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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >GROWTH AND MORPHOGENESIS IN SAPROLEGNIA FERAX - IS TURGOR REQUIRED
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GROWTH AND MORPHOGENESIS IN SAPROLEGNIA FERAX - IS TURGOR REQUIRED

机译:无花果无花果的生长和成色-需要Turtur

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摘要

The oomycete Saprolegnia ferax, unlike most walled organisms, does not regulate turgor. When hyphae were subjected to water stress by the addition of sucrose or other solutes to the growth medium, turgor pressure diminished progressively; yet the hyphae continued to extend with deposition of a more plastic apical wall. Even when turgor was no longer measurable with a micropipet-based pressure probe (0.02 MPa or less, compared with 0.4 MPa in unsupplemented medium) they produced regular hyphal tubes and rips. Such ''turgorless': hyphae extended as rapidly, or more rapidly; than normal ones, but they were wider and their tips blunter. Despite the loss of turgor, hyphae put forth branches and cysts germinated. The organization of actin microfilaments was essentially normal, and the response to cytochalasin A was similar in turgorless and standard hyphae. However, as turgor diminished the hyphae's capacity to penetrate solid media was progressively impaired; aerial hyphae were no longer produced, and zoospore formation was inhibited. The results contradict the common belief that turgor supplies the driving force for hyphal extension, tip morphogenesis, and branching. Evidently, these functions do not intrinsically require hydrostatic pressure. Turgorless hyphae are, however, crippled by their inability to exploit solid media. [References: 40]
机译:与大多数有壁生物不同,卵菌的腐烂的腐殖质不能调节膨大。当菌丝通过在生长培养基中添加蔗糖或其他溶质而受到水分胁迫时,膨松压力逐渐降低;然而,由于更多的可塑性顶壁沉积,菌丝继续延伸。即使不再使用基于微量移液器的压力探头(在未补充培养基中为0.4 MPa或更低,即0.02 MPa或更小的压力)也无法测得它们的膨胀,它们也会产生规则的菌丝管和裂口。这种“无生气的”:菌丝迅速地或更快地伸展;比正常人要宽,但尖端更钝。尽管失去了膨大,但菌丝仍长出了分支,并发芽了囊肿。肌动蛋白微丝的组织本质上是正常的,在无菌丝和标准菌丝中,对细胞松弛素A的反应相似。但是,由于胀气的减弱,菌丝穿透固体培养基的能力逐渐受到损害。气生菌丝不再产生,游动孢子形成被抑制。结果与普遍认为的相反,即膨松为菌丝延伸,尖端形态发生和分支提供了驱动力。显然,这些功能本质上并不需要静水压力。然而,无生气的菌丝由于无法利用固体培养基而受到损害。 [参考:40]

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