Co‐overexpression of SWEET sucrose transporters modulates sucrose synthesis and defence responses to enhance immunity against bacterial blight in rice

Author:

Singh Jitender12,James Donald3,Das Shubhashis1,Patel Manish Kumar4,Sutar Rashmi Ranjan1,Achary V. Mohan Murali2,Goel Naveen1,Gupta Kapuganti Jagadis1ORCID,Reddy Malireddy K.2,Jha Gopaljee1ORCID,Sonti Ramesh V.2,Foyer Christine H.5ORCID,Thakur Jitendra Kumar12,Tripathy Baishnab C.6ORCID

Affiliation:

1. National Institute of Plant Genome Research New Delhi India

2. International Centre for Genetic Engineering and Biotechnology New Delhi India

3. Forest Biotechnology Department Kerala Forest Research Institute Thrissur Kerala India

4. Department of Postharvest Science of Fresh Produce Agricultural Research Organization (ARO), Volcani Institute Rishon LeZion Israel

5. School of Biosciences University of Birmingham Birmingham UK

6. Department of Biotechnology Sharda University Greater Noida Uttar Pradesh India

Abstract

AbstractEnhancing carbohydrate export from source to sink tissues is considered to be a realistic approach for improving photosynthetic efficiency and crop yield. The rice sucrose transporters OsSUT1, OsSWEET11a and OsSWEET14 contribute to sucrose phloem loading and seed filling. Crucially, Xanthomonas oryzae pv. oryzae (Xoo) infection in rice enhances the expression of OsSWEET11a and OsSWEET14 genes, and causes leaf blight. Here we show that co‐overexpression of OsSUT1, OsSWEET11a and OsSWEET14 in rice reduced sucrose synthesis and transport leading to lower growth and yield but reduced susceptibility to Xoo relative to controls. The immunity‐related hypersensitive response (HR) was enhanced in the transformed lines as indicated by the increased expression of defence genes, higher salicylic acid content and presence of HR lesions on the leaves. The results suggest that the increased expression of OsSWEET11a and OsSWEET14 in rice is perceived as a pathogen (Xoo) attack that triggers HR and results in constitutive activation of plant defences that are related to the signalling pathways of pathogen starvation. These findings provide a mechanistic basis for the trade‐off between plant growth and immunity because decreased susceptibility against Xoo compromised plant growth and yield.

Publisher

Wiley

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