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Effects of Paclobutrazol on Dry Matter Accumulation and Grain Filling of Castor Bean

机译:多效唑对蓖麻籽干物质积累和籽粒灌浆的影响

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Castor bean (Ricinus communis L.) as a bioenergy crop, received more and more attention in recent years. However, the yield of castor bean seeds is affected by adverse environmental conditions. The objective of this study was to assess the effects of exogenous application of Paclobutrazol (PBZ) on castor bean growth, yield and physiology as well as on its response to environmental stress during grain filling. In the present field study, three PBZ concentrations [0 g·ha-1 (control), 75 g·ha-1 and 150 g·ha-1] were applied twice, once at grain filling of main panicle and once at grain filling of branched panicle. The growth and physiological responses of castor bean were measured four times throughout flowering and seed formation stages [1-early initiation stage of main inflorescence (E), 2- anthesis of main inflorescence (A), 3-maturity of main panicle (M) and 4-maturity of branched panicle (B)]. Plant growth was not affected by the application of PBZ, but leaves remained later on the plant when 75 g·ha-1 of PBZ was applied. With the application of PBZ, the concentration of starch was higher in panicles than in leaves and stems. Also, PBZ application increased the number of seeds per plant without affecting seed size and weight. These results suggest that exogenous application of PBZ can enhance sink strength of panicles and improve seed yield and that application of PBZ at flower initiation can alter photosynthetic partitioning in favor to seed production. On the other hand, PBZ had no effect on antioxidant enzyme activity in the seeds in response to stress.
机译:蓖麻子(Ricinus communis L.)作为一种生物能源作物,近年来受到越来越多的关注。但是,蓖麻籽的产量受不利的环境条件影响。这项研究的目的是评估外用多效唑(PBZ)对蓖麻子的生长,产量和生理以及在灌浆过程中其对环境胁迫的响应的影响。在本田研究中,两次施用了三种浓度的PBZ [0 g·ha-1(对照),75 g·ha-1和150 g·ha-1],一次在主穗灌浆,一次在灌浆的圆锥花序。在整个开花和种子形成阶段测量蓖麻豆的生长和生理反应四次[主花序(E)的早期起始阶段,主花序的花药(A)2-主花序的成熟期(M),主花序的成熟度(M)3)和成熟度的4分枝的圆锥花序(B)]。 PBZ的使用不会影响植物的生长,但是当施用75 g·ha-1的PBZ时,叶子仍留在植物上。随着PBZ的应用,穗中的淀粉浓度高于叶和茎中的淀粉浓度。同样,PBZ的施用增加了每株植物的种子数量,而不会影响种子的大小和重量。这些结果表明,外源施用PBZ可以增强穗的沉陷强度并提高种子产量,而PBZ在花生时的施用可以改变光合分配,有利于种子生产。另一方面,PBZ对种子响应胁迫后的抗氧化酶活性没有影响。

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