Ontogeny of the pollinium in Hoya carnosa provides new insights into microsporogenesis.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2023-06-01 Epub Date: 2023-02-10 DOI:10.1007/s00497-023-00460-z
Yan-Feng Kuang, Rao-Zhen Jia, Henrik Balslev, Jing-Ping Liao
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Abstract

The presence of a pollinium is a distinct character in Apocynaceae which is important for phylogenetic analysis. The pollinium of Hoya has an outer sporopollenin wall and a pellucid margin which are adaptive features. However, their ontogeny and related evolutionary implications are not entirely understood. Therefore, a representative species Hoya carnosa was selected to investigate the pollinium development using light and electron microscopy and cytochemical tests. In contrast to the microsporogenesis in most angiosperms, which is associated with callose, the non-callosic intersporal walls in Hoya carnosa, together with the successive cytokinesis and linear form of the tetrad, represent an alternative pattern of microsporogenesis. This pattern has specific implication for the early stages of pollen morphogenesis. The absence of exine and apertures in the pollen grains in the pollinium could result from a combination of factors including the absence of callose in the early stages and the modifications in later developmental pathways, e.g., the sporopollenin accumulation pathway. The pollinium wall is an exine without stratification, its surface lacks sculptures, and it provides structural support and protection. The pollen tubes germinate through the pellucid margin and germinating ridge which are specialized features. The pellucid margin originates from aborted microspores. The germinating ridge that lies on the outer side of the pellucid margin develops in the same way as a classic pollen exine. The pollen grains are aggregated by intine fusion which is favorable for tube germination and growth. Comparing Asclepiadoideae with the other two subfamilies of Apocynaceae that develop a pollinium, the pollinium of Asclepiadoideae has reduced deposition of sporopollenin in the inner walls but an increase in the outer pollinium wall, thus making the inner walls more reduced and simplified, and the outer walls more solid. The adaptive characters of the pollen wall structure and the cohesion mechanism suggest that the pollinium of Hoya carnosa is a derived form of pollen aggregation.

Abstract Image

红豆杉花粉块的本体发育提供了关于小孢子发生的新见解。
花粉块的存在是胡杨科植物的一个独特特征,对于系统发育分析非常重要。海雅的花粉块具有孢粉外壁和透明边缘,这是适应性特征。然而,它们的本体和相关的进化意义还不完全清楚。因此,我们选择了一个具有代表性的品种 Hoya carnosa,利用光学显微镜、电子显微镜和细胞化学测试来研究其花粉块的发育过程。大多数被子植物的小孢子发生都与胼胝质有关,与此相反,肉质海棠的孢子间壁不含胼胝质,加上连续的细胞分裂和四分体的线形,代表了另一种小孢子发生模式。这种模式对花粉形态发生的早期阶段具有特殊意义。花粉粒中没有外皮和孔隙可能是多种因素共同作用的结果,包括早期阶段没有胼胝质和后期发育途径的改变,如孢粉蛋白积累途径。花粉囊壁是一种没有分层的外壁,其表面缺乏雕刻,它提供结构支撑和保护。花粉管通过透明边缘和发芽脊发芽,这是花粉管的特化特征。透明边缘来自流产的小孢子。位于透明边缘外侧的发芽脊的发育方式与传统的花粉外线相同。花粉粒通过内膜融合聚集在一起,有利于花粉管的发芽和生长。将 Asclepiadoideae 与 Apocynaceae 的另外两个亚科中发育花粉囊的植物进行比较,Asclepiadoideae 的花粉囊内壁的孢粉蛋白沉积减少,但花粉囊外壁的孢粉蛋白沉积增加,从而使内壁更加缩小和简化,外壁更加坚固。花粉壁结构和凝聚机制的适应性特征表明,肉豆蔻花粉块是花粉聚集的衍生形式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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