Cell wall invertase 3 plays critical roles in providing sugars during pollination and fertilization in cucumber

Author:

Liu Huan1ORCID,Yao Xuehui1ORCID,Fan Jingwei1ORCID,Lv Lijun1ORCID,Zhao Yalong1ORCID,Nie Jing1ORCID,Guo Yicong1ORCID,Zhang Lidong23ORCID,Huang Hongyu23ORCID,Shi Yuzi1ORCID,Zhang Qian1ORCID,Li Jiawang23ORCID,Sui Xiaolei1ORCID

Affiliation:

1. Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, College of Horticulture, China Agricultural University , Beijing 100193 , China

2. Tianjin Academy of Agricultural Sciences, Tianjin Kernel Cucumber Research Institute , Tianjin 300192 , China

3. State Key Laboratory of Vegetable Biobreeding , Ministry of Science and Technology of the People's Republic of China, Tianjin 300192 , China

Abstract

Abstract In plants, pollen–pistil interactions during pollination and fertilization mediate pollen hydration and germination, pollen tube growth, and seed set and development. Cell wall invertases (CWINs) help provide the carbohydrates for pollen development; however, their roles in pollination and fertilization have not been well established. In cucumber (Cucumis sativus), CsCWIN3 showed the highest expression in flowers, and we further examined CsCWIN3 for functions during pollination to seed set. Both CsCWIN3 transcript and CsCWIN3 protein exhibited similar expression patterns in the sepals, petals, stamen filaments, anther tapetum, and pollen of male flowers, as well as in the stigma, style, transmitting tract, and ovule funiculus of female flowers. Notably, repression of CsCWIN3 in cucumber did not affect the formation of parthenocarpic fruit but resulted in an arrested growth of stigma integuments in female flowers and a partially delayed dehiscence of anthers with decreased pollen viability in male flowers. Consequently, the pollen tube grew poorly in the gynoecia after pollination. In addition, CsCWIN3-RNA interference plants also showed affected seed development. Considering that sugar transporters could function in cucumber fecundity, we highlight the role of CsCWIN3 and a potential close collaboration between CWIN and sugar transporters in these processes. Overall, we used molecular and physiological analyses to determine the CsCWIN3-mediated metabolism during pollen formation, pollen tube growth, and plant fecundity. CsCWIN3 has essential roles from pollination and fertilization to seed set but not parthenocarpic fruit development in cucumber.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

China Agriculture Research System of MOF

MARA

111 Project of Ministry of Education of P.R.C

Publisher

Oxford University Press (OUP)

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