
植物营养与肥料学报2017,23(5):1326-1334 Journal of Plant Nutrition and Fertilizer
doi: 10.11674/zwyf.17011 http://www.plantnutrifert.org
施氮对镐胁迫下杂交相思树生长及镐吸收分配的影响
谭长强"2,何琴飞1-2,秦玉燕”,申文辉1.2*,刘秀12,曹艳云1,2
(1广西林业科学研究院,广西南宁530002;2广西优良用材林资源培育重点实验室,广西南宁530002:
3广西壮族自治区亚热带作物研究所,广西南宁530002)
摘要:【目的】研究不同水平氮的供应对术本固氮植物杂交相思树适应镉环境胁迫及其生物修复能力的影响,可为有目的地进行相思树裁培提供施肥依据。【方法】以杂交相思树(Acaciamangium×Acaciaauriculiformis)为试材进行了盆栽试验。Cd*设3个水平(0、30、60mg/kg),在Cd30mg/kg的基础上设施尿素2个水平(0.4、
0.8g/kg),共5个处理。研究了杂交相思幼苗的干物质、氮(N
【结果】Cd胁道显著抑制了杂交相思幼苗根、
累;杂交相思Cd转移系数为0.044
+77
股C
部;但Cd60mg/kg胁迫下,杂交相思通过向地上下,高氮(0.8g/kg)较低氨(0.4g/kg)更显著地促的N、P、K积累量;
高氨较低氢更显著
干重以及于物质在根:
了Cd转移系数;低氮更显著地促进了根,
叶中的分配比例。【结论】Cd胁迫下杂交 N、P和K利用率的方式,保证根系生
交相思由辐助迫所引起的对N、
长吸收的训制
开和总
磷(P)、钾(K)、(Cd)的积累和分配规律。
限制了N、P、K等元索的吸收和积
更的供紧,
并且根部Cd累积能力要大于地上
d以更好地适应强胁迫环境。Cd30mg/kg胁迫叶和植株总的P、K积累,而低氮更有效地增加了根
物质在茎叶中的分配比例,低氮则提高了根
了杂交相思对Cd的吸收和积累,提高显著地促进了茎Cd的积累及Cd在茎、
Cd积累和分配规律以及提高
30mg/kg
定进装变
氮量(尿素0.4g/kg)促进相思树生长的效果更佳,高施氮量(尿素 Cd生物修复能力。
关键词:镉胁迫;氮肥;杂交相思;干物质;养分利用
施氮可缓解杂 1的积累。低施
Cd向地上部的运转,提高其对
sg/kg定进
Effectofnitrogenapplicationonseedlinggrowthandcadminmuptakeand distributioninAcacia mangium x Acacia auriculiformis under cadmium stress
TAN Zhang-qiang'2, HE Qin-fei'2, QIN Yu-yan', SHEN Wen-hui*2-, LIU Xiu'-2, CAO Yan-yun'2
( I Guangxi Academy of Forestry, Namning 530002, China; 2 Guangxi Key Laboratory of Saperior Timber Trees Resource
Cultiwation, Nanning 530002, China; 3 Guangxi Subtropical Crops Research Institute, Nanning 530002, China )
Abstract:【Objectives] The adaptation and bioremediation capability of Acacia mangium × Acacid auriculiformis were studied under different nitrogen and cadmium stress levels for providing support for scientific fertilization of the target cultivation of Acacia mangium × Acacia auriculiformis.[Methods] A pot experiment was carried out with two cadmium stress levels of Cd2t 30 and 60 mg/kg and two urea levels of 0.4 and 0.8 g/kg soil. The accumulation and distribution of dry matter, N, P, K and Cd in shoots and roots of the trees were analyzed. [ Results J The cadmium stress significantly inhibited dry matter accumulation in roots, stems and leaves of Acacia mangium × Acacia auriculiformis, and also reduced the N, P and K absorption and accumulation The Cd transfer coefficients of the plant were from 0.044 to 0.224 when treated with different Cd concentrations
收稿日期:2017-01-09
接受日期:2017-05-02
(09)(00)
业科技项目(桂林科研[2015]18号)资助。
作者简介:谭长强(1987一),男,广西桂林人,工程师,硕土,主要从事森林培育和森林生态研究。E-mail:315990730@qq.com
*通信作者E-mail;shenwenhui2003@163.com
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