土壤改良可降低干旱和热浪对旱地树木幼苗造成的死亡率

J. Field, D. Law, Orrin B. Myers, Mallory L. Barnes, D. Breshears, Kierstin M. Acuña, Xiao Feng, J.B. Fontaine, K. Ruthrof, J. C. Villegas
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引用次数: 0

摘要

全球树种的死亡越来越多地受到更炎热的干旱和热浪的影响。在气候变化的情况下,幼树和成树都面临危险,这将对森林的动态和结构产生负面影响。迫切需要新的管理方案来降低死亡率,并对森林动态和结构产生积极影响。潜在的干旱改善土壤改良剂,如纳米壳聚糖--一种从海产品行业副产品中提炼出来的生物聚合物--可能会在更炎热的干旱期间为降低幼树死亡率提供另一套有用的工具。纳米壳聚糖能促进植物对水分和养分的吸收,但尚未在干旱和高温胁迫下进行过测试。我们在一个生长室中对影响旱地红松幼苗(2-3 岁)死亡风险和死亡率的因素进行了评估,采用了一个因子实验,包括环境温度和+4°C 的较高基础温度,有无 10 天+8°C 的热浪,以及有无纳米壳聚糖土壤改良剂。纳米壳聚糖处理降低了相对死亡风险,强调了这种土壤改良剂的保护功能,将相对死亡风险降低了 37%。重要的是,纳米壳聚糖土壤改良剂在更炎热的干旱和热浪条件下延缓树木死亡的保护作用,为试图在人类世气候中生存的幼树提供了一种新的、潜在的积极管理方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soil amendment mitigates mortality from drought and heat waves in dryland tree juveniles
Mortality of tree species around the globe is increasingly driven by hotter drought and heat waves. Tree juveniles are at risk, as well as adults, and this will have a negative effect on forest dynamics and structure under climate change. Novel management options are urgently needed to reduce this mortality and positively affect forest dynamics and structure. Potential drought-ameliorating soil amendments such as nanochitosan – a biopolymer upcycled from byproducts of the seafood industry – may provide an additional set of useful tools for reducing juvenile mortality during hotter droughts. Nanochitosan promotes water and nutrient absorption in plants but has not been tested in the context of drought and heat stress. We evaluated factors affecting mortality risk and rate for dryland Pinus edulis juveniles (2–3 years old) in a growth chamber using a factorial experiment that included ambient and +4°C warmer base temperatures, with and without a 10 day +8°C heat wave, and with and without a nanochitosan soil amendment. The nanochitosan treatment reduced the relative risk of mortality, emphasizing a protective function of this soil amendment, reducing the relative risk of mortality by 37%. Importantly, the protective effects of nanochitosan soil amendment in delaying tree mortality under hotter drought and heat waves provides a new, potentially positive management treatment for tree juveniles trying to survive in the climate of the Anthropocene.
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