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小麦幼苗器官与重力的关系定向

Orientation of wheat seedling organs in relation to gravity.

作者信息

Lyon C J, Yokoyama K

机构信息

Department of Biological Sciences, Dartmouth College, Hanover, New Hampshire.

出版信息

Plant Physiol. 1966 Jun;41(6):1065-73. doi: 10.1104/pp.41.6.1065.

DOI:10.1104/pp.41.6.1065
PMID:16656349
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1086473/
Abstract

Seedlings of wheat (Triticum aestivum L.) were grown in special holders that permitted the coleoptile and early roots to develop in moist air. The orientation of the organs of seedlings erect to gravity was compared with that of organs produced on a horizontal clinostat. Orientation was described by the angular position of each organ tip with reference to the axis of the embryo. Comparative tests were also made with barley, rye, and oat seedlings.The coleoptile of all species developed curvatures in 3 dimensions when geotropic responses were eliminated. The primary root was not precise in its positive geotropism. Seedlings grew on clinostats with much greater variations in the lateral orientation of the central root and with a tendency for it to curve away from the endosperm to a greater degree than in erect seedlings.The symmetry of root system in wheat was found to depend on a specific mechanism. Under the influence of gravity the earliest lateral roots were oriented in a plane at characteristic angles of about 57.5 degrees with the ideal primary root. The corresponding angles for lateral roots growing on clinostats were greater by about 47.5 degrees as a result of epinasty not previously reported in roots. This force also appeared to be active in the seminal roots of barley and rye but not of oats.The curvatures in coleoptiles grown without the directional effects of gravity correspond to the results of growth imbalance in Coleus stems in the absence of lateral transport of their auxin by gravity. Root epinasty appears to be based on auxin imbalance. Curvatures in the primary root are also interpreted as results of asymmetrical distribution of growth hormone.

摘要

小麦(Triticum aestivum L.)幼苗种植在特殊的支架中,该支架能使胚芽鞘和早期根系在潮湿空气中生长。将直立于重力方向的幼苗器官的定向与在水平回转器上产生的器官的定向进行比较。定向通过每个器官尖端相对于胚轴的角位置来描述。还对大麦、黑麦和燕麦幼苗进行了对比试验。当消除向地性反应时,所有物种的胚芽鞘在三维空间中都出现了弯曲。初生根的正向地性并不精确。在回转器上生长的幼苗,其主根的侧向定向变化更大,并且与直立生长的幼苗相比,主根有更大程度地向远离胚乳方向弯曲的趋势。发现小麦根系的对称性取决于一种特定机制。在重力影响下,最早长出的侧根与理想的初生根呈约57.5度的特征角度排列在一个平面上。由于根中以前未报道过的偏上性,在回转器上生长的侧根的相应角度大约大47.5度。这种力量在大麦和黑麦的种子根中似乎也有作用,但在燕麦中没有。在没有重力定向影响的情况下生长的胚芽鞘中的弯曲与在没有重力介导的生长素侧向运输的情况下,紫苏茎中生长不平衡的结果相对应。根的偏上性似乎基于生长素的不平衡。初生根中的弯曲也被解释为生长激素不对称分布的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e47/1086473/9dfa868db9d2/plntphys00511-0152-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e47/1086473/9dfa868db9d2/plntphys00511-0152-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e47/1086473/9dfa868db9d2/plntphys00511-0152-a.jpg

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本文引用的文献

1
Gravity Factor for Auxin Transport.重力因素对生长素运输的影响。
Science. 1962 Aug 10;137(3528):432-3. doi: 10.1126/science.137.3528.432.
2
Action of Gravity on Basipetal Transport of Auxin.重力对生长素向基运输的作用。
Plant Physiol. 1965 Sep;40(5):953-61. doi: 10.1104/pp.40.5.953.
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Auxin Transport in Geotropic Curvatures of a Branched Plant.生长素在分支植物向地性弯曲中的运输
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Limitation on the use of the horizontal clinostat as a gravity compensator.水平回转器用作重力补偿器的局限性。
Plant Physiol. 1976 Aug;58(2):127-30. doi: 10.1104/pp.58.2.127.
5
Auxin control for orientation of pea roots grown on a clinostat or exposed to ethylene.生长素对在回转器上生长或暴露于乙烯中的豌豆根定向的控制。
Plant Physiol. 1972 Sep;50(3):417-20. doi: 10.1104/pp.50.3.417.
6
Choice of rotation rate for the horizontal clinostat.水平回转器转速的选择。
Plant Physiol. 1970 Sep;46(3):355-8. doi: 10.1104/pp.46.3.355.
7
Wheat seedling growth in the absence of gravitational force.在没有重力的情况下小麦幼苗的生长。
Plant Physiol. 1968 Jun;43(6):1002-7. doi: 10.1104/pp.43.6.1002.
8
Rotation axes for analysis of gravity effects on plant organs.分析重力对植物器官影响的旋转轴。
Plant Physiol. 1967 Jun;42(6):875-80. doi: 10.1104/pp.42.6.875.
Plant Physiol. 1965 Jan;40(1):18-24. doi: 10.1104/pp.40.1.18.
4
Movement of Auxin in Coleoptiles of Zea mays L. during Geotropic Stimulation.向地性刺激期间玉米胚芽鞘中生长素的移动
Plant Physiol. 1964 Mar;39(2):151-62. doi: 10.1104/pp.39.2.151.
5
Auxin Transport in Leaf Epinasty.叶片偏下性中的生长素运输。
Plant Physiol. 1963 Sep;38(5):567-74. doi: 10.1104/pp.38.5.567.
6
Auxin Factor in Branch Epinasty.枝偏下生长中的生长素因子
Plant Physiol. 1963 Mar;38(2):145-52. doi: 10.1104/pp.38.2.145.