田江, 梁翠月, 陆星, 等. 根系分泌物调控植物适应低磷胁迫的机制[J]. 华南农业大学学报, 2019, 40(5): 175-185. doi: 10.7671/j.issn.1001-411X.201905068
    引用本文: 田江, 梁翠月, 陆星, 等. 根系分泌物调控植物适应低磷胁迫的机制[J]. 华南农业大学学报, 2019, 40(5): 175-185. doi: 10.7671/j.issn.1001-411X.201905068
    TIAN Jiang, LIANG Cuiyue, LU Xing, et al. Mechanism of root exudates regulating plant responses to phosphorus deficiency[J]. Journal of South China Agricultural University, 2019, 40(5): 175-185. doi: 10.7671/j.issn.1001-411X.201905068
    Citation: TIAN Jiang, LIANG Cuiyue, LU Xing, et al. Mechanism of root exudates regulating plant responses to phosphorus deficiency[J]. Journal of South China Agricultural University, 2019, 40(5): 175-185. doi: 10.7671/j.issn.1001-411X.201905068

    根系分泌物调控植物适应低磷胁迫的机制

    Mechanism of root exudates regulating plant responses to phosphorus deficiency

    • 摘要: 磷是植物生长发育的必需营养元素,土壤中有效磷含量低是限制作物高产的主要因素。由于长期不当施肥,土壤中累积大量磷素,其中大部分磷是植物难以直接吸收的难溶性无机磷和有机磷。植物在长期进化过程中形成了一系列适应低磷胁迫的机制,其中根系分泌物参与土壤磷活化利用的机制一直是研究的热点问题。本文总结了近十年来关于低磷胁迫调控根系分泌物(有机酸和紫色酸性磷酸酶)合成和分泌的研究进展,对根系分泌物在根际微生态中的重要作用提出了展望,旨在阐明通过控制作物根系分泌物来提高作物磷效率的途径,为培育磷高效作物品种和优化磷肥的田间管理提供思路和奠定理论基础。

       

      Abstract: Phosphorus (P) is an essential nutrient for plant growth and development. Low phosphate (Pi) availability in soil largely limits crop yield. Due to long-term improper P fertilizer application, a lot of P accumulates to form a huge P pool in soil. However, most P are insoluble inorganic P and organic P, and are difficult to be directly absorbed by plants. Plants have evolved a set of adaptive strategies to low P stress. Among them, the mechanism of root exudates participating in P acquisition and utilization has always been a hot issue. In this review, advances in low P stress regulating synthesis and exudation of root exudates (organic acid and purple acid phosphatases) were summarized. Furthermore, the vital functions of root exudates in rhizosphere ecological system are discussed to elucidate mechanism of P efficiency enhancement in crops through root exudate regulation, which would provide some clues and theoretical bases for development of high P efficiency cultivar and optimization of Pi fertilizer management in fields.

       

    /

    返回文章
    返回