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小麦基因型间籽粒镉积累及低积累资源筛选 被引量:17
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作者 杨玉敏 张庆玉 +4 位作者 张冀 田丽 雷建容 喻华 杨武云 《中国农学通报》 CSCD 北大核心 2010年第17期342-346,共5页
为解决镉(Cd)污染带来的粮食安全问题,采用盆栽试验对102份不同基因型的小麦资源在Cd污染土壤环境下小麦籽粒Cd积累差异进行了分析。结果表明,在土壤Cd含量为20mg/kg时,102份小麦中73.53%的籽粒Cd积累为4~7mg/kg,17.65%籽粒Cd积累>7... 为解决镉(Cd)污染带来的粮食安全问题,采用盆栽试验对102份不同基因型的小麦资源在Cd污染土壤环境下小麦籽粒Cd积累差异进行了分析。结果表明,在土壤Cd含量为20mg/kg时,102份小麦中73.53%的籽粒Cd积累为4~7mg/kg,17.65%籽粒Cd积累>7mg/kg,8.82%籽粒Cd积累<4mg/kg。以在Cd浓度为20mg/kg下筛选出的9份低积累和16份高积累材料为研究对象,进—步研究这些高低积累材料在Cd浓度分别为0.4、5和20mg/kg土壤环境下籽粒Cd积累差异。结果表明,小麦籽粒Cd积累与基因型有很大的关系,不同基因型小麦在不同Cd浓度下籽粒Cd积累差异显著,籽粒Cd积累量与土壤中Cd含量呈显著正相关,籽粒Cd积累系数与土壤Cd含量呈负相关。同时根据材料在不同浓度Cd积累情况,筛选出3份低Cd积累小麦,为进一步选育小麦籽粒低Cd积累品种奠定材料基础。 展开更多
关键词 小麦 Cd积累 基因型 积累差异
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Regulation of the High-Affinity Nitrate Transport System in Wheat Roots by Exogenous Abscisic Acid and Glutamine 被引量:5
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作者 Chao Cai Xue-Qiang Zhao +3 位作者 Yong-Guan Zhu Bin Li Yi-Ping Tong Zhen-Sheng Li 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2007年第12期1719-1725,共7页
Nitrate is a major nitrogen (N) source for most crops. Nitrate uptake by root cells is a key step of nitrogen metabolism and has been widely studied at the physiological and molecular levels. Understanding how nitra... Nitrate is a major nitrogen (N) source for most crops. Nitrate uptake by root cells is a key step of nitrogen metabolism and has been widely studied at the physiological and molecular levels. Understanding how nitrate uptake is regulated will help us engineer crops with improved nitrate uptake efficiency. The present study investigated the regulation of the high-affinity nitrate transport system (HATS) by exogenous abscisic acid (ABA) and glutamine (Gin) in wheat (Triticum aestivum L.) roots. Wheat seedlings grown in nutrient solution containing 2 mmol/L nitrate as the only nitrogen source for 2weeks were deprived of N for 4d and were then transferred to nutrient solution containing 50 μmol/L ABA, and 1 mmol/L Gin in the presence or absence of 2 mmol/L nitrate for 0, 0.5, 1, 2, 4, and 8 h. Treated wheat plants were then divided into two groups. One group of plants was used to investigate the mRNA levels of the HATS components NRT2 and NAR2 genes in roots through semi-quantitative RT-PCR approach, and the other set of plants were used to measure high-affinity nitrate influx rates in a nutrient solution containing 0.2 mmol/L ^15N-labeled nitrate. The results showed that exogenous ABA induced the expression of the TaNRT2.1, TaNRT2.2, TaNRT2.3, TaNAR2.1, and TaNAR2.2 genes in roots when nitrate was not present in the nutrient solution, but did not further enhance the induction of these genes by nitrate. Glutamine, which has been shown to inhibit the expression of NRT2 genes when nitrate is present in the growth media, did not inhibit this induction. When Gin was supplied to a nitrate-free nutrient solution, the expression of these five genes in roots was induced. These results imply that the inhibition by Gin of NRT2 expression occurs only when nitrate is present in the growth media. Although exogenous ABA and Gin induced HATS genes in the roots of wheat, they did not induce nitrate influx. 展开更多
关键词 abscisic acid GLUTAMINE high-affinity nitrate transport system nitrate influx tnticum aestivum.
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