水胁迫下大孢子和内生菌感染的亚利桑那羊茅发芽。

K. Neil, R. Tiller, S. Faeth
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引用次数: 29

摘要

植物萌发期水分的有效性对种子萌发至关重要,是幼苗发育的重要资源。研究了渗透势对大仙人掌(Sporobolus wrightii Munro)和亚利桑那羊茅(Festuca arizonica Vasey)发芽率和萌发时间的影响。我们预测,在半干旱环境中生长的种子在渗透电位小于-1.5 MPa(许多农艺禾草的永久凋萎点)的情况下发芽。此外,系统,无性内生菌新伤寒是通过种子传播的亚利桑那羊茅和被认为提高其寄主的萌发。因此,我们也测试了不同渗透电位下内生菌对亚利桑那羊茅发芽和发芽时间的影响。为了测试支持发芽的最小渗透电位,将大沙卡登和亚利桑那羊茅种子放在醋酸膜上,与不同渗透电位的聚乙二醇溶液接触2周。在标准PWP (-1.5 Mpa)和低于标准PWP (-1.5 Mpa)时,两种草的发芽率均为最高发芽率的50%(土壤饱和时)。在-1.5 MPa下,大沙棘和亚利桑那羊茅的发芽率分别为64%和60%,在-1.8 MPa下,亚利桑那羊茅的发芽率为35%(饱和时最高为70%)。在任何渗透电位下,内生菌的存在都不影响亚利桑那羊茅的发芽率和发芽期。DOI: 10.2458 / azu_jrm_v56i6_neil
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Big sacaton and endophyte-infected Arizona fescue germination under water stress.
Water availability in the germination stage of plants is crucial for seed germination and as a resource for developing seedlings. The effect of osmotic potential on percent germination and time to germination for big sacaton (Sporobolus wrightii Munro) and Arizona fescue (Festuca arizonica Vasey) was investigated. We predicted that seeds native to semi-arid environments would germinate at osmotic potentials less negative than about -1.5 MPa, the permanent wilting point (PWP) of many agronomic grasses. In addition, the systemic, asexual endophyte Neotyphodium is transmitted through the seed in Arizona fescue and is thought to increase germination of its host. Therefore, we also tested for an effect of the endophyte on germination and time to germination of Arizona fescue under varying osmotic potentials. To test for minimum osmotic potential supporting germination, big sacaton and Arizona fescue seeds were placed on acetate membranes in contact with PEG solutions of varying osmotic potentials for 2 weeks. Both grasses germinated at 50% of maximum germination (at soil saturation) at and below the standard PWP (-1.5 Mpa). Big sacaton and Arizona fescue germinated at 64% and 60% at -1.5 MPa, respectively, and Arizona fescue germinated at 35% at -1.8 MPa (70% was the maximum at saturation). The presence of the Neotyphodium endophyte did not affect percent or time to germination of Arizona fescue at any of the osmotic potentials tested. DOI:10.2458/azu_jrm_v56i6_neil
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