The response of physiological and xylem anatomical traits under cadmium stress in Pinus thunbergii seedlings.

IF 3.5 2区 农林科学 Q1 FORESTRY
Shan Li, Huan Li, Jing Wang, Sen Lu, Zepeng Liu, Honglei Jia, Ting Wei, Junkang Guo
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引用次数: 0

Abstract

Studying the response of physiological and xylem anatomical traits under cadmium stress is helpful to understand plants' response to heavy metal stress. Here, seedlings of Pinus thunbergii Parl. were treated with 50, 100 and 150 mg kg-1 Cd2+ for 28 days. Cadmium and nonstructural carbohydrate content of leaves, stems and roots, root Cd2+ flux, cadmium distribution pattern in stem xylem and phloem, stem xylem hydraulic traits, cell wall component fractions of stems and roots, phytohormonal content such as abscisic acid, gibberellic acid 3, molecule -indole-3-acetic acid, and jasmonic acid from both leaves and roots, as well as xylem anatomical traits from both stems and roots were measured. Root Cd2+ flux increased from 50 to 100 mmol L-1 Cd2+ stress, however it decreased at 150 mmol L-1 Cd2+. Cellulose and hemicellulose in leaves, stems and roots did not change significantly under cadmium stress, while pectin decreased significantly. The nonstructural carbohydrate content of both leaves and stems showed significant changes under cadmium stress while the root nonstructural carbohydrate content was not affected. In both leaves and roots, the abscisic acid content significantly increased under cadmium stress, while the gibberellic acid 3, indole-3-acetic acid and jasmonic acid methylester content significantly decreased. Both xylem specific hydraulic conductivity and xylem water potential decreased with cadmium stress, however tracheid diameter and double wall thickness of the stems and roots were not affected. High cadmium intensity was found in both the stem xylem and phloem in all cadmium stressed treatments. Our study highlighted the in situ observation of cadmium distribution in both the xylem and phloem, and demonstrated the instant response of physiological traits such as xylem water potential, xylem specific hydraulic conductivity, root Cd2+ flux, nonstructural carbohydrate content, as well as phytohormonal content under cadmium stress, and the less affected traits such as xylem anatomical traits, cellulose and hemicellulose.

镉胁迫下松柏幼苗生理和木质部解剖特征的反应
研究镉(Cd)胁迫下生理和木质部解剖特征的反应有助于了解植物对重金属胁迫的反应。在此,用 50、100 和 150 mg/kg Cd2+ 处理松柏幼苗 28 天。叶、茎和根的镉和非结构碳水化合物(NSC)含量、根Cd2+通量、镉在茎木质部和韧皮部的分布模式、茎木质部的水力特性、茎和根的细胞壁组分、测量了叶和根的脱落酸(ABA)、赤霉素 3(GA3)、分子吲哚-3-乙酸(IAA)和茉莉酸(JA)等植物激素含量,以及茎和根的木质部解剖特征。根的 Cd2+ 通量在 50 至 100 mmol/L Cd2+ 胁迫下有所增加,但在 150 mmol/LCd2+ 胁迫下有所减少。叶、茎和根中的纤维素和半纤维素在 Cd 胁迫下没有显著变化,而果胶则显著减少。在镉胁迫下,叶和茎的 NSC 含量都发生了显著变化,而根的 NSC 含量未受影响。在镉胁迫下,叶片和根中的 ABA 含量都明显增加,而 GA3、IAA 和 JA-ME 含量则明显减少。木质部水导率和木质部水势均随镉胁迫而降低,但茎和根的气管直径和双壁厚度未受影响。在所有镉胁迫处理中,茎木质部和韧皮部的镉浓度都很高。我们的研究突出了镉在木质部和韧皮部分布的原位观测,并证明了木质部水势、木质部水导率、根Cd2+通量、NSC含量和植物激素含量等生理性状在镉胁迫下的即时反应,以及木质部解剖性状、纤维素和半纤维素等受影响较小的性状。
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
Tree physiology
Tree physiology 农林科学-林学
CiteScore
7.10
自引率
7.50%
发文量
133
审稿时长
1 months
期刊介绍: Tree Physiology promotes research in a framework of hierarchically organized systems, measuring insight by the ability to link adjacent layers: thus, investigated tree physiology phenomenon should seek mechanistic explanation in finer-scale phenomena as well as seek significance in larger scale phenomena (Passioura 1979). A phenomenon not linked downscale is merely descriptive; an observation not linked upscale, might be trivial. Physiologists often refer qualitatively to processes at finer or coarser scale than the scale of their observation, and studies formally directed at three, or even two adjacent scales are rare. To emphasize the importance of relating mechanisms to coarser scale function, Tree Physiology will highlight papers doing so particularly well as feature papers.
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