Regulation of carbohydrate metabolism during anther development in a thermo‐sensitive genic male‐sterile wheat line

Author:

Gao Huanting1,Li Dongxiao123ORCID,Hu Haiyan123,Zhou Feng1,Yu Yongang123,Wei Qichao123,Liu Qili1,Liu Mingjiu123,Hu Ping123,Chen Eryong123,Song Puwen123,Su Xiaojia12,Guan Yuanyuan12,Qiao Mei4,Ru Zhengang23,Li Chengwei15

Affiliation:

1. Henan Engineering Research Centre of Crop Genome Editing Henan Institute of Science and Technology Xinxiang Henan China

2. Henan Collaborative Innovation Centre of Modern Biological Breeding Henan Institute of Science and Technology Xinxiang Henan China

3. Henan Provincial Key Laboratory of Hybrid Wheat Henan Institute of Science and Technology Xinxiang Henan China

4. College of Science and Engineering Hebei Agricultural University Baoding Hebei China

5. College of Life Science Henan Agricultural University Zhengzhou Henan China

Abstract

AbstractBainong sterility (BNS) is a thermo‐sensitive genic male sterile wheat line, characterised by anther fertility transformation in response to low temperature (LT) stress during meiosis, the failure of vacuole decomposition and the absence of starch accumulation in sterile bicellular pollen. Our study demonstrates that the late microspore (LM) stage marks the transition from the anther growth to anther maturation phase, characterised by the changes in anther structure, carbohydrate metabolism and the main transport pathway of sucrose (Suc). Fructan is a main storage polysaccharide in wheat anther, and its synthesis and remobilisation are crucial for anther development. Moreover, the process of pollen amylogenesis and the fate of the large vacuole in pollen are closely intertwined with fructan synthesis and remobilisation. LT disrupts the normal physiological metabolism of BNS anthers during meiosis, particularly affecting carbohydrate metabolism, thus determining the fate of male gametophytes and pollen abortion. Disruption of fructan synthesis and remobilisation regulation serves as a decisive event that results in anther abortion. Sterile pollen exhibits common traits of pollen starvation and impaired starch accumulation due to the inhibition of apoplastic transport starting from the LM stage, which is regulated by cell wall invertase TaIVR1 and Suc transporter TaSUT1.

Funder

Natural Science Foundation of Hebei Province

Publisher

Wiley

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