更有效提高尖叶匐灯藓配子体生长长度和生长盖度,SC基质可以提高尖叶匐灯藓叶绿素含量,提升其光合能力,SG基质栽培可以提升可溶性糖和可溶性蛋白质含量,进而增强其植物抗性;W基质上尖叶匐灯藓的隶属函数综合评价得分最高,综合生长状况最好。(3)基质的总孔隙度、持水孔隙、持水能力和全氮含量与尖叶匐灯藓的生长形态指标呈极显著正相关关系;而基质的容重、全磷含量、全钾含量与苔藓的生长形态指标呈极显著负相关关系。研究认为,倒木基质相比于土壤基质具有较大的孔隙度和持水能力,更有利于尖叶匐灯藓的生长,并以腐解Ⅳ级的马尾松倒木基质中尖叶匐灯藓综合生长发育状况最好,可以作为栽培尖叶匐灯藓最优基质;在尖叶匐灯藓的生产栽培中适当增大基质的孔隙度、持水能力和全氮含量将有利于其生长。

    Abstract:

    In order to investigate the effects of different culture substrates on the growth and physiological indexes of Plagiomnium acutum (Lindb.) T. Kop., we selected the optimal culture substrate through experimental design, to provid a new way and idea for propagation and cultivation of P.acutum. In this study, six groups of different substrate treatments were set up using the common forest decomposition grade Ⅱ, Ⅲ and Ⅳ Pinus massoniana fallen wood(W, W and W) and commonly used bryophytes cultivation soil[Granular soil (SG), Generalpurpose nutrient soil (SN), Grass charcoal soil (SC)] as cultivation substrate. The effects of different substrates on the growth length, growth cover, chlorophyll content, total soluble protein content and total soluble sugar content of P. acutum, and the overall growth condition of P. acutum were studied, and finally its influencing factors were evaluated by Pearson correlation analysis and fuzzy affiliation function. The results showed that: (1) the physicochemical properties of different cultivation substrates were significantly different. The total porosity, waterholding capacity, and total nitrogen contents of the fallen wood substrate (W, W, and W) were significantly higher than those of the granular soil (SG) and generalpurpose nutrient soil (SN), while the bulk weight, total phosphorus content, and total potassium content showed the opposite. Except for the total porosity and waterholding porosity was significantly different, the other indexes of the grass charcoal soil substrate (SC) and fallen wood substrates (W, W and W) were similar. (2) Among the six groups of substrates, the cultivation of fallen wood substrate (W, W and W) could effectively improve the growth and coverage of moss gametophyte, SC substrate could improve chlorophyll content and photosynthetic capacity of the P. acutum, SG substrate can improve soluble sugar content and soluble protein content and enhance the plant resistance. By comprehensive evaluation of membership function, W treatment had the highest comprehensive evaluation score and the best comprehensive growth condition. (3) The total porosity, waterholding pore space, waterholding capacity and total nitrogen content of the substrate were highly significantly and positively correlated with the growth morphological indexes of the moss. The capacitance, total phosphorus content and total potassium content of the substrate were significantly and negatively correlated with the growth morphologic indexes of the moss. Compared with soil substrate, the fallen wood substrate had greater porosity and water holding capacity, which is beneficial to the growth of P. acutum. The comprehensive growth and development of P. acutum was the best in the decomposition grade Ⅳ P. massoniana fallen wood (W), which could be used as the optimal substrate for cultivation. Increasing the porosity, waterholding capacity and total nitrogen content of the substrate was beneficial to the growth of P. acutum.

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史秉洋,王秀荣,陈洪梅,等.尖叶匐灯藓对不同栽培基质的生长和生理响应[J].西北植物学报,2022,42(7):1208-1218

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  • 在线发布日期: 2022-08-22
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