Indoor culture scaling of Gracilaria chilensis (Florideophyceae, Rhodophyta): The effects of nutrients by means of different culture media

J. Rivas, Alejandra Núñez, Francisca Erazo, F. Castañeda, M. Araya, Andrés Meynard, L. Contreras-Porcia
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引用次数: 2

Abstract

Gracilaria chilensis is distributed in New Zealand (including Chatham Island) and South America. This species has a three-stage sexual life cycle, as well as asexual and vegetative reproduction, and is commercially important as it is a valuable source for producing agar. However, basing the crops exclusively on clonal reproduction and vegetative propagation has led to a reduction in their genotypic diversity, an increase in their susceptibility to infection by epiphytes, and a decrease in their quality. Thus, it is important to establish indoor cultures of G. chilensis from thalli with a mixed reproductive regime (sexual and asexual) that maintains the genetic variability of the cultivars. In this study, the biomass, growth rate, and productivity of indoor cultures of G. chilensis were evaluated (as a first approach) using various culture media (i.e., von Stosch medium (VS), Basfoliar® Aktiv (BF), and mixtures of VS and BF, namely, VS/BF-A and VS/BF-B). The VS/BF-A medium showed the best results in terms of biomass (51.8 ± 3.7 g m–2), growth rate (4.55 ± 0.43 %d–1), and productivity (14 g m–2 d–1), including the occurrence of thalli with cystocarps. The positive results using the VS/BF-A medium could be attributed to the fact that BF provides different elements (K, Cu, Mo, and Zn) that are crucial, since they are involved in numerous physiological functions in the algae, and also to the N:P ratio utilized (1:1), which positively affects growth and productivity. This information provides pivotal updated knowledge regarding cultures of G. chilensis under controlled conditions, promoting its successful cultivation for productive purposes.
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紫穗槐室内培养结垢:不同培养基对营养物的影响
赤葛(Gracilaria chilensis)分布在新西兰(包括查塔姆岛)和南美洲。这个物种有三个阶段的有性生命周期,以及无性繁殖和营养繁殖,在商业上很重要,因为它是生产琼脂的有价值的来源。然而,单纯依靠无性系繁殖和无性繁殖导致其基因型多样性降低,对附生植物感染的易感性增加,质量下降。因此,建立具有混合生殖制度(有性和无性)的菌体的室内培养,以保持品种的遗传变异性是很重要的。本研究采用不同培养基(von Stosch培养基(VS)、Basfoliar®Aktiv培养基(BF)以及VS和BF的混合物,即VS/BF- a和VS/BF- b),初步评价了辣椒室内培养物的生物量、生长率和生产力。VS/BF-A培养基在生物量(51.8±3.7 g m-2)、生长率(4.55±0.43% d-1)和产量(14 g m-2 d-1)方面表现出最佳效果,包括出现囊状体的菌体。使用VS/BF- a培养基的积极结果可归因于BF提供了不同的元素(K, Cu, Mo和Zn),这些元素至关重要,因为它们参与了藻类的许多生理功能,并且利用了氮磷比(1:1),这对生长和生产力有积极影响。这一信息提供了关键的最新知识,关于在受控条件下的培养,促进其生产目的的成功栽培。
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