Literature DB >> 11543210

The gravitropic set-point angle (GSA): the identification of an important developmentally controlled variable governing plant architecture.

J Digby1, R D Firn.   

Abstract

The angle at which an organ is maintained by gravitropism is characteristic of the organ, its developmental state and the prevailing environmental conditions. We propose that this angle be called the gravitropic set-point angle (GSA), defined as the angle with respect to the gravity vector (with a vertically downward orientation being 0 degrees) at which an organ is maintained as a consequence of gravitropism. Studies or the gravitropic behaviour of organs from trailing plants show that the GSA is subject to developmental regulation. Depending on the developmental age and prevailing environmental conditions, the GSA of an organ can be set at any value between 0 degrees and 180 degrees. The previously reported reversal of the sign of the gravitropic response in such organs, whether this is brought about developmentally or induced by light, represents the change from one common extreme (GSA = 180 degrees, conventionally referred to as negative orthogravitropism) to another (GSA = 0 degrees, or positive orthogravitropism). The concept of a variable gravitropic set-point offers a more unified view of all forms of gravitropic behaviour than has been advanced previously, and places a new constraint on models of gravitropism. Current models of gravitropism appear to be unable to explain either the ability of organs to change their orientation with respect to gravity as they develop, or the re-orientation that can be observed when some organs are exposed to new environmental conditions.

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Year:  1995        PMID: 11543210     DOI: 10.1111/j.1365-3040.1995.tb00205.x

Source DB:  PubMed          Journal:  Plant Cell Environ        ISSN: 0140-7791            Impact factor:   7.228


  47 in total

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Authors:  Iris Ottenschläger; Patricia Wolff; Chris Wolverton; Rishikesh P Bhalerao; Göran Sandberg; Hideo Ishikawa; Mike Evans; Klaus Palme
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2.  The onset of gravisensitivity in the embryonic root of flax.

Authors:  Zhong Ma; Karl H Hasenstein
Journal:  Plant Physiol       Date:  2005-12-23       Impact factor: 8.340

3.  On the growth and form of shoots.

Authors:  Raghunath Chelakkot; L Mahadevan
Journal:  J R Soc Interface       Date:  2017-03       Impact factor: 4.118

4.  Unifying model of shoot gravitropism reveals proprioception as a central feature of posture control in plants.

Authors:  Renaud Bastien; Tomas Bohr; Bruno Moulia; Stéphane Douady
Journal:  Proc Natl Acad Sci U S A       Date:  2012-12-11       Impact factor: 11.205

5.  Ethylene-induced differential growth of petioles in Arabidopsis. Analyzing natural variation, response kinetics, and regulation.

Authors:  Frank F Millenaar; Marjolein C H Cox; Yvonne E M de Jong van Berkel; Rob A M Welschen; Ronald Pierik; Laurentius A J C Voesenek; Anton J M Peeters
Journal:  Plant Physiol       Date:  2005-02-22       Impact factor: 8.340

6.  LAZY Genes Mediate the Effects of Gravity on Auxin Gradients and Plant Architecture.

Authors:  Takeshi Yoshihara; Edgar P Spalding
Journal:  Plant Physiol       Date:  2017-08-18       Impact factor: 8.340

7.  Enhanced gravitropism of roots with a disrupted cap actin cytoskeleton.

Authors:  Guichuan Hou; Deepti R Mohamalawari; Elison B Blancaflor
Journal:  Plant Physiol       Date:  2003-03       Impact factor: 8.340

8.  Stem gravitropism and tension wood formation in Acacia mangium seedlings inclined at various angles.

Authors:  Widyanto Dwi Nugroho; Satoshi Nakaba; Yusuke Yamagishi; Shahanara Begum; Md Hasnat Rahman; Kayo Kudo; Sri Nugroho Marsoem; Ryo Funada
Journal:  Ann Bot       Date:  2018-06-28       Impact factor: 4.357

9.  Gibberellin is required for the formation of tension wood and stem gravitropism in Acacia mangium seedlings.

Authors:  Widyanto Dwi Nugroho; Yusuke Yamagishi; Satoshi Nakaba; Shiori Fukuhara; Shahanara Begum; Sri Nugroho Marsoem; Jae-Heung Ko; Hyun-O Jin; Ryo Funada
Journal:  Ann Bot       Date:  2012-07-26       Impact factor: 4.357

10.  Auxin 2012: a rich mea ho'oulu.

Authors:  Lucia C Strader; Jennifer L Nemhauser
Journal:  Development       Date:  2013-03       Impact factor: 6.868

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