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集液器、花外蜜腺和树脂腺保护(DC.)恩格勒(金莲木科)的芽和幼叶。

Colleters, Extrafloral Nectaries, and Resin Glands Protect Buds and Young Leaves of (DC.) Engl. (Ochnaceae).

作者信息

Paiva Elder A S, Couy-Melo Gabriel A, Ballego-Campos Igor

机构信息

Departamento de Botânica, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Belo Horizonte 31270-901, MG, Brazil.

出版信息

Plants (Basel). 2021 Aug 16;10(8):1680. doi: 10.3390/plants10081680.

Abstract

Buds usually possess mechanical or chemical protection and may also have secretory structures. We discovered an intricate secretory system in (Ochnaceae) related to the protection of buds and young leaves. We studied this system, focusing on the distribution, morphology, histochemistry, and ultrastructure of glands during sprouting. Samples of buds and leaves were processed following the usual procedures for light and electron microscopy. Overlapping bud scales protect dormant buds, and each young leaf is covered with a pair of stipules. Stipules and scales possess a resin gland, while the former also possess an extrafloral nectary. Despite their distinct secretions, these glands are similar and comprise secreting palisade epidermis. Young leaves also possess marginal colleters. All the studied glands shared some structural traits, including palisade secretory epidermis and the absence of stomata. Secretory activity is carried out by epidermal cells. Functionally, the activity of these glands is synchronous with the young and vulnerable stage of vegetative organs. This is the first report of colleters and resin glands for . We found evidence that these glands are correlated with protection against herbivores and/or abiotic agents during a developmental stage that precedes the establishment of mechanical defenses.

摘要

芽通常具有机械或化学保护作用,也可能具有分泌结构。我们在金莲木科植物中发现了一个与芽和幼叶保护相关的复杂分泌系统。我们研究了这个系统,重点关注发芽过程中腺体的分布、形态、组织化学和超微结构。芽和叶的样本按照光镜和电镜的常规程序进行处理。重叠的芽鳞保护休眠芽,每片幼叶都被一对托叶覆盖。托叶和芽鳞都有一个树脂腺,而托叶还具有花外蜜腺。尽管这些腺体的分泌物不同,但它们相似,都由分泌栅栏状表皮组成。幼叶也有边缘集流分泌腺。所有研究的腺体都有一些共同的结构特征,包括栅栏状分泌表皮和无气孔。分泌活动由表皮细胞进行。在功能上,这些腺体的活动与营养器官的幼嫩和脆弱阶段同步。这是关于金莲木科植物集流分泌腺和树脂腺的首次报道。我们发现有证据表明,在机械防御建立之前的发育阶段,这些腺体与抵御食草动物和/或非生物因子有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7190/8399310/7412ce608916/plants-10-01680-g001.jpg

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