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Abundance of invasive grasses is dependent on fire regime and climatic conditions in tropical savannas

机译:丰富的侵入性草依赖于热带大草原的消防状态和气候条件

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Invasive grasses are a threat to some tropical savannas, but despite being fire-prone ecosystems, little is known about the relationships between fire season, climatic conditions and invasive species on these systems. We evaluated the response of the perennial invasive grasses Melinis minutiflora and Urochloa brizantha to three fire seasons in an open tropical savanna in South America: Early-Dry (May), Mid-Dry (July) and Late-Dry (October) in relation to unburned Controls. Moreover, we investigated how these responses were influenced by precipitation and extreme air temperatures. We hypothesized that biomass of both species would be reduced by fires during their reproductive period and that climatic conditions would affect them equally. We conducted prescribed burns on 15 × 15 m plots (4 plots × 4 treatment × 2 invasive species = 32 plots) in 2014. We sampled the biomass before the burn experiments and for the next two years (five 0.25 m~2 samples/plot). Our experiments revealed that the fire season did not influence the abundance of either species. However, the two species responded differently to fire occurrence: M. minutiflora decreased whereas U. brizantha was not affected by fires. Early-Dry and Late-Dry fire treatments enhanced the replacement of M. minutiflora by U. brizantha. We found that the influence of precipitation depended on the species: it reduced M. minutiflora but increased U. brizantha abundance. Lower monthly minimum temperatures decreased the abundance of both species. It directly reduced live M. minutiflora and increased dead V. brizantha biomass. Monthly maximum temperatures affected the invasive grasses by reducing live M. minutiflora. Since tropical savannas are predicted to face climatic instability and that climate influences the differential response of invasive species, the management of invaders should consider both the identity of the target species and the possible interactions with other invasive species. Moreover, it is essential to keep an adaptive management approach to face the uncertainties that climate change may pose to biodiversity conservation.
机译:侵入性草对一些热带大草原的威胁是一种威胁,但尽管是易受消防生态系统的威胁,但对这些系统上的火灾季节,气候条件和侵入物种之间的关系很少。我们评估了常年侵入性草Melinis Minutiflora和Urochloa Brizantha的响应在南美洲的开放热带大草原中的三次火灾季节:早期(五月),中干(7月)和迟到(十月)的关系未燃烧的控制。此外,我们调查了如何受到降水和极端空气温度的影响。我们假设两种物种的生物量将在他们的生殖期间减少,并且气候条件会同样影响它们。我们在2014年在15×15米的地块上进行规定的烧伤(4个绘图×4治疗×2侵入物种= 32个地块)。我们在燃烧实验和未来两年之前对生物量进行了取样(五个0.25 m〜2样品/地块)。我们的实验表明,火季并未影响任何一种物种的丰富。然而,两种物种对火灾发生不同:M.Minutiflora降低,而U.Brizantha不受火灾的影响。早期干燥和晚期的消防治疗增强了U.Brizantha的M. Minutiflora。我们发现沉淀的影响依赖于物种:它减少了M.Minutiflora,但增加了U.Brizantha丰富。较低的月度最低温度降低了两种物种的丰富。它直接减少了Minutiflora的Live M. Minutiflora和Dead V.Brizantha生物量增加。每月最高温度通过减少活汞米丁香来影响侵入性草。由于热带大草原预测,面对气候不稳定,并且气候影响入侵物种的差异响应,因此入侵者的管理应考虑目标物种的身份及与其他侵入物种的可能相互作用。此外,必须保持自适应管理方法,面对气候变化可能对生物多样性保护构成的不确定性。

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