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Phenology-dependent variation in the non-structural carbohydrates of broadleaf evergreen species plays an important role in determining tolerance to defoliation (or herbivory)

机译:阔叶常绿树种非结构性碳水化合物的物候学相关变异在确定对落叶(或草食性)的耐受性中起重要作用

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摘要

Two broadleaf evergreen canopy species (Schima superba and Engelhardia roxburghiana) with different phenologies in a subtropical region of southern China were used to determine the influence of leaf phenology on the impact of an insect pest attack. S. superba regenerates its leaves in February, while E. roxburghiana regenerates its leaves in May. The moth Thalassodes quadraria attacked the two broadleaf evergreen species in March to April, and the newly produced leaves were removed for S. superba but not for E. roxburghiana. The young trees were artificially defoliated to imitate an insect pest attack during March 2014. Nonstructural carbohydrate (NSC) and growth measurements and a retrospective analysis based on the radial growth of mature trees were conducted in January 2015. The results showed that NSC concentrations decreased in S. superba during canopy rebuilding, and the subsequent defoliation severely inhibited leaf and shoot growth, prevented NSC restoration in roots and stem xylem, and caused high mortality. The insect outbreaks reduced the radial growth of S. superba. In contrast, E. roxburghiana experienced less growth retardation, lower mortality, and normal radial growth. Thus, taking phenology-dependent variation in NSCs into consideration, defoliation and insect pest outbreaks more negatively impacted S. superba than E. roxburghiana.
机译:在中国南方亚热带地区,两种具有不同物候特征的常绿常绿冠层物种(荷叶木(Schima superba)和罗氏Engelhardia roxburghiana)用于确定叶片物候对虫害侵袭的影响。超级链霉菌在2月使叶片再生,而roxburghiana菌在5月使叶片再生。在3月至4月,飞蛾thalassodes quadraria侵袭了两个阔叶常绿树种,新产生的叶被除去用于Super。S. superba,但不去除E. roxburghiana。在2014年3月,人工对幼树进行脱叶,以模仿虫害。2015年1月,进行了非结构性碳水化合物(NSC)和生长测量以及基于成熟树径向生长的回顾性分析。结果表明,冠层重建过程中的Super。S. superba和随后的落叶严重抑制了叶和茎的生长,阻止了根和茎木质部中NSC的恢复,并导致了高死亡率。昆虫的爆发减少了超级链球菌的径向生长。相反, roxburghiana 的生长迟缓较少,死亡率较低,放射状生长正常。因此,考虑到NSC的物候依赖性变化,落叶和病虫害爆发对 S 的影响更大。 superba E roxburghiana

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