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衰老诱导的细胞分裂素代谢改变对烟草源库关系及个体发育和胁迫诱导转变的影响

Effects of senescence-induced alteration in cytokinin metabolism on source-sink relationships and ontogenic and stress-induced transitions in tobacco.

作者信息

Cowan A Keith, Freeman Michael, Björkman Per-Olof, Nicander Björn, Sitbon Folke, Tillberg Elisabeth

机构信息

Department of Plant Biology and Forest Genetics, Swedish University of Agricultural Sciences, 7080, Uppsala, 750 07, Sweden.

出版信息

Planta. 2005 Aug;221(6):801-14. doi: 10.1007/s00425-005-1489-5. Epub 2005 Mar 16.

Abstract

Senescence and reserve mobilization are integral components of plant development, are basic strategies in stress mitigation, and regulated at least in part by cytokinin. In the present study the effect of altered cytokinin metabolism caused by senescence-specific autoregulated expression of the Agrobacterium tumefaciens IPT gene under control of the P(SAG12) promoter (P(SAG12)-IPT) on seed germination and the response to a water-deficit stress was studied in tobacco (Nicotiana tabacum L.). Cytokinin levels, sugar content and composition of the leaf strata within the canopy of wild-type and P(SAG12)-IPT plants confirmed the reported altered source-sink relations. No measurable difference in sugar and pigment content of discs harvested from apical and basal leaves was evident 72 h after incubation with (+)-ABA or in darkness, indicating that expression of the transgene was not restricted to senescing leaves. No difference in quantum efficiency, photosynthetic activity, accumulation of ABA, and stomatal conductance was apparent in apical, middle and basal leaves of either wild-type or P(SAG12)-IPT plants after imposition of a mild water stress. However, compared to wild-type plants, P(SAG12)-IPT plants were slower to adjust biomass allocation. A stress-induced increase in root:shoot ratio and specific leaf area (SLA) occurred more rapidly in wild-type than in P(SAG12)-IPT plants reflecting delayed remobilization of leaf reserves to sink organs in the transformant. P(SAG12)-IPT seeds germinated more slowly even though abscisic acid (ABA) content was 50% that of the wild-type seeds confirming cytokinin-induced alterations in reserve remobilization. Thus, senescence is integral to plant growth and development and an increased endogenous cytokinin content impacts source-sink relations to delay ontogenic transitions wherein senescence in a necessary process.

摘要

衰老和储备动员是植物发育的组成部分,是缓解胁迫的基本策略,并且至少部分受细胞分裂素调节。在本研究中,研究了由根癌农杆菌IPT基因在P(SAG12)启动子(P(SAG12)-IPT)控制下的衰老特异性自动调节表达引起的细胞分裂素代谢改变对烟草(Nicotiana tabacum L.)种子萌发和水分亏缺胁迫响应的影响。野生型和P(SAG12)-IPT植株冠层内叶片层的细胞分裂素水平、糖含量和组成证实了所报道的源库关系改变。在用(+)-ABA孵育72小时后或在黑暗中,从顶端叶和基部叶收获的圆盘的糖和色素含量没有明显差异,这表明转基因的表达不限于衰老叶片。在施加轻度水分胁迫后,野生型或P(SAG12)-IPT植株的顶端叶、中叶和基部叶在量子效率、光合活性、ABA积累和气孔导度方面没有明显差异。然而,与野生型植株相比,P(SAG12)-IPT植株调整生物量分配的速度较慢。野生型植株中胁迫诱导的根冠比和比叶面积(SLA)增加比P(SAG12)-IPT植株更快,这反映了转化体中叶片储备向库器官的再动员延迟。即使脱落酸(ABA)含量是野生型种子的50%,P(SAG12)-IPT种子萌发也更慢,这证实了细胞分裂素诱导的储备再动员改变。因此,衰老对于植物生长和发育是不可或缺的,内源性细胞分裂素含量增加会影响源库关系,从而延迟个体发育转变,而衰老是其中一个必要过程。

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