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Comparative anther and pollen tetrad development in functionally monoecious Pseuduvaria trimera (Annonaceae and evolutionary implications for anther indehiscence

机译:在功能单一的假冒伪血清饰带中的比较花粉和花粉四元发育(Annonaceae和anhther Condiscence的进化意义

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The multiple evolutionary origins and diverse morphologies of unisexual flowers in angiosperms indicate that many different developmental mechanisms [sporophytic and (or) gametophytic tissues] underlie patterns of sex differentiation, yet, these mechanisms leading to unisexuality remain largely unresolved. In Pseuduvaria trimera (W.G. Craib) Y.C.F. Su & R.M.K. Saunders, morphologically hermaphroditic flowers are functionally female due to indehiscent anthers, but the developmental and anatomical mechanisms preventing their dehiscence are still unknown. Anther and pollen development were compared in both male and functionally female flowers using histological observations to test whether anther indehiscence results from a sporophytic and (or) gametophytic default. The epidermis, endothecium, middle layers, and pollen development were identical in the two floral morphs, but variations occurred in the tapetum and stomium regions. In male flowers, concurrently with the binucleate tapetal cell degeneration, the appearance of intercellular spaces and lysis of the stomium region cells lead to anther dehiscence. Conversely, in the functionally female flowers, trinucleate tapetum appears with delayed degradation, and the persistent cells with a highly vacuolated cytoplasm and stomium region remain intact at maturity. Sporophytic tissues with tapetum abnormalities and stomium integrity are, thus, responsible for anther indehiscence. Lack of microspore rotation in P. trimera might indicate a different evolutionary origin of pollen tetrad formation in this family.
机译:在服药植物中的单调起源和单调花卉的多种进化起源表明,许多不同的发育机制[孢子化和(或)杂草组织]性别分化的底蕴差异化,这些机制导致单味性很大程度上是未解决的。在Pseuduvaria Trimera(W.G.Craib)Y.C.F. SU& r.m.k.桑德斯,形态学上的雌雄同体花是在功能上的女性因接触的花药,但防止其裂缝的发育和解剖机制仍然未知。使用组织学观察,在雄性和功能性雌性花中比较了花粉和花粉发育,以测试是否来自孢子素和(或)腺苷酸默认的花药诱导结果。表皮,内皮癣,中间层和花粉发育在两种花质中是相同的,但在Tapetum和Sompium区发生了变化。在雄性花中,同时与Binucleat Tapetal细胞变性,外细胞间隙的外观和呼吸区域细胞的裂解导致花药裂开。相反,在功能上的雌性花中,Triinetum出现延迟降解,具有高真空细胞质和浮雕区域的持续细胞保持完整。因此,具有Tapetum异常和stomium完整性的孢子素组织是负责粗症的疾病。 P. Trimera缺乏小孢子旋转可能表明该家庭中花粉四层形成的不同进化起源。

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