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根系CEC、ATP酶活性和根际微生物对籽粒苋富钾能力的影响 被引量:9
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作者 李廷轩 张锡洲 +1 位作者 王昌全 周建新 《四川农业大学学报》 CSCD 2002年第4期354-356,共3页
研究了根系CEC、根系和根际土ATP酶活性、根际微生物对籽粒苋富钾能力的影响。结果表明:①籽粒苋植株的高富钾能力不仅与其根系阳离子交换量(CEC)较大有一定关系,而且也与籽粒苋根际土和根系的ATP酶活性高相关;②籽粒苋植株富钾与其根... 研究了根系CEC、根系和根际土ATP酶活性、根际微生物对籽粒苋富钾能力的影响。结果表明:①籽粒苋植株的高富钾能力不仅与其根系阳离子交换量(CEC)较大有一定关系,而且也与籽粒苋根际土和根系的ATP酶活性高相关;②籽粒苋植株富钾与其根际微生物类群数量没有直接相关关系。除籽粒苋苗期根际土壤好气性细菌总数低于非根际土外,3种作物根际土壤的微生物类群数量均高于非根际土。 展开更多
关键词 活性 根际微生物 籽粒苋 富钾能力 根系阳离子交换量 根系atp酶
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供铁水平对不同苹果基因型生长及根系特性的影响 被引量:1
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作者 王永章 张玉娜 +2 位作者 徐坤 韩振海 孙文彬 《莱阳农学院学报》 2000年第3期161-165,共5页
以小金海棠 (MalusxiaojinensisChengetJiang)和山定子 (MalusbaccataL .Borkh)为试材 ,研究供铁水平对其生长及根系特性的影响 ,结果表明 ,在幼苗生长量、新叶叶绿素含量、营养液pH日变化、根系活力、根系ATP酶活性诸方面 ,存在基因型... 以小金海棠 (MalusxiaojinensisChengetJiang)和山定子 (MalusbaccataL .Borkh)为试材 ,研究供铁水平对其生长及根系特性的影响 ,结果表明 ,在幼苗生长量、新叶叶绿素含量、营养液pH日变化、根系活力、根系ATP酶活性诸方面 ,存在基因型差异。同一供铁水平 ,小金海棠有明显的铁胁迫反应 ,而山定子铁胁迫反应较弱。低铁胁迫处理 ,小金海棠叶片叶绿素含量、根系活力、根系ATP酶活性皆明显高于山定子。 展开更多
关键词 苹果 基因型 铁胁迫 根系活力 根系atp酶活性
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Genotypic variation in phosphorus acquisition from sparingly soluble P sources is related to root morphology and root exudates in Brassica napus 被引量:6
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作者 ZHANG HaiWei HUANG Yu +1 位作者 YE XiangSheng XU FangSen 《Science China(Life Sciences)》 SCIE CAS 2011年第12期1134-1142,共9页
Genotypic variations in the adaptive response to low-phosphorus (P) stress and P-uptake efficiency have been widely reported in many crops. We conducted a pot experiment to evaluate the P-acquisition ability of two ... Genotypic variations in the adaptive response to low-phosphorus (P) stress and P-uptake efficiency have been widely reported in many crops. We conducted a pot experiment to evaluate the P-acquisition ability of two rapeseed (Brassica napus) geno- types supplied with two sparingly soluble sources of P, A1-P and Fe-P. Then, the root morphology, proton concentrations, and carboxylate content were investigated in a solution experiment to examine the genotypic difference in P-acquisition efficiency. Both genotypes produced greater biomass and accumulated more P when supplied with A1-P than when supplied with Fe-P. The P-efficient genotype 102 showed a significantly greater ability to deplete sparingly soluble P from the rhizosphere soil be- cause of its greater biomass and higher P uptake compared with those of the P-inefficient genotype 105. In the solution exper- iment, the P-efficient genotype under low-P conditions developed dominant root morphological traits, and it showed more in- tensive rhizosphere acidification because of greater H+ effiux, higher H+-ATPase activity, and greater exudation of carbox- ylates than the P-inefficient genotype. Thus, a combination of morphological and physiological mechanisms contributed to the genotypic variation in the utilization of different sparingly soluble P sources in B. napus. 展开更多
关键词 Brassica napus sparingly soluble P genotypic variation root morphology H+ and carboxylate exudation
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