Two wrongs make a right: heat stress reversion of a male-sterile Brassica napus line

Author:

Schuhmann Petra1,Engstler Carina1,Klöpfer Kai2,Gügel Irene L13ORCID,Abbadi Amine4,Dreyer Felix4,Leckband Gunhild5,Bölter Bettina1,Hagn Franz26ORCID,Soll Jürgen17,Carrie Chris189ORCID

Affiliation:

1. Department Biologie I–Botanik, Ludwig-Maximilians-Universität München , Großhadernerstr. 2–4, D-82152 Planegg-Martinsried , Germany

2. Bavarian NMR Center (BNMRZ) at the Department of Chemistry, Technical University of Munich , Lichtenbergstrasse 4, D-85748 Garching , Germany

3. Center of Advanced European Studies and Research (caesar) , Ludwig-Erhard-Allee 2, D-53175 Bonn , Germany

4. NPZ Innovation GmbH , Hohenlieth-Hof, D-24363 Holtsee , Germany

5. Norddeutsche Pflanzenzucht Hans-Georg Lembke KG , Hohenlieth-Hof 1, D-24363 Holtsee , Germany

6. Institute of Structural Biology, Helmholtz Zentrum München , Ingolstädter Landstraße 1, D-85764 Neuherberg , Germany

7. Munich Centre for Integrated Protein Science, CIPSM, Ludwig-Maximilians-Universität München , Feodor-Lynen-Str. 25, D-81377 Munich , Germany

8. Dipartimento di Biotecnologie, Università di Verona , Strada Le Grazie 15, 37134 Verona , Italy

9. School of Biological Sciences, University of Auckland , 3A Symonds Street, Auckland, 1142 , New Zealand

Abstract

Abstract Male-sterile lines play important roles in plant breeding to obtain hybrid vigour. The male sterility Lembke (MSL) system is a thermosensitive genic male sterility system of Brassica napus and is one of the main systems used in European rapeseed breeding. Interestingly, the MSL system shows high similarity to the 9012AB breeding system from China, including the ability to revert to fertile in high temperature conditions. Here we demonstrate that the MSL system is regulated by the same restorer of fertility gene BnaC9-Tic40 as the 9012AB system, which is related to the translocon at the inner envelope membrane of chloroplasts 40 (TIC40) from Arabidopsis. The male sterility gene of the MSL system was also identified to encode a chloroplast-localized protein which we call BnChimera; this gene shows high sequence similarity to the sterility gene previously described for the 9012AB system. For the first time, a direct protein interaction between BnaC9-Tic40 and the BnChimera could be demonstrated. In addition, we identify the corresponding amino acids that mediate this interaction and suggest how BnaC9-Tic40 acts as the restorer of fertility. Using an RNA-seq approach, the effects of heat treatment on the male fertility restoration of the C545 MSL system line were investigated. These data demonstrate that many pollen developmental pathways are affected by higher temperatures. It is hypothesized that heat stress reverses the male sterility via a combination of slower production of cell wall precursors in plastids and a slower flower development, which ultimately results in fertile pollen. The potential breeding applications of these results are discussed regarding the use of the MSL system in producing thermotolerant fertile plants.

Funder

German Excellence Initiative and the European Union Seventh Framework Program

Center for Integrated Protein Science Munich

Helmholtz Society

Deutsche Forschungsgemeinschaft

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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