Anatomical, Morphological, and Physiological Features of Cyanolichen Peltigera praetextata (Florke ex Sommerf.) Zopf Thalli in Different Ontogenetic States

V. Androsova, Pavel A. Virolainen
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Abstract

The goal of this study is to describe the cyanolichen Peltigera praetextata ontogenesis stages and reveal some of their morphological, anatomical, and physiological features. This paper analyzes 300 P. praetextata thalli taken in 2019 from aspen trunks in the aspen-spruce communities of the middle taiga territory in Kivach Nature Reserve (62°15'15.9'N, 33°58'746.1"E) from permanent sample plots. The authors determined the ontogenetic state of each thallus based on morphology and anatomy data using the concept of a discrete approach to the description of ontogenesis (Suetina, 2001). They registered the following thalli parameters: length, width, presence and length of rhizines, presence and width of veins, presence of phyllidia and apothecia, number of notches and lobes, shape, edge curl, and surface tomentum. They studied the anatomical parameters (thallus total thickness, tomentum thickness, cortical layer, algal layer and medulla thickness, algae cell size) using sections of thalli samples in all ontogenetic states from the apical, medial, and basal parts in triplicate. They measured the content of photosynthetic pigments spectrophotometrically with preparation of alcoholic extracts. To assess the parameters of the water regime of thalli having different ontogenetic states, the authors calculated a specific thallus mass (STM) and water holding capacity (WHC). They made a statistical data measurement using one-way ANOVA and regression analysis. They also calculated the coefficient of variation (CV) to assess the variability of the features under study. The study identified four periods and 12 ontogenetic states of P. praetextata: latent (sp), pre-generative (pr, prt, j, iml, im2, im3, vl, v2), generative (g), and post-generative (ss, s). The values of the morphological and anatomical parameters of the thalli increase during their development. The early ontogenesis stages demonstrate the highest variability of the parameters. The highest variability of the thallus structures under study within the ontogenetic states is registered for the rhizine length, vein width, and medulla thickness, while the highest constancy is typical of the share of the algal layer in the thallus that varies within a very limited range (22-32%) and reaches the minimum values in the post-generative period. The mycobiont increases in volume through a medulla growth. The physiological characteristics of the P. praetextata thalli differ in various ontogenetic states, while the generative thalli characterized by a normal ratio of photosynthetic pigments, maximum water saturation, and maximum water holding capacity have the maximum values. Thus, at early development stages, the thalli demonstrate a lower ability to retain moisture and may represent a critical stage in a lichen life cycle. On the one hand, the revealed wide variability of the morphological and anatomical parameters of young thalli testifies to their high adaptability, but the physiological parameters of water saturation indicate the vulnerability of these stages. These parameters confirm the validity of the ontogenetic stages identified. The paper contains 5 Figures, 5 Tables and 55 References. The Authors declare no conflict of interest.
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紫藻的解剖、形态和生理特征(Florke ex Sommerf.)不同个体发生状态的Zopf菌体
本研究的目的是描述藻青藻(Peltigera praetextata)的个体发生阶段,揭示它们的一些形态、解剖和生理特征。本文分析了2019年在Kivach自然保护区(62°15'15.9'N, 33°58'746.1 ' E)中部针叶林地区白杨云杉群落永久样地采集的300个praetextata体块。作者利用个体发生描述的离散方法概念,根据形态学和解剖学数据确定了每个菌体的个体发生状态(Suetina, 2001)。他们记录了以下菌体参数:长度、宽度、根茎的存在和长度、静脉的存在和宽度、phyllia和apothecia的存在、缺口和裂片的数量、形状、边缘卷曲度和表面绒毛。他们研究了解剖参数(菌体总厚度,绒毛厚度,皮质层,藻层和髓质厚度,藻类细胞大小),使用了从顶端,中部和基部的所有个体发育状态的菌体样本切片,一式三份。他们用酒精提取物的制备,分光光度法测定了光合色素的含量。为了评估不同个体发育状态下菌体的水分状况参数,作者计算了特定菌体质量(STM)和持水能力(WHC)。采用单因素方差分析和回归分析对数据进行统计测量。他们还计算了变异系数(CV)来评估所研究特征的可变性。研究结果表明,原叶拟菌体发育分为潜伏期(sp)、生前期(pr、prt、j、iml、im2、im3、vl、v2)、生后期(g)和生后期(ss、s) 4个阶段和12个个体发生状态。个体发生的早期阶段表现出最高的参数变异性。在个体发育状态下,所研究的菌体结构的最大变异性是根茎长度、静脉宽度和髓质厚度,而最高的恒定性是典型的藻层在菌体中所占的份额,其变化范围非常有限(22-32%),在生成后期达到最小值。菌体通过髓质生长而体积增加。在不同的个体发育状态下,预草体的生理特征存在差异,以正常光合色素比、最大水饱和度和最大持水量为特征的生殖型体的生理特征值最大。因此,在早期发育阶段,菌体保持水分的能力较低,可能是地衣生命周期的关键阶段。一方面,幼体形态和解剖参数的广泛变异证明了它们的高适应性,但生理参数的含水饱和度表明了这些阶段的脆弱性。这些参数证实了所确定的个体发生阶段的有效性。全文共5图5表55参考文献。作者声明无利益冲突。
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