Immunoreactivity of flexible and inflexible scales in different lizards indicates that the mature beta-layer contains different corneous proteins [0.03%]
不同蜥蜴中灵活和不灵活的鳞片的免疫反应活性表明成熟的β层含有不同的角蛋白
Lorenzo Alibardi
Lorenzo Alibardi
We have analyzed by immunohistochemical methods the Oberhautchen-beta layer, here abbreviated as beta-layer, of lizards with hard scales and lizards with softer scales. Different antibodies for detecting Corneous Beta Proteins (CBPs) have b...
Yuting Niu,Shuang He,Lu Xing et al.
Yuting Niu et al.
To investigate the cadmium (Cd) uptake mechanism in the roots of Coptis chinensis Franch., we utilized non-invasive micro-test technology (NMT) to analyze Cd2+ and H+ fluxes, alongside ICP-MS to assess Cd content and fluxes under various in...
Seaweed-based PPO inhibitors as a new frontier in biological weed control for sorghum cultivation: from ocean to field [0.03%]
海藻基PPO抑制剂作为高粱种植生物除草控制的新领域:从海洋到田间
Renuka Suresh,Ramanathan Karuppasamy
Renuka Suresh
Weed management, particularly of broad-leaf species, poses a significant challenge in sorghum production, potentially causing up to 70.9% yield loss. Conventionally, herbicides are the site-specific weed inhibitors often used to suppress th...
Unveiling two types of reproductive nectaries in Pseudobombax argentinum (Malvaceae-Bombacoideae) [0.03%]
揭示Pseudobombax argentinum ( Malvaceae - Bombacoideae )的两种生殖蜜腺类型
Lucía M Zini,Elsa C Lattar
Lucía M Zini
Nectaries in Malvaceae are in general trichomatous glandular structures usually aggregated in cushions. However, little is known on the diversity of nectaries in the Bombacoideae subfamily. Pseudobombax argentinum presents two contrasting t...
Trunk muscle differentiation-a lesson from the Chinese fire-bellied newt (Hypselotriton orientalis) [0.03%]
躯干肌肉的分化——来自东方火腹蜥(Hypselotriton orientalis)的一项研究
Magda Dubińska-Magiera,Marta Julianna Brania,Krzysztof Kolenda et al.
Magda Dubińska-Magiera et al.
Extant amphibians are divided into three distinct lineages: Gymnophiona, Urodela, and Anura. Owing to their diversity, they are widely used in research concerning, among others, tissue regeneration. Here, we describe larval myotomal myogene...
Double defense: chemical and mechanical protection of the vegetative apices of Begonia curtii (Begoniaceae)-an endemic species of the Atlantic forest [0.03%]
双重防御:Begonia curtii(秋海棠科)的营养顶点的化学和机械保护-大西洋森林的特有种植物
Marco Aurélio Batista,Dayana Maria Teodoro Francino,Valdnéa Casagrande Dalvi
Marco Aurélio Batista
The stem apical meristems (SAM) are essential for the primary growth of plants and possess protective mechanisms to safeguard their fragile structures, including stipules and chemical secretions such as mucilage. This study examines Begonia...
Structural characteristics of leaf trichomes and epidermis in species from three sections of the genus Aristolochia [0.03%]
马兜铃属三个组植物叶表皮毛及表皮的结构特征
O V Nakonechnaya,Yu A Khrolenko,A V Kalachev et al.
O V Nakonechnaya et al.
The structure of leaf epidermis in species from three sections (Diplolobus, Gymnolobus, and Siphisia) of the genus Aristolochia has been examined by light and scanning microscopy methods. As the results show, the number of the stomata and t...
An immunohistochemical approach to cell wall polysaccharide specialization in maritime pine (Pinus pinaster) needles [0.03%]
松树(石松属)针叶中细胞壁多糖分化的免疫组织化学方法
Santiago Michavila,Antonio Encina,Alfonso G De la Rubia et al.
Santiago Michavila et al.
Pine needles are specialized leaves bearing distinctive anatomical features whose function is to minimize water loss. At the molecular level, needle specialization is expected to lead to heterogeneity in cell wall (CW) composition. By immun...
Morphological development of the endosperm epidermal cells in waxy wheat cultivars [0.03%]
蜡质小麦品种胚乳表皮细胞的形态发育
Juan Liu,Yuangang Zhu,Xinyue Liu et al.
Juan Liu et al.
Endosperm epidermal cells (EECs) accumulate large quantities of nutrients; they also play key roles in facilitating solute transport. Comprehensive knowledge about the dynamic development of EECs is needed to understand the relationship bet...
Peter Nick
Peter Nick
Editorial
Protoplasma. 2025 Feb 13. DOI:10.1007/s00709-025-02043-3 2025