首页> 外文会议>Australian Society of Sugar Cane Technologists Conference; 20050503-06; Bundaberg(AU) >TOWNSVILLE TALL PLANT FACILITY—EXAMPLES OF ITS APPLICATION FOR SUGARCANE RESEARCH
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TOWNSVILLE TALL PLANT FACILITY—EXAMPLES OF ITS APPLICATION FOR SUGARCANE RESEARCH

机译:汤斯维尔高大的植物设施—在蔗糖研究中的应用实例

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The Tall Plant Facility (TPF) has been designed specifically as a research tool for studies with sugarcane, though it has features that make it ideal for any tall plant. It consists of three naturally lit, temperature and humidity controlled compartments that reach 6.5 m in height at the apex. PC2 quarantine standard was achieved in the design, thus allowing transgenic plants to be grown in the facility. We describe how the features of the facility have allowed it to be exploited in a variety of ways, not all of which were predicted when built. Three examples are presented. The first describes how its containment capability has allowed us to progress work rapidly while still meeting the strict quarantine procedures governing the movement of sugarcane. The last two examples describe how the features of height and good temperature control have facilitated examination of sugarcane production issues such as suckering and the effect of high temperatures as experienced in the Ord river irrigation area. Suckering occurs when sugarcane plants are relatively mature. The height of the facility allowed for the manipulation of the light environment incident on tall plants. This allowed us to evaluate the effects of light quality on sucker formation. Reduced light quantity and quality resulted in etiolation of sucker stalks but did not result in fewer suckers being produced. To study the effects of high temperature on sugarcane growth and sucrose partitioning, the average daily temperature profiles for the Ord and Burdekin districts were simulated. The experiment provided good evidence that fibre and hexose content was greater under higher temperatures while sucrose levels were reduced. The facility will be used for further physiological studies. For example, the success of the Ord and Burdekin temperature comparison makes the facility ideal for if studying the physiology and genetic variation of ripening.
机译:高大植物设施(TPF)是专为研究甘蔗而设计的研究工具,尽管它的功能使其非常适合任何高大植物。它由三个自然采光,温度和湿度可控的隔间组成,这些隔间的最高高度达到6.5 m。设计中达到了PC2检疫标准,因此可以在工厂中种植转基因植物。我们描述了设施的功能如何以多种方式加以利用,并不是所有的方式都在建造时就可以预测到的。给出了三个例子。第一部分描述了其遏制能力如何使我们迅速开展工作,同时仍符合管理甘蔗活动的严格检疫程序。最后两个示例描述了高度和良好的温度控制功能如何促进了对甘蔗生产问题(如抽油和高温影响)的检查,就像在奥尔德河灌区所经历的那样。当甘蔗植物相对成熟时就会发生吸吮。设施的高度允许操纵入射在高大植物上的光照环境。这使我们能够评估光质量对抽油杆形成的影响。减少的光量和质量会导致抽油烟杆黄化,但不会导致产生的抽油杆更少。为了研究高温对甘蔗生长和蔗糖分配的影响,模拟了Ord和Burdekin地区的日平均温度分布。该实验提供了充分的证据,表明在较高温度下纤维和己糖含量更高,而蔗糖含量降低。该设施将用于进一步的生理学研究。例如,Ord和Burdekin温度比较的成功使该设备非常适合研究成熟的生理和遗传变异。

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