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Influence of Vesicular Arbuscular Mycorrhizae and Leaf Age on Net Gas Exchange of Citrus Leaves

机译:水泡丛枝菌根和叶片年龄对柑橘叶片净气体交换的影响

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摘要

The purpose of this study was to test the hypothesis that vesicular arbuscular mycorrhizal (VAM) fungi affect net assimilation of CO2 (A) of different-aged citrus leaves independent of mineral nutrition effects of mycorrhizae. Citrus aurantium L., sour orange plants were grown for 6 months in a sandy soil low in phosphorus that was either infested with the VAM fungus, Glomus intraradices Schenck & Smith, or fertilized with additional phosphorus and left nonmycorrhizal (NM). Net CO2 assimilation, stomatal conductance, water use efficiency, and mineral nutrient status for expanding, recently expanded, and mature leaves were evaluated as well as plant size and relative growth rate of leaves. Nutrient status and net gas exchange varied with leaf age. G. intraradices-inoculated plants had well-established colonization (79% of root length) and were comparable in relative growth rate and size at final harvest with NM plants. Leaf mineral concentrations were generally the same for VAM and NM plants except for nitrogen. Although leaf nitrogen was apparently sufficient for high rates of A, VAM plants did have higher nitrogen concentrations than NM at the time of gas exchange measurements. G. intraradices had no effect on A, stomatal conductance, or water use efficiency, irrespective of leaf age. These results show that well-established VAM colonization does not affect net gas exchange of citrus plants that are comparable in size, growth rate, and nutritional status with NM plants.
机译:这项研究的目的是检验以下假设:水泡丛枝菌根(VAM)真菌会影响不同年龄的柑橘叶片的CO2(A)净吸收,而与菌根的矿物质营养作用无关。柑桔酸橙植物在含磷量低的沙质土壤中生长6个月,该土壤要么被VAM真菌,Glomus intraradices Schenck&Smith侵染,要么被其他磷肥并留有无菌根(NM)。评估了叶片的净二氧化碳吸收,气孔导度,水分利用效率和矿质养分状况,包括叶片的扩张,最近扩张和成熟,以及叶片的植物大小和相对生长率。营养状况和净气体交换随叶龄而变化。接种根瘤菌的植株具有良好的定植性(根长的79%),在最终收获时的相对生长率和大小与NM植物相当。除氮外,VAM和NM植物的叶片矿物质浓度通常相同。尽管叶氮显然足以满足高比例的A,但在进行气体交换测量时,VAM植物的氮浓度确实比NM高。无论叶片年龄如何,G。内radi对A,气孔导度或水分利用效率均无影响。这些结果表明,完善的VAM定植不会影响柑橘类植物的净气体交换,柑橘类植物的大小,生长速率和营养状况与NM植物相当。

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