» Articles » PMID: 10929941

Over-expression of Tobacco Knotted1-type Class1 Homeobox Genes Alters Various Leaf Morphology

Overview
Specialties Biology
Cell Biology
Date 2000 Aug 10
PMID 10929941
Citations 28
Authors
Affiliations
Soon will be listed here.
Abstract

We compared the phenotypes of transgenic tobacco plants over-expressing various knotted1-type class1 homeobox genes. All transformants showed abnormal leaf morphology, with the degree of abnormality depending upon the Nicotiana tabacum homeobox (NTH) gene that was over-expressed. Tobacco plants over-expressing NTH1 or NTH9 showed a relatively weak phenotype, while NTH15 and NTH20 over-expressing plants exhibited severe alterations, with occasional ectopic shoot formation on the leaves. Plants over-expressing NTH22 had a relatively severe phenotype, but did not form any ectopic shoots. These results indicate that all of the NTH genes can influence leaf development from the shoot apical meristem, but that the effect varies with the gene. Based on phylogenetic analysis of the NTH genes and comparison of the phenotypes of plants over-expressing them, we suggest that the kn1-type class1 family can be divided into two subgroups, and that the differences in their ability to induce the abnormal phenotype corresponds to the structures of their conserved domains.

Citing Articles

Appreciating animal induced pluripotent stem cells to shape plant cell reprogramming strategies.

Wittmer J, Heidstra R J Exp Bot. 2024; 75(14):4373-4393.

PMID: 38869461 PMC: 11263491. DOI: 10.1093/jxb/erae264.


Shaping leaves through TALE homeodomain transcription factors.

Byrne M, Imlay E, Ridza N J Exp Bot. 2024; 75(11):3220-3232.

PMID: 38527334 PMC: 11156807. DOI: 10.1093/jxb/erae118.


Promoting genotype-independent plant transformation by manipulating developmental regulatory genes and/or using nanoparticles.

Yan T, Hou Q, Wei X, Qi Y, Pu A, Wu S Plant Cell Rep. 2023; 42(9):1395-1417.

PMID: 37311877 PMC: 10447291. DOI: 10.1007/s00299-023-03037-2.


Genotype-independent plant transformation.

Maren N, Duan H, Da K, Yencho G, Ranney T, Liu W Hortic Res. 2022; 9:uhac047.

PMID: 35531314 PMC: 9070643. DOI: 10.1093/hr/uhac047.


Overexpression of from in affects the development of leaf morphology.

Zhou R, Fan M, Zhao M, Jiang X, Liu Q Plant Signal Behav. 2022; 17(1):2031783.

PMID: 35139775 PMC: 9176240. DOI: 10.1080/15592324.2022.2031783.