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Sporeling regeneration and ex situ growth of Isoetes cangae (Isoetaceae): Initial steps towards the conservation of a rare Amazonian quillwort

机译:孢子再生和ISOETES Cangae(Isoetaceae)的原位生长:迈向珍稀亚马逊巨型峡谷的初步步骤

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摘要

Isoetes L. is a nearly cosmopolitan rhizomorphic lycopsid genus fundamental to disentangling plant evolution because of its singular position in the Plantae kingdom. A threatened Amazonian species recently described is I. cangae, inhabiting an oligotrophic upland lake over an iron-rich region facing substantial environmental alterations. In this study, we aim to optimize a reproduction protocol that can assist in the conservation efforts of Isoetes species in tropical areas. We observed an average of 126 megaspores or 318,000 microspores per sporangia in field-collected plants. We obtained an elevated percentage of sporelings (63%) from an in vitro mixed culture of mega- and microspores. In addition, we recovered a large number of sporelings around adult plants after cultivating them over quartzite sand and distilled water. The megaspore nutrient reserve ensured long-standing sporeling growth and development in these environmental conditions. However, the sporeling growth rate increased when they were planted over their original lake sediments or over an organic substrate, with nonsignificant differences between the substrates. An increase in temperature also increased the sporeling growth rate. Together with the very low sporeling mortality, these results suggest that I. cangae is a resilient species able to grow and colonize environments with low trophic characteristics with a range of substrates and temperature regimes. The protocols established in this study could be useful for the ex situ propagation and growth of a large number of sporelings, representing critical steps towards the population rescue and conservation of tropical Isoetes species.
机译:ISOETES L.是一个几乎国际化的根瘤大聚丙酸属植物属植物,因为它在植物王国的奇异地位而被解开植物演变的基础。最近描述的受威胁的亚马逊物种是I. Cangae,植物居住在富含铁的地区面临着大量环境变化的富含植物的山湖。在这项研究中,我们的目标是优化一种可协助热带地区Isoetes种类的养护工作的再生协议。我们在田间收集的植物中平均观察到每间孢子率为126mmgases或318,000微孢子。我们从兆孢子和幼儿孢子的体外混合培养获得升高的孢子素(63%)。此外,我们在培养石英岩砂和蒸馏水后,我们在成人植物周围恢复了大量孢子。 Megaspore营养储备确保了这些环境条件的长期孢子生长和发展。然而,当它们在原始湖泊沉积物或有机基质上种植它们时,孢子率增长率增加,基材之间的无显着性差异。温度的增加也增加了孢子率的生长速率。这些结果表明,I. Cangae是一种能够生长和殖民殖民特性的弹性物种,具有一系列基板和温度制度。本研究中建立的协议可用于沿着原位繁殖和大量孢子的增长,这代表了朝着人口救援和热带Isoetes种类的促销的关键步骤。

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