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菌根异养对獐牙菜(龙胆科)生长的影响,表现在开花枝的大小变化、形态和 C 含量上。

Impact of mycoheterotrophy on the growth of Gentiana zollingeri (Gentianaceae), as suggested by size variation, morphology, and C abundance of flowering shoots.

机构信息

Faculty of Education, Chiba University, 1-33, Yayoi-cho, Inage-ku, Chiba, 263-8522, Japan.

Graduate School of Horticulture, Chiba University, 648, Matsudo, Chiba, 271-8510, Japan.

出版信息

J Plant Res. 2023 Nov;136(6):853-863. doi: 10.1007/s10265-023-01496-y. Epub 2023 Sep 15.

Abstract

Gentiana zollingeri is an annual photosynthetic plant that employs a mycoheterotrophic growth strategy during its underground seedling stage (initial mycoheterotrophy). Notably, the morphological characteristics of its flowering shoots, such as shoot size, leaf size, and leaf color, are highly variable, and it was hypothesized that these variations may be linked to nutritional mode. The morphological characteristics of G. zollingeri individuals were thus investigated alongside environmental factors, C abundance, and diversity of colonizing arbuscular mycorrhizal (AM) fungi. The majority of G. zollingeri flowering individuals were found to exhibit a high affinity for the specific AM fungi that exclusively colonize roots of the mycoheterotrophic seedlings, while other phylogenetically diverse AM fungi could also be detected. The leaves to shoot dry weight ratio (leaf ratio) was negatively correlated with the canopy openness in the habitat, suggesting that leaf development is impeded in sunny conditions. Furthermore, the shoot weight of G. zollingeri was positively correlated with leaf C abundance. Given that C enrichment can provide indirect evidence of mycoheterotrophy in AM plants, the results suggest that the utilization of carbon obtained through mycoheterotrophy, at least during the underground seedling stage, is crucial for G. zollingeri.

摘要

獐牙菜是一种一年生的光合植物,在其地下幼苗期(初始菌根异养期)采用菌根异养生长策略。值得注意的是,其开花枝条的形态特征,如枝条大小、叶片大小和叶片颜色,具有高度的可变性,因此有人假设这些变化可能与营养模式有关。因此,研究了獐牙菜个体的形态特征及其与环境因素、C 含量和定植丛枝菌根(AM)真菌多样性的关系。结果发现,大多数开花的獐牙菜个体对专门定植于菌根异养幼苗根系的特定 AM 真菌具有高亲和力,而其他系统发育多样化的 AM 真菌也可以被检测到。叶干重与叶面积比(叶比)与生境中的树冠开度呈负相关,表明在阳光充足的条件下叶片发育受阻。此外,獐牙菜的枝条重量与叶片 C 含量呈正相关。鉴于 C 富集可以为 AM 植物的菌根异养提供间接证据,结果表明,至少在地下幼苗期,通过菌根异养获得的碳的利用对獐牙菜至关重要。

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