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鹰嘴豆(Cicer arietinum)侧根根际的羧酸盐浓度在植物生长发育过程中会增加,但与土壤或植物的磷素状况无关。

Carboxylate concentrations in the rhizosphere of lateral roots of chickpea (Cicer arietinum) increase during plant development, but are not correlated with phosphorus status of soil or plants.

作者信息

Wouterlood Madeleine, Cawthray Gregory R, Scanlon Timothy T, Lambers Hans, Veneklaas Erik J

机构信息

School of Plant Biology, The University of Western Australia, 35 Stirling Highway, Crawley WA 6009, Australia.

出版信息

New Phytol. 2004 Jun;162(3):745-753. doi: 10.1111/j.1469-8137.2004.01070.x.

Abstract

•  The influence of soil P level and plant development on carboxylate concentrations in the rhizosphere of lateral roots of chickpea (Cicer arietinum) cultivars Heera and Tyson were studied to investigate the relationship between carboxylate exudation and P acquisition by chickpea. •  Two chickpea cultivars were grown in soil supplied with 0-100 µg P g . Plants were harvested four times during plant development. In two other experiments, carboxylate concentrations were measured along root sections, using plants grown in soil or in hydroponics. •  Carboxylate concentrations in the rhizosphere of lateral roots steadily increased with plant development for cv. Heera, but not for Tyson. Carboxylate concentrations increased with increasing distance from the root apex in soil. This increase might be due to accumulation, because an experiment with plants in hydroponics showed that older segments released at least as much carboxylates as younger segments. •  Carboxylate concentrations in the rhizosphere of chickpea appear to be developmentally controlled. Unlike some other plant species, there is no simple correlation with plant or soil P status.

摘要

• 研究了土壤磷水平和植物发育对鹰嘴豆(Cicer arietinum)品种希拉(Heera)和泰森(Tyson)侧根根际羧酸盐浓度的影响,以探讨羧酸盐分泌与鹰嘴豆磷吸收之间的关系。

• 将两个鹰嘴豆品种种植在供应0 - 100 μg P g的土壤中。在植物发育过程中收获了四次植株。在另外两个实验中,使用种植在土壤或水培中的植物,沿着根段测量羧酸盐浓度。

• 希拉品种侧根根际的羧酸盐浓度随着植物发育而稳步增加,但泰森品种并非如此。土壤中羧酸盐浓度随着距根尖距离的增加而增加。这种增加可能是由于积累,因为水培植物实验表明,较老的根段释放的羧酸盐至少与较年轻的根段一样多。

• 鹰嘴豆根际的羧酸盐浓度似乎受发育控制。与其他一些植物物种不同,它与植物或土壤磷状况没有简单的相关性。

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