Responses of non-structural carbohydrate and carbon, nitrogen, and phosphorus chemometrics in needles of early shaded Pinus yunnanensis seedlings to drought.

IF 4.8 2区 生物学 Q1 PLANT SCIENCES BMC Plant Biology Pub Date : 2025-03-01 DOI:10.1186/s12870-025-06265-8
Chengyao Liu, Junwen Wu, Jianyao Gu, Huaijiao Duan
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Abstract

With global warming, the frequency and duration of drought is becoming longer and longer, which seriously affects the survival of trees. Light intensity control, such as shading, is an important measure in seedling nurseries. However, it is unclear whether early shading affects the drought tolerance of seedlings used in afforestation. We conducted a two-stage experiment on Pinus yunnanensis seedlings. First, three different shading treatments were set, namely HL (0% shading), ML (55% shading), and LL (80% shading). After 90 days of cultivation, the seedlings of each shading treatment were subjected to CK (water content of 90% ± 5%), LD (water content of 75% ± 5%), MD (water content of 60% ± 5%) and SD (water content of 45% ± 5%) continuous drought for 30 days. The contents of non-structural carbohydrates (NSCs), carbon (C), nitrogen (N), and phosphorus (P) and their ratios in the needles of P. yunnanensis seedlings were measured. Early shading affected the starch accumulation and the balance between C absorption and consumption in P. yunnanensis seedlings during drought. Early shading affected C consumption, P utilization efficiency, and N restriction under drought stress. The phenotypic plasticity index showed that the plasticity of P. yunnanensis seedlings under drought stress followed the order: LL > HL > ML. The results of principal component analysis showed that the performance under drought stress followed the order HL > LL > ML. These results indicated that early shading could affect the response of P. yunnanensis seedlings to drought. The P. yunnanensis seedlings grown under HL and LL were more resistant to drought stress than those grown under ML. It is suggested that 0% or 80% shading should be applied at seedling stage to improve the drought resistance of P. yunnanensis.

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早期遮阴云南松幼苗针叶中的非结构性碳水化合物和碳、氮、磷化学计量学对干旱的响应。
随着全球气候变暖,干旱的频率和持续时间越来越长,严重影响了树木的生存。光照强度控制,如遮阳,是苗圃的重要措施。然而,目前尚不清楚早期遮荫是否会影响造林幼苗的耐旱性。我们对云南松幼苗进行了两阶段试验。首先,设置三种不同的遮光处理,即HL(0%遮光)、ML(55%遮光)和LL(80%遮光)。培养90 d后,每个遮荫处理的幼苗分别经受CK(含水量90%±5%)、LD(含水量75%±5%)、MD(含水量60%±5%)和SD(含水量45%±5%)连续干旱处理30 d。测定了云南松木幼苗针叶中非结构碳水化合物(NSCs)、碳(C)、氮(N)、磷(P)的含量及其比值。早期遮荫影响了干旱条件下云杉幼苗淀粉积累和碳吸收消耗平衡。早期遮荫影响干旱胁迫下的碳消耗、磷利用效率和氮素限制。表型可塑性指数显示,干旱胁迫下云南云杉幼苗的可塑性依次为:LL > HL > ML。主成分分析结果表明,在干旱胁迫下,冬小麦的表现为HL b> LL b> ML。这些结果表明,早期遮荫会影响云杉幼苗对干旱的响应。在HL和LL条件下生长的云杉幼苗比ML条件下生长的云杉幼苗对干旱胁迫的抗性更强,建议在苗期施用0%或80%遮荫以提高云杉的抗旱性。
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来源期刊
BMC Plant Biology
BMC Plant Biology 生物-植物科学
CiteScore
8.40
自引率
3.80%
发文量
539
审稿时长
3.8 months
期刊介绍: BMC Plant Biology is an open access, peer-reviewed journal that considers articles on all aspects of plant biology, including molecular, cellular, tissue, organ and whole organism research.
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