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独脚金内酯信号传导响应磷缺乏调节水稻叶片衰老。

Strigolactone signaling regulates rice leaf senescence in response to a phosphate deficiency.

作者信息

Yamada Yusuke, Furusawa Soya, Nagasaka Seiji, Shimomura Koichiro, Yamaguchi Shinjiro, Umehara Mikihisa

机构信息

Graduate School of Life Sciences, Toyo University, 1-1-1 Izumino, Itakura-machi, Ora-gun, Gunma, 374-0193, Japan.

出版信息

Planta. 2014 Aug;240(2):399-408. doi: 10.1007/s00425-014-2096-0. Epub 2014 Jun 3.

Abstract

Strigolactones (SLs) act as plant hormones that inhibit shoot branching and stimulate secondary growth of the stem, primary root growth, and root hair elongation. In the moss Physcomitrella patens, SLs regulate branching of chloronemata and colony extension. In addition, SL-deficient and SL-insensitive mutants show delayed leaf senescence. To explore the effects of SLs on leaf senescence in rice (Oryza sativa L.), we treated leaf segments of rice dwarf mutants with a synthetic SL analogue, GR24, and evaluated their chlorophyll contents, ion leakage, and expression levels of senescence-associated genes. Exogenously applied GR24 restored normal leaf senescence in SL-deficient mutants, but not in SL-insensitive mutants. Most plants highly produce endogenous SLs in response to phosphate deficiency. Thus, we evaluated effects of GR24 under phosphate deficiency. Chlorophyll levels did not differ of in the wild-type between the sufficient and deficient phosphate conditions, but increased in the SL-deficient mutants under phosphate deficiency, leading in the strong promotion of leaf senescence by GR24 treatment. These results indicate that the mutants exhibited increased responsiveness to GR24 under phosphate deficiency. In addition, GR24 accelerated leaf senescence in the intact SL-deficient mutants under phosphate deficiency as well as dark-induced leaf senescence. The effects of GR24 were stronger in d10 compared to d17. Based on these results, we suggest that SLs regulate leaf senescence in response to phosphate deficiency.

摘要

独脚金内酯(SLs)作为植物激素,可抑制枝条分枝,并刺激茎的次生生长、主根生长和根毛伸长。在小立碗藓中,SLs调节绿丝体的分枝和群体扩展。此外,SL缺陷型和SL不敏感型突变体表现出叶片衰老延迟。为了探究SLs对水稻叶片衰老的影响,我们用合成的SL类似物GR24处理水稻矮化突变体的叶片切段,并评估其叶绿素含量、离子渗漏以及衰老相关基因的表达水平。外源施加GR24可使SL缺陷型突变体恢复正常的叶片衰老,但对SL不敏感型突变体则无效。大多数植物在缺磷时会大量产生内源性SLs。因此,我们评估了缺磷条件下GR24的作用。野生型在磷充足和缺磷条件下叶绿素水平没有差异,但缺磷条件下SL缺陷型突变体的叶绿素水平增加,导致GR24处理强烈促进叶片衰老。这些结果表明,缺磷条件下突变体对GR24的反应性增强。此外,在缺磷条件下,GR24加速了完整的SL缺陷型突变体的叶片衰老以及黑暗诱导的叶片衰老。与d17相比,GR24对d10的影响更强。基于这些结果,我们认为SLs响应缺磷调节叶片衰老。

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