首页> 外文期刊>Phytochemistry >Effect of water availability on changes in root amino acids and associated rhizosphere on root exudation of amino acids in Pisum sativum L.
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Effect of water availability on changes in root amino acids and associated rhizosphere on root exudation of amino acids in Pisum sativum L.

机译:水可用性对根氨基酸变化的影响与Pisum Sativum L中氨基酸根渗透的根除术。

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Root exudation is considered to regulate the abundance of the microbial community. It may vary both qualitatively and quantitatively in response to the environment in which the plant is growing. A part of exuded N derives from amino acids (AAs). This, in turn, may help plants to cope with abiotic stresses by favouring positive interactions with the rhizosphere environment, thus playing a potential role in maintaining healthy plants. In this respect, an under-investigated area is the effect of stress due to water deficit (WD). It is proposed that the AA profile in the rhizosphere may be altered by WD, reflecting a modulation of root AA exudation linked to a physiological response of the plant to water stress. To investigate this, Pisum sativum L. plants, grown in unsterilised Rhizobium leguminosarum-enriched soil, were stem-labelled with N-15-urea for 96 h, and then subjected/not subjected to 72 h of WD. The concentrations and abundance of N-15-labelling in individual AAs were determined in both roots and the associated rhizosphere at 24,48 and 72 h after stress application. It was found that both AAs metabolism in the pea root and AAs exudation were strongly modified in WD conditions. After 24 h of WD, the concentrations of all measured AAs increased in the roots, accompanied by a dramatic stress-related increase in the N-15-labelling of some AAs. Furthermore, after 48-72 h of WD, the concentrations of Pro, Ala and Glu increased significantly within the rhizosphere, notably with a concomitant increase in N-15-enrichment in Pro, Ser, Asn, Asp, Thr and Ile. These results support the concept that, in response to WD, substantial amounts of recently assimilated N are rapidly translocated from the shoots to the roots, a portion of which is exuded as AAs. This leads to the rhizosphere being relatively augmented by specific AAs (notably HSer, Pro and Ala) in WD conditions, with a potential impact on soil water retention.
机译:根系分泌物被认为是调节微生物群落的丰度。它可以响应于其中所述植物生长的环境定性和定量地变化两者。从氨基酸(AAS)渗出Ñ导出的一部分。这反过来,可以帮助植物通过有利于良性互动与根际环境,从而在维持健康的植物的潜在作用与非生物胁迫应付。在这方面,一个下研究区域是应力的由于水分亏缺(WD)的影响。本发明提出,在根际的AA轮廓可以通过WD被改变,反映连接到植物对水分胁迫的生理反应根AA渗出的调制。为了研究这一点,豌豆属植物,在未消毒豌豆根瘤菌富集土壤中生长,进行干标记与N-15 - 脲96小时,然后进行/未进行的WD 72小时。在个别的AA N-15标记的浓度和丰度根和在24,48相关联的根际和之后应力施加72小时进行测定。结果发现,在豌豆根和AAS渗出两节AA代谢WD条件强烈修改。 WD的24小时后,所有测量的AA的浓度在根部增加,伴随着一些的AA的N-15标记的显着应力相关的增加。此外,WD的48-72小时后,Pro的浓度,丙氨酸和Glu显著根际内增大,特别是在N-15富集在Pro,丝氨酸,天冬酰胺,天冬氨酸,苏氨酸和Ile随之增加。这些结果支持了,响应于WD,最近同化Ñ大量正在迅速地从枝条到根部,其一部分被作为渗出易位的AA的概念。这导致了根际被相对地特定的AAS(特别是HSer,Pro和ALA)在WD条件增加,对土壤保水具有潜在影响。

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