Response of radial growth of Pinus sylvestris var. mongolica of different stand ages to climate and extreme drought events in the semi-arid region of western Liaoning, Northeast China

IF 2.7 3区 农林科学 Q2 ECOLOGY
Ping Liu, Shiyu Hu, Hongxu Wei, Wenting He, Yiming Zhou, Yutao Wang
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Abstract

The frequency and severity of drought events are increasing under a changing climate, trees of different stand ages respond differently to drought events, which has a great impact on the stability of forest ecosystems. In this study, we measured radial growth (RG) in cored trees from 49 forests including young stands (20–30a) and middle-aged stands (31–50a) of Pinus sylvestris var. mongolica plantations in a semi-arid area of western Liaoning, China. We evaluated the response of RG of P. sylvestris to long-term climate, and calculate three response indicators: resistance (Rt), recovery (Rc) and resilience (Rs), so as to measure the growth response of trees to drought events. Results showed that a negative correlation was detected between RG of young stands and the monthly highest temperature (MHT) in April and May. Positive correlations were found between RG of young stands and the monthly lowest temperature (MLT) across periods from September to November, when RG of young stands was also positively correlated with Palmer Drought Severity Index (PDSI) across whole-years. There was a positive correlation between RG of middle-aged stands and MLT in September, and PDSI from June to December. After the first drought event, most pine trees recovered their RG (Rc > 1, Rs > 1). However, after three consecutive drought events, Rt, Rc, and Rs of pine trees decreased significantly ( p < 0.05), and Rt and Rs were less than 1. In summary, younger pine trees are more sensitive to climate change, and spring drought is more inhibitory to growth of pine trees than high summer temperatures. Pine trees have a compensation effect after experiencing drought events, but the cumulative effect of multiple drought events will gradually offset the compensation effect of trees and eventually decline in pine tree growth, while the resistance and resilience of young stands after continuous drought events were significantly lower than those of middle-aged stands, and have a higher risk of death.
辽西半干旱区不同林龄蒙古松径向生长对气候和极端干旱事件的响应
在气候变化的背景下,干旱事件发生的频率和严重程度都在增加,不同林龄的树木对干旱事件的响应不同,这对森林生态系统的稳定性产生了很大的影响。本研究以辽西半干旱区樟子松人工林为研究对象,测量了49种林分(幼林(20 ~ 30a)和中林(31 ~ 50a))的树芯径向生长(RG)。本研究评估了林分生长对长期气候的响应,计算了林分生长对干旱事件的抗性(Rt)、恢复力(Rc)和恢复力(Rs) 3个响应指标,以此来衡量林分生长对干旱事件的响应。结果表明:4月和5月幼林RG与月最高气温呈负相关;9 ~ 11月幼林RG与月最低气温(MLT)呈显著正相关,幼林RG与Palmer干旱指数(PDSI)呈显著正相关。9月中年林分RG与MLT、6 ~ 12月PDSI呈显著正相关。在第一次干旱事件后,大多数松树恢复了它们的RG (Rc >1、r >1)但连续3次干旱后,松树的Rt、Rc和Rs显著降低(p <0.05),且Rt、Rs均小于1。综上所述,幼龄松树对气候变化更为敏感,春季干旱对松树生长的抑制作用大于夏季高温。经历干旱事件后,松树具有补偿效应,但多次干旱事件的累积效应会逐渐抵消树木的补偿效应,最终导致松树生长下降,而连续干旱事件后,幼龄林分的抗逆性和恢复力显著低于中年林分,且死亡风险较高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.50
自引率
6.20%
发文量
256
审稿时长
12 weeks
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