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暴露于八天微重力环境下的幼苗的生长与木质化

Growth and lignification in seedlings exposed to eight days of microgravity.

作者信息

Cowles J R, Scheld H W, Lemay R, Peterson C

机构信息

Department of Biology, University of Houston, TX 77004, USA.

出版信息

Ann Bot. 1984;54(Suppl 3):33-48. doi: 10.1093/oxfordjournals.aob.a086865.

DOI:10.1093/oxfordjournals.aob.a086865
PMID:11539752
Abstract

Four-day-old pine seedlings and mung bean and oat seeds were prepared for flight on the third Space Transport System Mission (STS-3). The seedlings and seeds were planted in six mini-growth chambers (two chambers per species) which were placed in a plant growth unit (PGU). Another set of seedlings and seeds was prepared and placed in another PGU as the 1 g control. The flight PGU was positioned in the orbiter mid-deck locker area about 11 h prior to launch. The pine seedlings and germinating mung bean and oat seeds were exposed to 194 h of microgravity. The PGU was received at a temporary laboratory about 75 min post-landing. Plants were observed, photographed and the atmospheric gases analyzed at the landing site. The plants were then brought to our Houston laboratory where they were measured and analyzed for lignin and protein content and for phenylalanine ammonia-lyase (PAL) and peroxidase activities. Flight seedlings were shorter than the controls in all three species. Twenty-five to 40 per cent of the mung bean and oat roots were growing upward, and the mung beans showed signs of disorientation. Flight mung beans showed a significant reduction in lignin content in comparison to the controls, and PAL and peroxidase activities were reduced in flight pine seedlings. The results generally support the postulate that lignin synthesis is reduced in near-weightlessness and show other interesting findings.

摘要

四天大的松树幼苗以及绿豆和燕麦种子被准备用于第三次太空运输系统任务(STS - 3)。这些幼苗和种子被种植在六个微型生长室(每个物种两个生长室)中,这些生长室放置在一个植物生长单元(PGU)里。另一组幼苗和种子被准备好并放置在另一个PGU中作为1g重力对照组。飞行用的PGU在发射前约11小时被放置在轨道飞行器中甲板的储物柜区域。松树幼苗以及正在发芽的绿豆和燕麦种子经历了194小时的微重力环境。PGU在着陆后约75分钟被送到一个临时实验室。在着陆点对植物进行观察、拍照并分析其大气气体成分。然后这些植物被带到我们休斯顿的实验室,在那里对它们进行测量,并分析其木质素和蛋白质含量以及苯丙氨酸解氨酶(PAL)和过氧化物酶的活性。在所有这三个物种中,飞行组的幼苗都比对照组的短。25%到40%的绿豆和燕麦根向上生长,并且绿豆表现出方向紊乱的迹象。与对照组相比,飞行组绿豆的木质素含量显著降低,飞行组松树幼苗的PAL和过氧化物酶活性降低。这些结果总体上支持了在近失重状态下木质素合成减少这一假设,并显示出其他有趣的发现。

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