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“平邑甜茶”组织培养微嫁接技术研究
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作者 赵恺 张志宏 +2 位作者 李井会 李大兴 吕萌 《北方园艺》 CAS 北大核心 2016年第2期88-91,共4页
以苹果"平邑甜茶"(Malus hupehensis var.pingyiensis)为微嫁接砧木,"寒富"(Malus domesticacv.‘Hanfu’)为接穗,研究了附加不同浓度6-BA的培养基、接穗不同生理状态、接穗具有叶片数量、不同接穗/砧木组合对嫁接... 以苹果"平邑甜茶"(Malus hupehensis var.pingyiensis)为微嫁接砧木,"寒富"(Malus domesticacv.‘Hanfu’)为接穗,研究了附加不同浓度6-BA的培养基、接穗不同生理状态、接穗具有叶片数量、不同接穗/砧木组合对嫁接成活率和嫁接口愈合的影响。结果表明:最适于微嫁接的培养基为MS+IAA 0.3mg/L+BA 1.0mg/L,选用继代培养40d的接穗和砧木,并且接穗部分具有2片真叶时的嫁接成活率最高;用"平邑甜茶"作为砧木的嫁接成活率高(81.3%),嫁接口愈合最好。该研究为下一步的转基因sRNA信号在砧木与接穗间的传递运输研究奠定基础。 展开更多
关键词 微嫁接 苹果 “平邑甜茶” sRNA传递
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Response of Organic Acids to Zinc Homeostasis in Zinc-Deficient and Zinc-Toxic Apple Rootstock Roots 被引量:3
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作者 LIU Di LIU Ai-Hong +2 位作者 HE Chen WANG Jin-Hua WANG Yah-An 《Pedosphere》 SCIE CAS CSCD 2012年第6期803-814,共12页
To elucidate the mechanisms of tolerance to zinc (Zn) deficiency and Zn toxicity in the root of apple trees, the apple rootstock Malus hupehensis (Pamp.) Rehd seedlings were selected to study the responses of organic ... To elucidate the mechanisms of tolerance to zinc (Zn) deficiency and Zn toxicity in the root of apple trees, the apple rootstock Malus hupehensis (Pamp.) Rehd seedlings were selected to study the responses of organic acids to Zn homeostasis in roots under low Zn (0 μmol L-1 ), adequate Zn (as control, 4 μmol L-1 ) and toxic Zn (100 μmol L-1 ) treatments. The differences of Zn concentrations and accumulations in the roots were highest, compared with those in the stems and leaves, when apple seedlings were subjected to low and toxic Zn treatments for 1 d. The concentrations and accumulations of oxalic and malic acids in the roots in the low and toxic Zn treatments increased by 20% to 60% compared with those of the control treatment. Significantly negative correlations were found between the total Zn concentrations and the concentrations of oxalic and malic acids in the roots under 1 d of low Zn treatment. However, contrary correlations were found for the toxic Zn treatment. Meanwhile, the maximum influx rates of Zn 2+ under low and toxic Zn treatments increased by 30% and 20%, respectively, compared with the rate of the control treatment. Both Zn deficiency and Zn toxicity increased the concentrations of organic acids in root after short-time Zn treatment, which could resist Zn stress through balanding Zn homeostasis in M. hupehensis Rehd. 展开更多
关键词 Malus hupehensis (Pamp.) Rehd Zn compartmentation Zn deficiency Zn toxicity Zn uptake
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