A chlorophyll a oxygenase 1 gene ZmCAO1 contributes to grain yield and waterlogging tolerance in maize

Author:

Li Qin1,Zhou Shuangzhen1,Liu Wenyu1,Zhai Zhensheng1,Pan Yitian1,Liu Changchang1,Chern Mawsheng2,Wang Hongwei3,Huang Min1,Zhang Zuxin4,Tang Jihua5,Du Hewei13ORCID

Affiliation:

1. College of Life Science, Yangtze University, Jingzhou, Hubei 434025, P.R.China

2. Department of Plant Pathology, University of California, Davis, Davis, CA 95616,USA

3. Hubei Collaborative Innovation Center for Grain Crops, Yangzte University, Jingzhou 434025, P.R. China

4. National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, 430070,P.R.China

5. College of Agronomy, Henan Agricultural University, Zhengzhou, Henan, 450046,P.R.China

Abstract

Abstract Chlorophylls function in photosynthesis, and are critical to plant developmental processes and responses to environmental stimuli. Chlorophyll b is synthesized from chlorophyll a by chlorophyll a oxygenase (CAO). Here, we characterize a yellow-green leaf (ygl) mutant and identify the causal gene which encodes a chlorophyll a oxygenase in maize (ZmCAO1). A 51 bp Popin transposon insertion in ZmCAO1 strongly disrupts its transcription. Low enzyme activity of ZmCAO1 leads to reduced concentrations of chlorophyll a and chlorophyll b, resulting in the yellow-green leaf phenotype of the ygl mutant. The net photosynthetic rate, stomatal conductance, and transpiration rate are decreased in the ygl mutant, while concentrations of δ-aminolevulinic acid (ALA), porphobilinogen (PBG) and protochlorophyllide (Pchlide) are increased. In addition, a ZmCAO1 mutation results in down-regulation of key photosynthetic genes, limits photosynthetic assimilation, and reduces plant height, ear size, kernel weight, and grain yield. Furthermore, the zmcao1 mutant shows enhanced reactive oxygen species production leading to sensitivity to waterlogging. These results demonstrate the pleiotropy of ZmCAO1 function in photosynthesis, grain yield, and waterlogging tolerance in maize.

Funder

National Natural Science Foundation

Plan in Scientific and Technological Innovation Team of Outstanding Young

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

Reference45 articles.

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