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nutritional genotypes
相关语句
  营养基因型
     Plants with different nutritional genotypes differ in RE composition.
     不同营养基因型的植物, RE组分明显不同。
短句来源
  相似匹配句对
     Potassium efficiency of various cotton genotypes and its nutritional mechanisms
     不同基因型棉花苗期钾效率差异及其机制的研究
短句来源
     Plants with different nutritional genotypes differ in RE composition.
     不同营养基因型的植物, RE组分明显不同。
短句来源
     the nutritional function;
     营养作用 ;
短句来源
     Nutritional inquiry.
     营养查询等。
短句来源
     Genotypes were identified by sequencing.
     应用测序方法进行基因分型。
短句来源
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Root exudates (RE) mainly include mucilage, ecotoenzymes, organic, sugar, phenol and various kinds of amino acids. Plants with different nutritional genotypes differ in RE composition. Plant could adapt itself to the changing rhizosphere environment by increasing exudation of some specific RE when encountered nutrient and environmental stress. RE is an important way used by plant to improve its nutrient status in rhizosphere because RE could improve soil structure, cause weathering of soil minerals, increase...

Root exudates (RE) mainly include mucilage, ecotoenzymes, organic, sugar, phenol and various kinds of amino acids. Plants with different nutritional genotypes differ in RE composition. Plant could adapt itself to the changing rhizosphere environment by increasing exudation of some specific RE when encountered nutrient and environmental stress. RE is an important way used by plant to improve its nutrient status in rhizosphere because RE could improve soil structure, cause weathering of soil minerals, increase soil CEC and affect soil pH, sorption properties of soil surface and soil biological traits. RE also play a key role in activating soil nutrients and enhance ability of plant to take up nutrients. Further studies on plant RE should emphasis on perfecting research methods, enlarging research field and strengthening the combination with other subjects.

根系分泌物(root exudates, RE)主要有粘胶、外酶、有机酸、糖、酚及各种氨基酸。不同营养基因型的植物, RE组分明显不同。存在养分和环境胁迫时,植物通过增加粘胶、酶及某些有机酸的分泌量以适应变化的环境。RE也是植物改善根际营养环境的重要手段。RE可改善土壤物理结构,促进矿物风化,提高土壤CEC,影响土壤pH、土壤矿物表面吸附性能及土壤生物学性质。RE还在活化根际土壤养分,促进植物对养分吸收起主要作用。今后RE的研究应注重RE研究方法的完善,拓展研究领域,并加强与各学科的联合。

 
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