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施磷提高了……的耐旱性 。(原文句子不完整)

Phosphorous Application Improves Drought Tolerance of .

作者信息

Tariq Akash, Pan Kaiwen, Olatunji Olusanya A, Graciano Corina, Li Zilong, Sun Feng, Sun Xiaoming, Song Dagang, Chen Wenkai, Zhang Aiping, Wu Xiaogang, Zhang Lin, Mingrui Deng, Xiong Qinli, Liu Chenggang

机构信息

CAS Key Laboratory of Mountain Ecological Restoration and Bioresource Utilization and Ecological Restoration Biodiversity Conservation Key Laboratory of Sichuan Province, Chengdu Institute of Biology, Chinese Academy of SciencesChengdu, China.

International College, University of Chinese Academy of SciencesBeijing, China.

出版信息

Front Plant Sci. 2017 Sep 13;8:1561. doi: 10.3389/fpls.2017.01561. eCollection 2017.

Abstract

(Gold Phoebe) is a threatened tree species in China and a valuable and important source of wood and bioactive compounds used in medicine. Apart from anthropogenic disturbances, several biotic constraints currently restrict its growth and development. However, little attention has been given to building adaptive strategies for its conservation by examining its morphological and physio-biochemical responses to drought stress, and the role of fertilizers on these responses. A randomized experimental design was used to investigate the effects of two levels of irrigation (well-watered and drought-stressed) and phosphorous (P) fertilization treatment (with and without P) to assess the morphological and physio-biochemical responses of seedlings to drought stress. In addition, we evaluated whether P application could mitigate the negative impacts of drought on plant growth and metabolism. Drought stress had a significant negative effect on the growth and metabolic processes of . Despite this, reduced leaf area, limited stomatal conductance, reduced transpiration rate, increased water use efficiency, enhanced antioxidant enzymes activities, and osmolytes accumulation suggested that the species has good adaptive strategies for tolerating drought stress. Application of P had a significant positive effect on root biomass, signifying its improved water extracting capacity from the soil. Moreover, P fertilization significantly increased leaf relative water content, net photosynthetic rate, and maximal quantum efficiency of PSII under drought stress conditions. This may be attributable to several factors, such as enhanced root biomass, decreased malondialdehyde content, and the up-regulation of chloroplast pigments, osmolytes, and nitrogenous compounds. However, P application had only a slight or negligible effect on the growth and metabolism of well-watered plants. In conclusion, has a strong capability for drought resistance, while P application facilitates and improves drought tolerance mostly through physio-biochemical adjustments, regardless of water availability. It is imperative to explore the underlying metabolic mechanisms and effects of different levels of P fertilization on under drought conditions in order to design appropriate conservation and management strategies for this species, which is at risk of extinction.

摘要

(金丝楠木)是中国一种受威胁的树种,是用于木材和医药的生物活性化合物的重要宝贵来源。除了人为干扰外,目前一些生物限制因素也制约着它的生长和发育。然而,通过研究其对干旱胁迫的形态和生理生化反应以及肥料对这些反应的作用来制定适应性保护策略的关注较少。采用随机实验设计来研究两种灌溉水平(充分浇水和干旱胁迫)和磷肥处理(施磷和不施磷)对幼苗干旱胁迫形态和生理生化反应的影响。此外,我们评估了施磷是否可以减轻干旱对植物生长和代谢的负面影响。干旱胁迫对(金丝楠木)的生长和代谢过程有显著负面影响。尽管如此,叶面积减小、气孔导度受限、蒸腾速率降低、水分利用效率提高、抗氧化酶活性增强和渗透物质积累表明该物种具有良好的耐受干旱胁迫的适应性策略。施磷对根系生物量有显著的正向影响,表明其从土壤中提取水分的能力得到提高。此外,在干旱胁迫条件下,施磷显著提高了叶片相对含水量、净光合速率和PSII的最大量子效率。这可能归因于几个因素,如根系生物量增加、丙二醛含量降低以及叶绿体色素、渗透物质和含氮化合物的上调。然而,施磷对充分浇水植物的生长和代谢只有轻微或可忽略不计的影响。总之,(金丝楠木)具有很强的抗旱能力,而施磷主要通过生理生化调节促进和提高耐旱性,无论水分供应情况如何。为该濒危物种设计适当的保护和管理策略,探索干旱条件下不同施磷水平对(金丝楠木)的潜在代谢机制和影响势在必行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4038/5601402/8e29ed8452eb/fpls-08-01561-g001.jpg

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